Linnan Bi – Materials Science and Engineering – Best Researcher Award

Linnan Bi - Materials Science and Engineering - Best Researcher Award

University of Electronic Science and Technology of China - China

AUTHOR PROFILE

GOOGLE SCHOLER

⚡ RESEARCH THEMES AND SCIENTIFIC

Dr. Linnan Bi’s research themes include solid-state batteries, composite electrode design, high-conductivity solid electrolytes, ionic transport mechanisms, and nanoporous material systems. His mission is to redefine the structural landscape of energy storage materials through nanoscale engineering, aiming to overcome the limitations of traditional liquid-based systems. With a strong foundation in both theoretical and experimental techniques, he continues to investigate the core challenges in battery technology—safety, longevity, and efficiency. Through persistent scientific inquiry and innovation, he contributes to advancing the global pursuit of sustainable and reliable energy solutions.

🎓 EARLY ACADEMIC PURSUITS

Dr. Linnan Bi began his academic journey with a strong foundation in Materials Science and Engineering at the University of Electronic Science and Technology of China (UESTC). His early academic training was distinguished by a focus on nanomaterials, electrochemistry, and energy storage systems. By the time he completed his Ph.D. in 2024, he had already developed a keen interest in the structural modification of carbon-based materials and their application in advanced battery systems. His graduate research emphasized the integration of theoretical design with practical experimentation, particularly in the realm of lithium and sodium ion batteries. This balance between theory and hands-on experimentation enabled him to build a robust understanding of energy conversion and storage, which has defined the trajectory of his postdoctoral pursuits. His academic excellence was reflected in the rapid progression to postdoctoral research within a top-tier national research facility.

🧑‍🏫 PROFESSIONAL ENDEAVORS

Currently a postdoctoral fellow at the University of Electronic Science and Technology of China, Dr. Bi actively engages in innovative materials research with a strong focus on energy applications. His work encompasses both academic and applied projects, including advanced solid-state electrolyte development and the design of nanoporous carbon structures. He is a critical member of several institutional collaborations with leading Chinese and international universities. His professional activities include overseeing experimental designs, mentoring younger researchers, and publishing high-impact articles. With an eye toward practical innovation, Dr. Bi bridges the gap between laboratory research and industrial implementation. His roles are not only limited to scientific development but also extend into intellectual property, evidenced by his numerous patents in the battery technology sector. These initiatives have reinforced his status as a multifaceted scientist contributing to China’s clean energy and advanced materials sectors.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Bi’s research focuses on the structural optimization of solid-state electrolytes, nanoporous carbons, and advanced electrode materials for lithium and sodium ion batteries. His work explores how electrochemical interfaces evolve during charge-discharge cycles and seeks to improve conductivity and structural compatibility in solid-state battery systems. A notable dimension of his research is the development of heterojunction interfaces and reinforcement frameworks to enhance electrochemical performance and durability. His methodical approach combines simulation modeling with rigorous experimentation, allowing for comprehensive material characterization and performance validation. His published research, totaling 22 peer-reviewed articles, includes key findings in halide electrolyte performance, covalent organic frameworks in lithium-sulfur systems, and solid polymer electrolytes. His growing patent portfolio further underscores his inventive contributions to sustainable energy storage technologies.

🏅 ACCOLADES AND RECOGNITION

Dr. Linnan Bi has been recognized for both his academic innovation and impactful publications. He was honored in Wiley China’s “Excellent Author Program” for scientific innovation during April–June 2024, a reflection of his contributions to advancing material science in energy sectors. He also received the 5th Xinwei Academic Paper Award and the Xinwei Popularity Award for his high-quality research outputs. These accolades affirm his scientific standing within the Chinese research community and his growing influence internationally. His citation index currently exceeds 420, reflecting significant engagement and acknowledgment from the global scientific community. His patent filings and peer-reviewed articles reflect a mature body of work that balances fundamental science with technological relevance.

🌍 IMPACT AND INFLUENCE

Dr. Bi’s research holds direct relevance to global efforts toward cleaner energy and efficient power storage. By enhancing solid-state battery technology, his work supports the global transition away from fossil fuels and toward sustainable energy systems. His insights into electrolyte-material compatibility and electrode surface engineering are crucial to the development of next-generation batteries for electric vehicles and grid storage. Furthermore, his collaborative work with institutions like Shaanxi University of Science and Technology and Wenzhou University has allowed for wider dissemination and application of his findings. His technical expertise contributes not only to academic discourse but also to industrial product development, making him a key player in China’s evolving energy landscape.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Bi aims to lead pioneering research in high-energy-density and long-life solid-state batteries. He plans to expand on the mechanistic understanding of electrochemical degradation and develop smart, adaptive electrolytes that can self-heal and maintain ionic conductivity over extended lifecycles. His ambition is to build scalable material systems for commercial energy storage devices while maintaining a commitment to environmentally friendly synthesis processes. He envisions greater integration of AI-based modeling and material informatics into battery research. By nurturing interdisciplinary collaborations, publishing transformative research, and contributing to IP development, Dr. Bi seeks to leave a legacy defined by practical breakthroughs and sustainable innovation in material science.

NOTABLE PUBLICATIONS

Title: CoS₂ embedded graphitic structured N-doped carbon spheres interlinked by rGO as anode materials for high-performance sodium-ion batteries
Authors: X. He, L. Bi, Y. Li, C. Xu, D. Lin
Journal: Electrochimica Acta 332, 135453 (2020)

Title: High energy storage density and discharging efficiency in La³⁺/Nb⁵⁺-co-substituted (Bi₀.₅Na₀.₅)₀.₉₄Ba₀.₀₆TiO₃ ceramics
Authors: Y. Yang, H. Wang, L. Bi, Q. Zheng, G. Fan, W. Jie, D. Lin
Journal: Journal of the European Ceramic Society 39 (10), 3051–3056 (2019)

Title: Enhanced Cycling Stability and Rate Capability in a La-Doped Na₃V₂(PO₄)₃/C Cathode for High-Performance Sodium Ion Batteries
Authors: L. Bi, X. Li, X. Liu, Q. Zheng, D. Lin
Journal: ACS Sustainable Chemistry & Engineering 7 (8), 7693–7699 (2019)

Title: Improving electrochemical performance of Na₃(VPO₄)₂O₂F cathode materials for sodium ion batteries by constructing conductive scaffold
Authors: L. Bi, Z. Miao, X. Li, Z. Song, Q. Zheng, D. Lin
Journal: Electrochimica Acta 337, 135816 (2020)

Title: Insight into accelerating polysulfides redox kinetics by BN@MXene heterostructure for Li–S batteries
Authors: Y. Song, P. Tang, Y. Wang, L. Bi, Q. Liang, Y. Yao, Y. Qiu, L. He, Q. Xie, P. Dong, et al.
Journal: Small 19 (38), 2302386 (2023)

Weiwei Zhang – Materials Science and Engineering – Best Researcher Award

Weiwei Zhang - Materials Science and Engineering - Best Researcher Award

Heze University - China

AUTHOR PROFILE

SCOPUS

🧪 RESEARCH THEMES

Dr. Weiwei Zhang’s core research themes include nanocomposite flame retardancy, interpenetrating polymer networks, polysilsesquioxane-based reinforcement systems, and smart polymer design. Her mission is to create safer, smarter, and more sustainable materials through the innovative integration of polymer science, thermal chemistry, and structural engineering. With a passion for both scientific discovery and practical application, her work seeks to enhance safety performance across industries while promoting greener chemical practices. Dr. Zhang continues to push the boundaries of material science to meet the challenges of the modern world.

🎓 EARLY ACADEMIC PURSUITS

Dr. Weiwei Zhang’s academic journey began with a strong foundation in chemical engineering at Qingdao University, where she completed both her bachelor’s and master’s degrees. She further advanced her expertise by earning a Ph.D. in Materials Science from the Beijing Institute of Technology. Throughout her studies, she consistently ranked among the top students, earning prestigious honors such as Outstanding Doctoral Graduate and the Outstanding Dissertation Award. Her early research included fundamental studies on polysaccharide fibers and advanced flame-retardant composites, which set the stage for her deeper investigations into functional polymers and nanocomposites. These experiences not only shaped her scientific outlook but also sparked a long-term passion for addressing material challenges in safety and sustainability through innovative research in flame-retardant systems and structural materials.

🧑‍🏫 PROFESSIONAL ENDEAVORS

Since January 2022, Dr. Zhang has served as an Associate Professor at the School of Chemistry and Chemical Engineering, Heze University. Her appointment came through the university’s prestigious “Outstanding Doctoral Talent Introduction Program,” which recognizes exceptional young researchers. In this role, she has been instrumental in fostering advanced research programs while mentoring students in polymer and composite material sciences. She balances teaching with research leadership, having secured internal and provincial grants. Her integration into the university has helped establish a robust research environment in material engineering and nanotechnology. Dr. Zhang has also contributed to cross-disciplinary collaborations within the institution, further advancing the university’s profile in applied materials research and sustainable chemical engineering practices.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Zhang's research is centered on functional polymer materials, high-performance composites, and flame-retardant systems. She has explored advanced synthesis methods for silsesquioxane-based nanomaterials and their applications in vinyl ester and epoxy resin systems. Her work integrates experimental investigations with molecular dynamic simulations to uncover structure-property relationships, particularly focusing on mechanical reinforcement, thermal stability, and fire resistance. Her studies on interpenetrating polymer networks, polyhedral oligomeric silsesquioxanes (POSS), and biodegradable fiber spinning techniques provide practical solutions for industries that require materials with superior flame retardancy and durability. These contributions are particularly relevant in the context of safer construction materials, aerospace composites, and sustainable product design.

🏅 ACCOLADES AND RECOGNITION

Dr. Zhang has been consistently recognized for her scientific excellence. During her Ph.D., she was awarded the Outstanding Doctoral Graduate and received multiple first-class scholarships in acknowledgment of her academic and research performance. Her papers have been published in high-impact journals such as Composites Part A & B, Polymer Degradation and Stability, and Journal of Materials Science. Her publication record showcases her dedication to both scientific rigor and real-world application. In recognition of her growing expertise, she has been granted research funding from the Shandong Provincial Natural Science Foundation, highlighting her emerging leadership in flame-retardant material innovation and her ability to compete at both institutional and provincial levels.

🌍 IMPACT AND INFLUENCE

Through her extensive research on flame-retardant nanocomposites, Dr. Zhang is contributing to safer, more sustainable material technologies. Her work on PMPOSS-modified polymers and POSS-reinforced composites has potential applications in transportation, electronics, and construction sectors that demand high-performance and flame-resistant materials. Her findings on transparency, mechanical integrity, and low-smoke emission properties influence both industrial manufacturing processes and safety standards. She continues to collaborate with leading materials scientists across China, further integrating her research into national material innovation strategies. As a teacher and mentor, she is also shaping future chemists and engineers, extending her influence beyond the lab and into future generations of researchers.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Zhang aims to establish herself as a leading voice in flame-retardant and multifunctional material development. Her vision includes the integration of eco-friendly flame retardants, biodegradable polymer systems, and advanced fabrication techniques that reduce carbon footprint. In the future, she intends to pursue further interdisciplinary collaborations—merging polymer chemistry with environmental engineering and nanoscience. By expanding on the mechanisms behind flame suppression and thermal resistance, she hopes to contribute foundational knowledge that can be applied to a broad array of safety-critical industries. Through teaching, publishing, and research leadership, she is building a legacy rooted in material innovation and academic excellence.

NOTABLE PUBLICATIONS

Facile synthesis of polyhedral oligomeric silsesquioxanes with excellent thermosetting, fibrous and crystalline properties

Authors: W. Zhang (Weiwei), Y. Niu (Yukuan), W. Zhang (Wenchao), R. Yang (Rongjie)
Journal: European Polymer Journal, 2024

Analysis on the caged structure of polyhedral oligomeric dodecaphenyl silsesquioxane and its condensation mechanism

Authors: D. Zhang (Donglin), H. Zhou (Hailian), R. Yang (Rongjie), W. Zhang (Weiwei), L. Li (Lamei)
Journal: Journal of Molecular Structure, 2023

Baorong Guo – Sustainable Development – Best Researcher Award

Baorong Guo - Sustainable Development - Best Researcher Award

Guilin University of Technology - China

AUTHOR PROFILE

ORCID

📚 SUMMARY

Dr. Baorong Guo is a management scholar dedicated to transforming decision-making systems, human capital strategies, and organizational resilience. With a blend of academic rigor and applied research, he addresses real-world governance issues, promotes sustainable development, and advances scholarly understanding of organizational behavior. His mission is to develop frameworks that empower institutions to thrive in dynamic and resource-constrained environments, bridging theory with meaningful impact.

🎓 EARLY ACADEMIC PURSUITS

Dr. Baorong Guo’s academic trajectory began with a strong foundation in management sciences, earning postgraduate and doctoral qualifications from Shenyang Jianzhu University and Northeastern University, respectively. His early exposure to interdisciplinary management education, including an international exchange at Chaoyang University of Technology in Taiwan, set the stage for his focused interest in organizational systems and decision-making frameworks. His formative research years were marked by exploration of performance evaluation, team dynamics, and institutional governance, leading to early publications and funded studies. This academic phase laid the intellectual groundwork for his current contributions to strategic and sustainable management systems within complex organizational contexts.

💼 PROFESSIONAL ENDEAVORS

Currently a faculty member at Guilin University of Technology, Dr. Guo has also served in key academic and technical roles at Shenyang Jianzhu University. Over the past decade, he has built a dual career as both educator and project leader, integrating teaching, research, and consultancy. His role has involved guiding management science students, contributing to university planning, and supervising thesis work while maintaining an active research agenda. His practical experiences in management engineering complement his academic duties, enabling him to translate theoretical principles into real-world organizational insights, particularly in business environment optimization and public administration.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Guo’s research addresses core challenges in business management, with a focus on decision-making, team formation, and supervisory board performance. His doctoral dissertation explored team optimization through individual advantage traits, a theme echoed in several of his journal articles. His scholarly contributions span areas such as AI-human collaboration in enterprises, regeneration of human capital, and knowledge management in national research institutions. His applied research often blends theoretical models—like DEMATEL and ISM—with policy analysis, providing tools for improving organizational efficiency, resource allocation, and sustainable governance in both corporate and public sectors.

🏅 ACCOLADES AND RECOGNITION

Among Dr. Guo’s recognitions is the prestigious “May 4th Youth Medal” from Shenyang High-tech Zone, reflecting his outstanding service and contributions to regional business development. His scholarly excellence is further evident in the numerous provincial-level research grants he has secured as principal investigator. His work has appeared in influential journals such as Sustainability, Behavioral Sciences, and Management Review, showcasing his thought leadership in sustainable management. His combination of academic integrity, innovative thinking, and community engagement positions him as a rising scholar in organizational science and regional development studies.

🌍 IMPACT AND INFLUENCE

Dr. Guo’s influence extends across academia, government policy, and regional economic planning. His research into business environment competitiveness and human resource regeneration has informed municipal and provincial strategies in Liaoning and Shenyang. As a project lead on multiple government-funded initiatives, he has directly contributed to optimizing public service delivery and improving urban governance. His interdisciplinary approach, which bridges operations research and policy science, allows him to craft practical recommendations for administrators and institutional leaders, enhancing his societal relevance as both a scholar and policy advisor.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Looking forward, Dr. Guo aims to deepen his research into AI-supported management systems, sustainability in human resource practices, and integrated public-private governance models. He envisions contributing to international discourse on adaptive decision-making systems in an era of digital transformation. His future work will likely focus on building tools that enable institutions to navigate complexity with data-driven insight and human-centered strategy. Through mentoring and collaboration, he also plans to cultivate a new generation of researchers equipped to tackle the socio-economic challenges of the future through innovative management science.

NOTABLE PUBLICATIONS

Title: A Method to Facilitate the Regeneration of Human Resources: A Sustainability Perspective
Authors: Ningning Chen, Xinan Zhao, Guo Baorong, Chenxi Sun
Journal: Sustainability, 2024

Title: A Grounded Theory Examination of Supervisory Boards’ Governance Capability Indicators in Publicly Traded Firms: A Sustainability Perspective
Authors: Guo Baorong, Xinan Zhao, Lizhi Hu
Journal: Sustainability, 2023

Youwei Wang – Structural Health Monitoring – Best Researcher Award

Youwei Wang - Structural Health Monitoring - Best Researcher Award

Sun Yat-sen University - China

AUTHOR PROFILE

GOOGLE SCHOLAR

📚 SUMMARY

Youwei Wang is an emerging scholar with a mission to bridge academic research and public health solutions for elderly populations. Grounded in empirical rigor and a humanistic outlook, his work reflects a dedication to uncovering structural determinants of health and crafting strategies for social support. Through data, dialogue, and dedication, he seeks to contribute to a world where aging is met with dignity, care, and scientific insight.

🎓 EARLY ACADEMIC PURSUITS

Youwei Wang began his academic journey with a profound interest in public health and social well-being, culminating in his current pursuit of a Ph.D. at Sun Yat-Sen University, one of China’s leading institutions. From the outset, Wang demonstrated a keen analytical mind and a desire to explore the intersections between family dynamics, mental health, and aging. His early training included comprehensive exposure to research methodology, data analysis, and community-based field studies. This foundation paved the way for advanced inquiries into the socio-psychological aspects of aging populations. His graduate education has been marked by both academic excellence and a strong drive to contribute original knowledge to the field of gerontology and social epidemiology.

🧑‍🔬 PROFESSIONAL ENDEAVORS

As a doctoral researcher, Youwei Wang has been engaged in a wide spectrum of interdisciplinary projects aimed at understanding the health challenges of older adults in China. His professional work includes the design and execution of quantitative studies examining the effects of intergenerational support, chronic diseases, and social capital on mental health outcomes. Collaborating with senior researchers and policy experts, he has actively contributed to multi-level studies involving structural equation modeling and longitudinal data analysis. His professional activities also include manuscript preparation, academic conference presentations, and assisting in teaching graduate courses, showcasing a well-rounded academic engagement.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Wang's primary research contributions center on geriatric health, intergenerational relationships, and health inequality. He has published five peer-reviewed articles in high-impact journals such as BMC Geriatrics and International Journal of Geriatric Psychiatry, analyzing complex psychosocial dynamics using sophisticated mediation and moderation models. His studies explore how pension systems, oral health, and family support interact with mental health, offering new insights into elder care policy and community health strategies. His proficiency in data analysis tools like Stata, Mplus, SPSS, and ArcGIS enhances the depth and rigor of his research, reinforcing his role as a methodological innovator in public health studies.

🏅 ACCOLADES AND RECOGNITION

Although still early in his academic career, Youwei Wang’s contributions have garnered attention in gerontological research circles. His ability to publish consistently in top-tier journals and to collaborate across disciplines highlights his scholarly merit. His inclusion as first or co-author on multiple studies demonstrates trust and recognition from his academic peers. His methodological versatility and insights into policy-relevant issues have made him a valued contributor in ongoing national and international health projects. These recognitions underscore his growing reputation as a thoughtful and reliable researcher committed to societal well-being.

🌍 IMPACT AND INFLUENCE

Wang’s research has significant implications for public health policy and aging society frameworks. By identifying the roles of social capital, built environment, and family structures in mental health, his work provides practical pathways for improving elderly care in urban and rural China. His findings have influenced community health planning and informed interventions aimed at reducing depressive symptoms in older adults. Beyond academia, his research promotes awareness about social support systems, encouraging evidence-based decision-making among healthcare practitioners and policymakers.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Looking forward, Youwei Wang aims to advance interdisciplinary research at the nexus of health equity, demographic aging, and social policy. He is committed to leveraging his expertise to develop scalable public health interventions that address mental health disparities among seniors. His future vision includes international collaborations that contextualize aging issues across different cultural and economic settings. With continued focus on quantitative modeling and policy application, he seeks to leave a legacy of actionable, inclusive research that improves quality of life for aging populations worldwide.

NOTABLE PUBLICATIONS

Title: Intergenerational support and depressive symptoms among older adults in rural China: the moderating roles of age, living alone, and chronic diseases

            Authors: Q. Sun, Y. Wang, N. Lu, S. Lyu

            Journal: BMC Geriatrics, Volume 22, Article 83 (2022)

Title: Oral health and depressive symptoms among older adults in urban China: a moderated mediation model analysis

           Authors: Q. Sun, Y. Wang, Q. Chang

           Journal: BMC Geriatrics, Volume 22, Article 829 (2022)

Ahmad Suliman – Environmental Engineering – Best Researcher Award

Ahmad Suliman - Environmental Engineering - Best Researcher Award

National Research Centre - Egypt

AUTHOR PROFILE

SCOPUS

ORCID

📚 SUMMARY 

Dr. Ahmad A. M. Elsagheer Suliman is a dedicated horticultural researcher, educator, and leader in sustainable agriculture. His mission revolves around combining traditional knowledge with modern technology to combat global agricultural challenges. Through research, collaboration, and advocacy, he contributes to the development of environmentally sustainable food systems, ensuring better productivity and nutritional quality for future generations.

🎓 EARLY ACADEMIC PURSUITS

Dr. Ahmad A. M. Elsagheer Suliman embarked on his academic path with a Bachelor’s degree in Agricultural Sciences from Al-Azhar University, achieving high distinction. Motivated by a passion for horticulture and plant sciences, he pursued a Master’s in Vegetable Crops at Cairo University, followed by a Ph.D. in the same field from Kazan State Agrarian University in Russia. His doctoral focus on vegetable physiology and climate change adaptation underscored his early interest in sustainable crop production. Dr. Suliman also obtained a mini-MBA from the American University of Science and Technology, demonstrating his commitment to interdisciplinary growth and leadership training. His early academic background formed a solid foundation for a career dedicated to agricultural innovation and research excellence.

🧑‍🔬 PROFESSIONAL ENDEAVORS

Dr. Suliman began his career as an Agricultural Engineer before joining the National Research Centre (NRC) in Egypt. He ascended through research roles to become a full researcher in the Horticultural Crops Technology Department. Over the years, he has also held managerial and leadership roles, including Vice President of the Moringa Plant Production Unit and Inspector at the Food Safety and Inspection Administration. His contributions extend beyond research into public health and education, where he has played a key role in promoting awareness of climate change and plant nutrition. His professional activities reflect a blend of scientific inquiry and service, aimed at improving agricultural systems and food quality in Egypt and beyond.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Suliman’s research is deeply rooted in vegetable crop physiology, with particular expertise in tomatoes and moringa. His studies explore the use of bio-nanoparticles, plant hormones, and organic fertilizers to improve crop yield and resilience against climate stressors. A strong advocate of digital agriculture, he has developed methods for measuring leaf area index and has contributed significantly to sustainable farming techniques. His recent work on nanoparticle applications in plant growth and natural fertilizer production illustrates his pioneering approach to modern agronomy. His involvement in national projects to enhance seed quality and adapt crops to salinity further exemplifies his commitment to food security and agricultural sustainability.

🏅 ACCOLADES AND RECOGNITION

Throughout his career, Dr. Suliman has received widespread recognition for his scholarly and practical achievements. His work has earned him international language and research certifications, including IELTS and Russian language proficiency. He has also completed over 20 certified training programs ranging from scientific writing and digital transformation to chemical safety and business management. His extensive list of peer-reviewed publications in high-impact journals—such as Horticulturae, Scientific Reports, and Agronomy—attest to his scientific rigor and innovation. He is widely respected within Egypt’s research community and often represents the NRC in international conferences and workshops.

🌍 IMPACT AND INFLUENCE

Dr. Suliman’s impact spans academic, governmental, and societal domains. He has contributed to agricultural policy and research projects that aim to improve vegetable seed quality and address food insecurity through Moringa cultivation. His collaborative research with national and international partners has brought attention to the value of eco-friendly fertilizers, drought tolerance, and bioactive plant compounds. As a mentor and educator, he promotes knowledge transfer by supervising graduate students and leading public awareness initiatives. His influence is also evident in his role in organizing scientific symposia on topics such as climate change and food sustainability.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Suliman aspires to further bridge agricultural biotechnology and environmental resilience. He is committed to expanding the use of Moringa-based biofertilizers and advancing nanotechnology in crop enhancement. His future vision includes the integration of AI and digital monitoring systems into horticulture for smarter farming solutions. Through sustained research, policy input, and education, Dr. Suliman seeks to leave a legacy of innovation that strengthens global food systems and supports climate adaptation strategies for developing nations.

NOTABLE PUBLICATION

Ovario-protective effect of Moringa oleifera leaf extract against cyclophosphamide-induced oxidative ovarian damage and reproductive dysfunction in female rats
Authors: Soliman, S.S. (Seham S.), Suliman, A.A. (Ahmad A.), Fathy, K. (Khaled), Sedik, A.A. (Ahmed A.)
Journal: Scientific Reports, 2025

Production of secondary metabolites in callus cultures of Scutellaria baicalensis L. and assessment of their anti-inflammatory and antioxidant efficacy in ulcerative colitis rats
Authors: Abdelazeez, W.M.A. (Walla Mohamed Abdelmaksood), Aboueldis, G.R. (Gamil R.), Suliman, A.A. (Ahmad A.), Mohammed, D.M. (Dina Mostafa)
Journal: Plant Cell, Tissue and Organ Culture, 2025

Ayse Tulin oz – Postharvest Phsiology – Excellence in Research

Ayse Tulin oz - Postharvest Phsiology - Excellence in Research

Cornell University - United States

SUMMARY

Prof. Dr. Ayşe Tülin Öz exemplifies the integration of rigorous science, innovative practice, and visionary leadership. Her career reflects a passion for advancing food safety and sustainability through natural methods rooted in science. With a global academic footprint and strong national influence, she continues to bridge research and real-world impact, ensuring long-term benefits for agriculture, food engineering, and environmental health. Her mission is to empower both academic and public sectors with research-driven solutions for safer and more resilient food systems.

EARLY ACADEMIC PURSUITS

Prof. Dr. Ayşe Tülin Öz began her academic journey in agricultural sciences at Çukurova University, where she earned her bachelor's degree. She advanced through rigorous international programs, completing dual master's studies at Kahramanmaraş Sütçü İmam University and the Mediterranean Agronomic Institute in Chania, Greece. Her doctoral work at Uludağ University solidified her specialization in postharvest physiology and food preservation. She further enriched her academic foundation through visiting scholar positions at Cornell University in both the Horticulture and Food Science departments. These formative experiences laid a global foundation for her research on fruit quality, postharvest treatments, and food safety innovations.

PROFESSIONAL ENDEAVORS

Over two decades, Prof. Öz has held roles as researcher, assistant professor, and professor at prestigious Turkish institutions, culminating in her current role at Osmaniye Korkut Ata University. She has consistently merged research with leadership, managing departmental duties while directing food engineering initiatives. Her academic leadership includes department head positions and involvement in strategic academic committees. Her international appointments, especially with Cornell University, have elevated her research to a global scale, focusing on cutting-edge food preservation methods, from modified atmosphere packaging to natural compound treatments.

CONTRIBUTIONS AND RESEARCH FOCUS

Prof. Öz's research focuses on postharvest technology, particularly natural alternatives to chemical preservatives, and enhancing fruit shelf life using advanced coatings and gases. Her collaborative studies—such as those on the impact of hexanal vapor on strawberries and figs—highlight her contribution to sustainable food preservation. She has led and participated in EU Horizon 2020 projects and numerous TÜBİTAK-funded studies. Her extensive publication record in SCI-indexed journals reveals a deep commitment to improving the nutritional quality, safety, and longevity of horticultural produce through environmentally conscious solutions.

ACCOLADES AND RECOGNITION

Prof. Öz’s outstanding contributions have earned her multiple incentive awards from TÜBİTAK and Osmaniye Korkut Ata University for high-impact publications. She has received international recognition, including support from the NY State Department of Agriculture and the EU Horizon 2020 program. Notable distinctions include the TUBITAK 2219 Postdoctoral Research Fellowship and participation in international scientific training programs in Israel and Greece. Her scientific excellence is also reflected in invitations to editorial boards of numerous international journals, where she has served as a reviewer and special issue editor.

IMPACT AND INFLUENCE

Through over 30 international SCI publications and extensive project leadership, Prof. Öz has significantly influenced postharvest research, especially in natural food preservation. Her work bridges academic, governmental, and industrial platforms, offering sustainable solutions to pressing agricultural challenges. By fostering collaborations with global institutions such as Cornell University and participating in international symposia, she has positioned Turkish food engineering research on the global stage, while mentoring the next generation of scientists and researchers in food technology.

LEGACY AND FUTURE CONTRIBUTIONS

Prof. Öz's academic legacy lies in her dedication to sustainable agricultural practices and natural food preservation technologies. As a pioneer in hexanal-based fruit treatment and modified atmosphere packaging, she has introduced viable alternatives to synthetic chemicals in the food industry. Her future vision includes expanding these practices to broader markets, strengthening international academic cooperation, and developing industry-ready technologies. Through continued leadership in academic departments and active roles in international projects, she is committed to shaping a healthier and more sustainable global food system.

NOTABLE PUBLICATION

Improving blueberry cold storage quality: the effect of preharvest hexanal application on chilling injuries and antioxidant defense mechanisms
Authors: Duygu Ayvaz Sönmez, Ayse Tülin Öz, Md Arfan H. Ali, Nesibe Ebru Kafkas, Ömer Faruk Bilgin
Journal: Journal of the Science of Food and Agriculture, 2024

Postharvest hexanal application delays senescence and maintains quality in persimmon fruit during low-temperature storage
Authors: Ayse Tülin Öz, Büşra Eryol, Md Arfan H. Ali
Journal: Journal of the Science of Food and Agriculture, 2023

Ranjit Bariki – Materials Science and Engineering – Best Researcher Award

Ranjit Bariki - Materials Science and Engineering - Best Researcher Award

UAE University - United Arab Emirates

EARLY ACADEMIC PURSUITS

DR. RANJIT BARIKI began his academic journey with a B.Sc. in Chemistry from Utkal University, followed by an M.Sc. and M.Phil. in Inorganic Chemistry at Sambalpur University. Demonstrating an early inclination toward materials science and catalysis, he pursued and completed his Ph.D. at the National Institute of Technology Rourkela in Material Chemistry, under the supervision of Prof. B.G. Mishra. His doctoral research laid a strong foundation in the synthesis and application of porous hybrid materials for sustainable energy and environmental applications.

PROFESSIONAL ENDEAVORS

Dr. Bariki has held several prestigious roles including Postdoctoral Scientist at the American University of Sharjah and UAE University. He also served as a Senior and Junior Research Fellow in India, working extensively on porous hybrid materials. His academic contributions include teaching undergraduate lab courses and guiding master's theses. He has actively participated in scientific editing roles and contributed to knowledge dissemination through freelance editorial work, combining research with communication.

CONTRIBUTIONS AND RESEARCH FOCUS

His research portfolio is richly diverse and centers on the synthesis of metal-organic frameworks (MOFs), covalent organic frameworks (COFs), and advanced semiconductor materials. Dr. Bariki has explored applications in ammonia production, photocatalytic hydrogen evolution, biomass conversion, CO₂ reduction, and wastewater treatment. His work often emphasizes cost-effective, sustainable methods for energy and environmental remediation, utilizing complex nanostructures and heterojunction systems for enhanced photocatalytic activity.

ACCOLADES AND RECOGNITION

Dr. Bariki’s scholarly excellence is reflected in numerous accolades, including the Prof. Dayanidhi Patnaik Memorial Award by the Odisha Chemical Society, qualification in national competitive exams like CSIR-NET and GATE, and an IMA scholarship for academic merit. With over 1,100 citations, an h-index of 19, and multiple Q1 journal publications, his work has earned global recognition in photocatalysis and energy conversion.

IMPACT AND INFLUENCE

His scientific contributions have significant implications in addressing climate and energy challenges, especially through innovations in ammonia synthesis, green hydrogen production, and pollutant degradation. With multiple publications in high-impact journals such as Applied Catalysis B, Inorganic Chemistry, and Chemical Engineering Journal, Dr. Bariki has established a strong footprint in both academic and industrial research communities across India and the UAE.

LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Bariki envisions pioneering sustainable catalytic technologies that bridge academic innovation with industrial application. He aims to continue expanding his work on renewable energy solutions and photocatalysis, fostering collaborations globally. His legacy is being built upon novel catalyst architectures and a dedication to mentoring future chemists and engineers in clean energy technologies.

PUBLICATION EXCELLENCE

With over 25 high-impact publications, Dr. Bariki has significantly enriched literature on multifunctional photocatalysts and green chemistry. His papers reflect a sophisticated understanding of charge migration mechanisms, material heterojunctions, and environmental decontamination strategies. His authorship often leads key projects, as seen in his corresponding author roles, emphasizing leadership in research dissemination.

NOTABLE PUBLICATION

Title: Facile synthesis and photocatalytic efficacy of UiO-66/CdIn₂S₄ nanocomposites with flowerlike 3D-microspheres towards aqueous phase decontamination of triclosan and H₂ evolution
Authors: R. Bariki, D. Majhi, K. Das, A. Behera, B.G. Mishra
Journal: Applied Catalysis B: Environmental 270, 118882 (2020)

Title: Plasmonic Ag nanoparticle decorated Bi₂O₃/CuBi₂O₄ photocatalyst for expeditious degradation of 17α-ethinylestradiol and Cr (VI) reduction: Insight into electron transfer
Authors: D. Majhi, A.K. Mishra, K. Das, R. Bariki, B.G. Mishra
Journal: Chemical Engineering Journal 413, 127506 (2021)

Title: Facile synthesis and application of CdS/Bi₂₀TiO₃₂/Bi₄Ti₃O₁₂ ternary heterostructure: a synergistic multi-heterojunction photocatalyst for enhanced endosulfan degradation and
Authors: K. Das, R. Bariki, D. Majhi, A. Mishra, K.K. Das, R. Dhiman, B.G. Mishra
Journal: Applied Catalysis B: Environmental 303, 120902 (2022)

Title: A facile reflux method for in situ fabrication of a non-cytotoxic Bi₂S₃/β-Bi₂O₃/ZnIn₂S₄ ternary photocatalyst: A novel dual Z-scheme system with enhanced
Authors: D. Majhi, K. Das, R. Bariki, S. Padhan, A. Mishra, R. Dhiman, P. Dash, et al.
Journal: Journal of Materials Chemistry A 8(41), 21729–21743 (2020)

Title: In-situ synthesis of structurally oriented hierarchical UiO-66 (–NH₂)/CdIn₂S₄/CaIn₂S₄ heterostructure with dual S-scheme engineering for photocatalytic renewable H₂ production
Authors: R. Bariki, S.K. Pradhan, S. Panda, S.K. Nayak, D. Majhi, K. Das, B.G. Mishra
Journal: Separation and Purification Technology 314, 123558 (2023)

Ilkay Cinar – Artificial intelligence – Best Researcher Award

Ilkay Cinar - Artificial intelligence - Best Researcher Award

Selcuk University - Turkey

AUTHOR PROFILE

GOOGLE SCHOLAR

SUMMARY

İlkay Çınar is a dynamic assistant professor and AI researcher dedicated to harnessing the power of artificial intelligence for practical solutions in agriculture, healthcare, and safety systems. Through academic excellence, research innovation, and committed mentorship, he continues to shape both technology and the minds that will drive its future.

EARLY ACADEMIC PURSUITS

İlkay Çınar began his academic journey in computer and electronics systems education, earning dual bachelor's degrees from Selçuk University in 2012 and 2018. His foundational years were marked by a growing fascination with artificial intelligence and image processing. He continued to explore machine learning in applied domains through his master’s research, focusing on classifying rice varieties using AI. His doctoral work on semantic image inpainting using deep generative models established his early dedication to pushing the boundaries of machine learning in visual computing.

PROFESSIONAL ENDEAVORS

As an academic at Selçuk University’s Department of Computer Engineering, İlkay Çınar advanced through the ranks from lecturer to assistant professor. He taught both undergraduate and graduate courses such as Image Processing, Web Architecture, and Smart Factory Systems. His work also included administrative leadership, serving as Deputy Director of the Distance Education Center. Throughout, he contributed to national research projects, emphasizing AI’s real-world applications across industries.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Çınar’s research centers on deep learning, machine learning, and their applications in agriculture, healthcare, and industry. His prolific publication record—spanning from automatic quality control in food processing to the detection of eye diseases and diabetes—demonstrates a commitment to interdisciplinary innovation. He has explored CNN, LSTM, and hybrid models, often with a focus on feature optimization, transfer learning, and mobile deployment, making his research impactful beyond academic circles.

ACCOLADES AND RECOGNITION

İlkay Çınar has published extensively in high-impact journals such as Computers and Electronics in Agriculture, Biomedical Signal Processing and Control, and European Food Research and Technology. His scholarly output includes more than 25 peer-reviewed international journal articles, numerous conference proceedings, and authored book chapters. His expertise has been acknowledged through active participation in prestigious conferences and ongoing collaborative projects, including TUBITAK-funded studies.

IMPACT AND INFLUENCE

Dr. Çınar’s research contributes significantly to societal needs by addressing challenges like food safety, medical diagnostics, and industrial automation. His supervised theses involve real-world issues, such as workplace safety violations and disease detection, underlining his mentorship’s practical value. He is helping shape a new generation of AI practitioners capable of integrating technological innovations with community needs.

LEGACY AND FUTURE CONTRIBUTIONS

Looking forward, İlkay Çınar is poised to continue advancing the integration of AI in health, agriculture, and environmental monitoring. His interdisciplinary focus positions him as a key figure in expanding the real-world applicability of deep learning in Turkey and beyond. His work on smart agriculture, medical image analysis, and automated quality assessment will likely have lasting impacts on both research and industrial sectors

NOTABLE PUBLICATIONS

Title: Classification of rice varieties with deep learning methods
Authors: M. Koklu, I. Cinar, Y.S. Taspinar
Journal: Computers and Electronics in Agriculture

Title: Classification of rice varieties using artificial intelligence methods
Authors: I. Cinar, M. Koklu
Journal: International Journal of Intelligent Systems and Applications in Engineering

Title: Classification of Date Fruits into Genetic Varieties Using Image Analysis
Authors: M. Koklu, R. Kursun, Y.S. Taspinar, I. Cinar
Journal: Mathematical Problems in Engineering

Title: Classification and analysis of pistachio species with pre-trained deep learning models
Authors: D. Singh, Y.S. Taspinar, R. Kursun, I. Cinar, M. Koklu, I.A. Ozkan, H.N. Lee
Journal: Electronics

Title: Identification of Rice Varieties Using Machine Learning Algorithms
Authors: I. Cinar, M. Koklu
Journal: Journal of Agricultural Sciences (Tarım Bilimleri Dergisi)

Title: Classification of Raisin Grains Using Machine Vision and Artificial Intelligence Methods
Authors: I. Cinar, M. Koklu, S. Tasdemir
Journal: Gazi Mühendislik Bilimleri Dergisi (GMBD)

Yuhang Huang – Environmental Engineering – Best Researcher Award

Yuhang Huang - Environmental Engineering - Best Researcher Award

Hunan University - China

AUTHOR PROFILE

GOOGLE SCHOLAR

🎓SUMMARY

Yuhang Huang is a promising young researcher from China and a current master’s degree candidate at Hunan University, majoring in Mechanical Engineering. His academic journey is driven by a deep interest in wave energy harvesting—a field combining principles of mechanical design, fluid dynamics, and energy sustainability. Known for his diligence, leadership, and academic excellence, he has already co-authored impactful publications in top-tier journals. Huang has consistently displayed initiative by serving as class president and taking active roles in academic coordination. His future ambitions lie in advancing ocean-based renewable energy systems that address environmental and engineering challenges in marine applications. With a growing research profile and a strong educational foundation, he aims to contribute meaningfully to the global energy transition.

🎓 EDUCATION AND FOUNDATION

Yuhang Huang's educational foundation was built at Hunan University, where he majored in Mechanical Engineering. His coursework has covered diverse technical areas, including fluid mechanics, mechanical manufacturing technology, microcomputer principles, and mechatronic systems. Through hands-on projects and collaborative research, he developed an understanding of system modeling and energy conversion. He demonstrated strong academic performance throughout his undergraduate and postgraduate studies and participated actively in organizing student-centered events. This technical and interpersonal training has positioned him as a capable researcher with the ability to integrate theory into real-world applications. His education has nurtured a balanced skill set, preparing him for advanced research and collaborative innovation in mechanical energy systems.

🧑‍💼 WORK AND LEADERSHIP EXPERIENCE

Throughout his academic career, Huang has been actively involved in student leadership. From his undergraduate years, where he organized campus and academic events, to his graduate studies, where he serves as class president, he has shown a consistent dedication to team building and academic coordination. He has assisted peers in academic planning and acted as a bridge between students and faculty. Beyond administrative contributions, his leadership has strengthened research groups and promoted collaborative efficiency in experimental settings. These experiences have refined his organizational and interpersonal skills, further enhancing his readiness for multidisciplinary research environments. His ability to combine technical research with leadership roles marks him as a well-rounded future scientist and team contributor.

🌊 RESEARCH INTERESTS AND FOCUS

Yuhang Huang is deeply engaged in research related to ocean wave energy harvesting, particularly in bistable and nonlinear mechanical systems. His focus includes the development of energy harvesting devices for marine buoys and unmanned surface vessels. This work involves using mechanical dynamics to capture kinetic energy from waves and convert it into usable electricity. His designs emphasize compactness, efficiency, and adaptability in harsh marine conditions. His published articles in journals like Journal of Cleaner Production and Renewable Energy showcase innovative methods in sustainable marine power generation. With a keen eye on practical implementation, his work bridges academic theory and environmental engineering for real-world energy solutions.

🏅 HONORS AND ACHIEVEMENTS

Huang’s academic journey has been recognized with numerous honors for his leadership and scholarly contributions. Throughout both undergraduate and postgraduate stages, he maintained an exceptional academic record while actively supporting peer learning. His leadership as a class president and member of the academic committee helped improve class cohesion and academic performance. His involvement in extracurricular and technical communities demonstrates his broad engagement with campus life. Notably, his role in high-impact research publications as a co-author also reflects his growing credibility in academic circles. These achievements indicate a commitment not only to scientific rigor but also to collaborative learning and academic service.

🧠 SKILLS AND TECHNICAL STRENGTH

Yuhang Huang's research skills span across mechanical system modeling, nonlinear vibration analysis, and device optimization. His technical expertise includes hands-on system design, experimental mechanics, and interface control in energy harvesting systems. He is proficient in applying theoretical mechanics and system simulation tools to real-world mechanical problems. His language proficiency in English also supports his academic communication, collaboration, and publication in international journals. His skill set supports a cross-disciplinary research style, allowing him to contribute meaningfully to projects at the intersection of mechanical engineering and renewable energy. These proficiencies position him for success in global research collaborations and further academic pursuit.

📚 PUBLICATIONS AND FUTURE OUTLOOK

Huang has co-authored notable publications including “Bistable built-in ocean wave energy harvester for ocean buoys” and “Nonlinear ocean energy harvesting method for unmanned surface vessels,” published in Journal of Cleaner Production and Renewable Energy. These works demonstrate his technical contributions to marine energy solutions. Looking ahead, he aspires to enhance system intelligence through AI-assisted control and adaptive energy systems. His research vision includes scaling wave energy technologies to support autonomous marine operations and coastal monitoring. By continuing to innovate in mechanical energy harvesting, he aims to contribute to sustainable technologies that support environmental resilience and global energy needs.

NOTABLE PUBLICATION

Title: Diffusionedge: Diffusion probabilistic model for crisp edge detection
Authors: Y. Ye, K. Xu, Y. Huang, R. Yi, Z. Cai
Journal/Conference: Proceedings of the AAAI Conference on Artificial Intelligence, Vol. 38 (7), 2024

Title: Neural architecture search for joint human parsing and pose estimation
Authors: D. Zeng, Y. Huang, Q. Bao, J. Zhang, C. Su, W. Liu
Journal/Conference: Proceedings of the IEEE/CVF International Conference on Computer Vision, 2021

Title: Genre-conditioned long-term 3D dance generation driven by music
Authors: Y. Huang, J. Zhang, S. Liu, Q. Bao, D. Zeng, Z. Chen, W. Liu
Journal/Conference: ICASSP 2022 – IEEE International Conference on Acoustics, Speech and Signal Processing, 2022

Title: Diffmot: A real-time diffusion-based multiple object tracker with non-linear prediction
Authors: W. Lv, Y. Huang, N. Zhang, R.S. Lin, M. Han, D. Zeng
Journal/Conference: Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition, 2024

Title: Caco: Both positive and negative samples are directly learnable via cooperative-adversarial contrastive learning
Authors: X. Wang, Y. Huang, D. Zeng, G.J. Qi
Journal/Conference: IEEE Transactions on Pattern Analysis and Machine Intelligence, Vol. 45 (9), 2023

Ranjit Bariki – Materials Science and Engineering – Best Researcher Award

Ranjit Bariki - Materials Science and Engineering - Best Researcher Award

United Arab Emirates University - India

🎓 EARLY ACADEMIC PURSUITS

DR. RANJIT BARIKI began his academic journey with a B.Sc. in Chemistry from Utkal University, followed by an M.Sc. and M.Phil. in Inorganic Chemistry at Sambalpur University. Demonstrating an early inclination toward materials science and catalysis, he pursued and completed his Ph.D. at the National Institute of Technology Rourkela in Material Chemistry, under the supervision of Prof. B.G. Mishra. His doctoral research laid a strong foundation in the synthesis and application of porous hybrid materials for sustainable energy and environmental applications.

🏛️ PROFESSIONAL ENDEAVORS

Dr. Bariki has held several prestigious roles including Postdoctoral Scientist at the American University of Sharjah and UAE University. He also served as a Senior and Junior Research Fellow in India, working extensively on porous hybrid materials. His academic contributions include teaching undergraduate lab courses and guiding master's theses. He has actively participated in scientific editing roles and contributed to knowledge dissemination through freelance editorial work, combining research with communication.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

His research portfolio is richly diverse and centers on the synthesis of metal-organic frameworks (MOFs), covalent organic frameworks (COFs), and advanced semiconductor materials. Dr. Bariki has explored applications in ammonia production, photocatalytic hydrogen evolution, biomass conversion, CO₂ reduction, and wastewater treatment. His work often emphasizes cost-effective, sustainable methods for energy and environmental remediation, utilizing complex nanostructures and heterojunction systems for enhanced photocatalytic activity.

🏅 ACCOLADES AND RECOGNITION

Dr. Bariki’s scholarly excellence is reflected in numerous accolades, including the Prof. Dayanidhi Patnaik Memorial Award by the Odisha Chemical Society, qualification in national competitive exams like CSIR-NET and GATE, and an IMA scholarship for academic merit. With over 1,100 citations, an h-index of 19, and multiple Q1 journal publications, his work has earned global recognition in photocatalysis and energy conversion.

🌍 IMPACT AND INFLUENCE

His scientific contributions have significant implications in addressing climate and energy challenges, especially through innovations in ammonia synthesis, green hydrogen production, and pollutant degradation. With multiple publications in high-impact journals such as Applied Catalysis B, Inorganic Chemistry, and Chemical Engineering Journal, Dr. Bariki has established a strong footprint in both academic and industrial research communities across India and the UAE.

🔗 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Bariki envisions pioneering sustainable catalytic technologies that bridge academic innovation with industrial application. He aims to continue expanding his work on renewable energy solutions and photocatalysis, fostering collaborations globally. His legacy is being built upon novel catalyst architectures and a dedication to mentoring future chemists and engineers in clean energy technologies.

📚 PUBLICATION EXCELLENCE

With over 25 high-impact publications, Dr. Bariki has significantly enriched literature on multifunctional photocatalysts and green chemistry. His papers reflect a sophisticated understanding of charge migration mechanisms, material heterojunctions, and environmental decontamination strategies. His authorship often leads key projects, as seen in his corresponding author roles, emphasizing leadership in research dissemination.

NOTABLE PUBLICATION

Title: Facile synthesis and photocatalytic efficacy of UiO-66/CdIn₂S₄ nanocomposites with flowerlike 3D-microspheres towards aqueous phase decontamination of triclosan and H₂ evolution
Authors: R. Bariki, D. Majhi, K. Das, A. Behera, B.G. Mishra
Journal: Applied Catalysis B: Environmental 270, 118882 (2020)

Title: Plasmonic Ag nanoparticle decorated Bi₂O₃/CuBi₂O₄ photocatalyst for expeditious degradation of 17α-ethinylestradiol and Cr (VI) reduction: Insight into electron transfer
Authors: D. Majhi, A.K. Mishra, K. Das, R. Bariki, B.G. Mishra
Journal: Chemical Engineering Journal 413, 127506 (2021)

Title: Facile synthesis and application of CdS/Bi₂₀TiO₃₂/Bi₄Ti₃O₁₂ ternary heterostructure: a synergistic multi-heterojunction photocatalyst for enhanced endosulfan degradation and
Authors: K. Das, R. Bariki, D. Majhi, A. Mishra, K.K. Das, R. Dhiman, B.G. Mishra
Journal: Applied Catalysis B: Environmental 303, 120902 (2022)

Title: A facile reflux method for in situ fabrication of a non-cytotoxic Bi₂S₃/β-Bi₂O₃/ZnIn₂S₄ ternary photocatalyst: A novel dual Z-scheme system with enhanced
Authors: D. Majhi, K. Das, R. Bariki, S. Padhan, A. Mishra, R. Dhiman, P. Dash, et al.
Journal: Journal of Materials Chemistry A 8(41), 21729–21743 (2020)

Title: In-situ synthesis of structurally oriented hierarchical UiO-66 (–NH₂)/CdIn₂S₄/CaIn₂S₄ heterostructure with dual S-scheme engineering for photocatalytic renewable H₂ production
Authors: R. Bariki, S.K. Pradhan, S. Panda, S.K. Nayak, D. Majhi, K. Das, B.G. Mishra
Journal: Separation and Purification Technology 314, 123558 (2023)