Junnan Hao | Materials Science and Engineering | Best Researcher Award

Dr . Junnan Hao | Materials Science and Engineering | Best Researcher Award

lecturer at The University of Adelaide , Australia

Dr. Junnan Hao is an outstanding early-career researcher in chemical engineering, specializing in aqueous battery technology with a strong focus on bridging fundamental science and industrial applications. With over 91 publications, including 30 ESI Highly Cited Papers and an H-index of 54, his work has garnered significant global recognition. He has attracted substantial research funding, including a prestigious DECRA Fellowship and AUD 680,000 in industry investment, underscoring the practical relevance of his research. Dr. Hao has also demonstrated leadership through mentoring PhD students, managing laboratories, and serving on editorial boards of leading journals. His integration of AI into materials research and innovation in battery development reflects cutting-edge contributions to sustainable energy. While future international collaborations and expanded leadership roles could further elevate his profile, his achievements to date make him highly deserving of the Best Researcher Award. His impact on both academia and industry is profound and continues to grow.


Professional Profile 

Education🎓

Dr. Junnan Hao has a strong and progressive academic background in chemical engineering and physical chemistry. He earned his Bachelor’s degree in Chemical Engineering from Zhengzhou University of Light Industry in 2013, followed by a Master’s degree in Physical Chemistry from South China Normal University in 2016. He then completed his PhD in Chemical Engineering at the University of Wollongong, Australia, in 2020, where his doctoral research focused on advanced energy storage materials. His academic journey has been marked by consistent excellence and a clear focus on developing sustainable energy technologies. Following his PhD, Dr. Hao undertook a postdoctoral fellowship at the University of Adelaide from 2020 to 2022. He is currently serving as a DECRA Fellow and Lecturer at the University of Adelaide (2022–2025), where he continues to contribute significantly to research and teaching in the field of aqueous batteries and advanced electrochemical energy systems.

Professional Experience📝

Dr. Junnan Hao has built a distinguished professional career in the field of chemical engineering, with a strong focus on energy storage technologies. After completing his PhD in 2020, he joined the University of Adelaide as a Postdoctoral Research Fellow, where he contributed to several high-impact projects in aqueous battery development. In 2022, he was awarded the prestigious Discovery Early Career Researcher Award (DECRA) by the Australian Research Council and appointed as a Lecturer and DECRA Fellow at the University of Adelaide. In this role, Dr. Hao leads cutting-edge research that integrates artificial intelligence with materials engineering to develop next-generation battery technologies. He also manages a chemical synthesis laboratory, supervises multiple PhD and postgraduate students, and actively collaborates with industry partners. His work has resulted in significant funding and commercial interest, reflecting his ability to translate research into practical solutions. Dr. Hao’s professional experience demonstrates both scientific leadership and industry relevance.

Research Interest🔎

Dr. Junnan Hao’s research interests lie at the intersection of materials science, electrochemistry, and artificial intelligence, with a primary focus on advancing aqueous battery technologies. His work aims to bridge fundamental scientific understanding with practical energy storage applications, contributing to the development of safer, cost-effective, and high-performance batteries. Dr. Hao is particularly interested in designing advanced electrodes and electrolytes through innovative approaches, including the use of machine learning to accelerate materials discovery and optimization. His research also explores the underlying electrochemical mechanisms to improve battery reversibility, stability, and energy density. Driven by the goal of enabling scalable and sustainable energy solutions, Dr. Hao collaborates closely with industry to commercialize novel battery technologies. His interdisciplinary and application-driven approach has led to numerous highly cited publications and significant research funding, underscoring the real-world impact and forward-thinking nature of his work in the clean energy and battery materials fields.

Award and Honor🏆

Dr. Junnan Hao has received numerous prestigious awards and honors that recognize his exceptional contributions to research in energy storage and materials science. Notably, he was named a Highly Cited Researcher by Clarivate in 2024 and listed among the World’s Top 0.05% Scholars by ScholarGPS, reflecting the global impact of his work. He has also been recognized as one of the Top 2% Scientists globally by Stanford University and Elsevier in both 2023 and 2024. Dr. Hao received the DECRA Fellowship from the Australian Research Council in 2023, a major national honor for early-career researchers. His other accolades include the ChemComm Emerging Investigator Award (2025), JMCA Emerging Investigator (2024), and several institutional and international awards such as the Australia China Alumni Award and AINSE Early Career Researcher Award. These recognitions highlight his leadership, innovation, and growing international reputation in sustainable energy research and academic excellence.

Research Skill🔬

Dr. Junnan Hao possesses a diverse and advanced set of research skills that underpin his success in the field of energy storage and electrochemical systems. He is highly proficient in the synthesis and characterization of battery materials, particularly for aqueous zinc-ion batteries, and has extensive experience using state-of-the-art techniques such as synchrotron-based spectroscopy, X-ray diffraction, and electron microscopy. Dr. Hao is skilled in designing and optimizing electrolytes and electrodes, and has pioneered the application of machine learning to accelerate materials discovery and performance prediction. His ability to conduct both fundamental mechanistic studies and practical device fabrication enables a seamless translation of lab innovations into scalable technologies. In addition, he has strong data analysis, scientific writing, and project management skills, demonstrated by his role in leading multidisciplinary teams, managing research laboratories, and mentoring students. Dr. Hao’s research expertise integrates materials engineering, electrochemistry, and computational tools, driving impactful innovation in battery technologies.

Conclusion💡

Dr. Junnan Hao is highly suitable for the Best Researcher Award.
His prolific, high-impact research; strategic integration of AI in materials science; substantial industrial relevance; and growing academic leadership make him a top-tier early-career researcher not only in Australia but globally. He represents the ideal combination of scholarly excellence, innovation, and real-world impact that such an award seeks to honor.

Publications Top Noted✍

Title: High-Performance Bipolar Small-Molecule Organic Cathode for Wide-Temperature-Range Aqueous Zinc-Ion Batteries
Authors: Hua K., Ma Q., Liu Y., … Zhang L., Zhang C.
Year: 2025
Citations: 0

Title: Anti-Swelling Microporous Membrane for High-Capacity and Long-Life Zn−I₂ Batteries
Authors: Chen Q., Hao J., Zhu Y., … Jaroniec M., Qiao S.Z.
Year: 2025
Citations: 18

Title: Aqueous Zinc-Bromine Battery with Highly Reversible Bromine Conversion Chemistry
Authors: Zhao X., Hao J., Chen Q., … Mao L., Qiao S.Z.
Year: 2025
Citations: 0

Title: All-Climate Energy-Dense Cascade Aqueous Zn-I₂ Batteries Enabled by a Polycationic Hydrogel Electrolyte
Authors: Liu Y., Zhang L., Liu L., … Hao J., Zhang C.
Year: 2025
Citations: 2

Title: Coordination Chemistry toward Advanced Zn-I₂ Batteries with Four-Electron I⁻/I⁰/I⁺ Conversion
Authors: Zhang S., Hao J., Wu H., … Zhao X., Qiao S.Z.
Year: 2025
Citations: 0

Title: AI-Driven Electrolyte Additive Selection to Boost Aqueous Zn-Ion Batteries Stability
Authors: Li H., Hao J., Qiao S.Z.
Year: 2024
Citations: 6

Title: The Role of Electrocatalytic Materials for Developing Post-Lithium Metal||Sulfur Batteries
Authors: Ye C., Li H., Chen Y., … Shan J., Qiao S.Z.
Year: 2024
Citations: 16

Title: Alkaline-Based Aqueous Sodium-Ion Batteries for Large-Scale Energy Storage
Authors: Wu H., Hao J., Jiang Y., … Wang C., Qiao S.Z.
Year: 2024
Citations: 65

Title: Toward High-Energy-Density Aqueous Zinc–Iodine Batteries: Multielectron Pathways
Authors: Zhang S., Hao J., Wu H., … Ye C., Qiao S.Z.
Year: 2024
Citations: Not listed

 

MAURIZIO FILIPPINI | SANITY | Best Researcher Award

Mr. MAURIZIO FILIPPINI | SANITY | Best Researcher Award

RESP. ENDOSCOPIA GINECOLOGIA at OSPEDALE DI STATO REP. SAN MARINO, San Marino

Dr. Maurizio Filippini is an accomplished gynecologist and obstetrician with extensive experience in endoscopic surgery, fetal medicine, and gynecological laser therapy. With a medical career spanning over three decades, he has dedicated himself to advancing gynecological surgical techniques, prenatal screening, and minimally invasive treatments for women’s health. His contributions in academic research, clinical practice, and education have made him a recognized authority in his field.

profile

scopus

Education

Dr. Filippini earned his medical degree in 1986 from the University of Bologna, with highest honors, specializing in immunological causes of infertility. In 1991, he completed his specialization in Obstetrics and Gynecology at the University of Florence, focusing on prognostic factors in cervical carcinoma. Further refining his expertise, he obtained a European Diploma in Operative Endoscopy in Gynecology from the University of Auvergne, France, in 1998, emphasizing hysteroscopic and laparoscopic surgical techniques.

Experience

Dr. Filippini has been an integral part of the Obstetrics and Gynecology Division at the State Hospital of San Marino since 1989. Over the years, he has performed a wide range of surgical procedures, from cesarean sections and hysterectomies to advanced laparoscopic and hysteroscopic interventions. Since 2010, he has led the Functional Unit of Gynecological Endoscopy, spearheading innovations in minimally invasive gynecological surgery. His expertise also extends to fetal medicine, having been an accredited operator for fetal aneuploidy screening since 2011.

Research Interests

Dr. Filippini’s research is centered on minimally invasive gynecological surgery, fetal medicine, and laser therapy applications in gynecology. He has contributed significantly to the development of laser treatments for vaginal atrophy, pelvic floor disorders, and gynecological oncology. His work also includes advancements in ultrasound diagnostics, prenatal screening, and techniques for preserving female reproductive health through conservative surgical approaches.

Awards

Dr. Filippini has been recognized for his contributions to gynecology and obstetrics through numerous awards and honorary distinctions. His pioneering work in endoscopic surgery and laser therapy has been acknowledged at international conferences and congresses. He continues to receive accolades for his role as an educator and innovator in women’s health.

Publications

Dr. Filippini has authored several influential publications in gynecology and minimally invasive surgery. Below are some of his notable works:

Filippini, M. (2015). “The Role of CO2 Laser Therapy in Gynecological Atrophy.” Journal of Minimally Invasive Gynecology. Cited by 45 articles.

Filippini, M. (2017). “Endoscopic Approaches in Modern Gynecology.” International Journal of Gynecological Surgery. Cited by 32 articles.

Filippini, M. (2018). “Prenatal Screening Techniques: Innovations and Challenges.” Fetal Medicine Journal. Cited by 28 articles.

Filippini, M. (2019). “Laparoscopic Surgery for Cervical Carcinoma: A Comparative Study.” Obstetrics & Gynecology International. Cited by 37 articles.

Filippini, M. (2020). “Advancements in Hysteroscopic Procedures: A Systematic Review.” European Journal of Obstetrics & Gynecology. Cited by 29 articles.

Filippini, M. (2021). “Pelvic Floor Reconstruction with Laser Therapy.” Journal of Reproductive Health. Cited by 40 articles.

Filippini, M. (2022). “Minimally Invasive Treatment of Uterine Fibroids: A New Perspective.” Journal of Gynecological Research. Cited by 34 articles.

Conclusion

Dr. Maurizio Filippini’s outstanding contributions to gynecological research, innovative surgical techniques, and commitment to medical education make him an ideal recipient of the Best Researcher Award. His work continues to shape the future of women’s health, making a lasting impact on both research and clinical practice.

Enoch Nifise OGUNMUYIWA | Metallurgy | Best Researcher Award

Prof  Enoch Nifise OGUNMUYIWA | Metallurgy |  Best Researcher Award

Associate Professor at  Botswana International University of Science and Technology , Botswana.

Dr. Enoch Nifise Ogunmuyiwa, PhD, PrEng, is an esteemed Associate Professor in Materials and Metallurgical Engineering at the Botswana International University of Science and Technology (BIUST). With a distinguished career spanning academia, research, and industry collaborations, he specializes in materials science, metallurgy, and sustainable engineering. His expertise extends to corrosion, tribology, and advanced materials synthesis, with a strong commitment to innovation and excellence in engineering education. A prolific researcher with a commendable citation record, Dr. Ogunmuyiwa continues to contribute significantly to the scientific community through publications, mentorship, and industrial projects.

PROFESSIONAL PROFILE

Google Scholar

Orcid

Scopus

EDUCATION 

Dr. Ogunmuyiwa holds a PhD in Materials and Metallurgical Engineering from the University of the Witwatersrand, South Africa (2013). He earned his MSc (Eng) in the same discipline from the University of the Witwatersrand (2009) and a BEng (Hons) in Metallurgical and Materials Engineering from the Federal University of Technology, Akure, Nigeria (2005). His academic journey is marked by outstanding achievements and multiple scholarships recognizing his academic excellence.

EXPERIENCE 

Dr. Ogunmuyiwa has held various academic and research positions, progressing from a Research Assistant and Postdoctoral Fellow to his current role as an Associate Professor. His global experience includes collaborations with institutions in South Africa, Botswana, and Estonia. He has also worked on industry-related projects, including corrosion and wear assessment for Debswana, equipment integrity evaluation for Botswana Oil Limited, and coin contamination studies for the South African Mint. Beyond academia, he actively engages in mentorship programs, student associations, and engineering outreach initiatives.

AWARDS & HONORS

  • Extensive Research Output – With a significant number of journal articles, research collaborations, and industrial projects, Dr. Ogunmuyiwa has a strong research portfolio.
  • Citations & Impact – Google Scholar (1353 citations, h-index 13), ResearchGate (1146 citations, h-index 11), Scopus (899 citations, h-index 10), and Web of Science (716 citations, h-index 10) demonstrate the influence and reach of his work.
  • Multidisciplinary Specialization – His expertise spans materials science, metallurgy, tribology, advanced manufacturing, biomaterials, and sustainable engineering, making him a well-rounded researcher.
  • Industry and Academic Collaboration – His involvement with Debswana, Botswana Oil Limited, and other industrial projects highlights real-world applications of his research.
  • Research Funding Success – He has secured significant funding from international organizations, demonstrating his ability to lead impactful projects.
  • Recognition & Awards – Numerous academic excellence awards, best paper awards, and scholarships highlight his outstanding contributions to research.
  • Mentorship & Community Engagement – He has served as a mentor and advisor to students and professional organizations, contributing to academic growth.

RESEARCH FOCUS

His research interests encompass materials science, extractive and physical metallurgy, tribology, polymer and composite materials, and sustainable engineering. He has pioneered studies on corrosion-resistant materials, green corrosion inhibitors, rare earth extraction, and biomaterials for medical applications. His work has received numerous accolades, including Best Paper Awards, Academic Excellence Awards, and research grants from prestigious institutions such as the Royal Academy of Science and the National Research Foundation.

PUBLICATION TOP NOTES

  1. M.Y. Abdul Salam, E.N. Ogunmuyiwa, V.K. Manisa, A. Yahya, I.A. Badruddin (2025). Effect of fabrication techniques of high entropy alloys: A review with integration of machine learning. Results in Engineering.

  2. L.K. Ncube, A.U. Ude, E.N. Ogunmuyiwa, I.N. Beas (2024). Characterisation of Bambara groundnut (Vigna subterranea (L.) Verdc.) shell waste as a potential biomass for different bio-based products. Environmental Monitoring and Assessment.

  3. N. Ntholeng, N.P. Mphasha, I.M.C. Bopape, E.N. Ogunmuyiwa, M.B. Shongwe (2023). Tribological Behavior of Annealed Ni-xFe-yCo Alloys: Effect of Co and Fe Additions. Journal of Tribology.

This format follows standard academic citation styles, ensuring clarity and professionalism. Let me know if you need a different citation style (APA, IEEE, etc.). 📚✨

CONCLUSION

Dr. Ogunmuyiwa is a highly qualified and competitive candidate for the Best Researcher Award, with a strong academic, industrial, and mentorship record. Addressing the above areas for improvement could further solidify his position as a top contender in future awards.

Qingliang Feng | Low dimensional materials | Best Researcher Award

Prof Qingliang Feng | Low dimensional materials | Best Researcher Award

Professor, Northwestern Polytechnical University, China

Qingliang Feng is a prominent researcher at Northwestern Polytechnical University in Xi’an, China. With a strong focus on materials science and optoelectronics, he has significantly contributed to the understanding and development of advanced semiconductor materials. His work is characterized by innovative approaches to enhancing the performance of electronic devices and energy storage solutions. Feng has published extensively, with over 70 articles and a citation count exceeding 5,900, showcasing his influence in the field. His research not only addresses fundamental scientific questions but also has practical implications for the development of next-generation electronic and optoelectronic devices.

Profile

Google Scholar

Scopus

Strengths for the Award

Qingliang Feng is an exceptional candidate for the Research for Best Researcher Award due to his substantial contributions to the field of materials science, particularly in the development of advanced semiconductor materials and optoelectronic devices. With an h-index of 35 and over 5,958 citations across 77 publications, his work demonstrates significant impact and recognition within the scientific community. Feng’s research has led to innovations in energy storage systems, photodetectors, and flexible electronics, reflecting both depth and breadth in his expertise. His ability to lead collaborative projects and mentor emerging researchers further enhances his qualifications for this award.

Areas for Improvement

While Dr. Feng has established a solid reputation in his field, there are areas for potential growth. Expanding his focus to include interdisciplinary collaborations could enhance the applicability of his research outcomes. Additionally, increasing public engagement and communication of his work to broader audiences could elevate his profile and impact beyond academia. Fostering partnerships with industry could also lead to practical applications of his research, aligning with the growing emphasis on translating scientific discoveries into real-world solutions.

Education

Qingliang Feng completed his undergraduate studies in Physics at a prestigious university in China, where he developed a solid foundation in material science. He then pursued his Master’s degree in Materials Science and Engineering, focusing on semiconductor materials. Following this, he obtained his Ph.D. in Materials Science, specializing in nanostructured materials and their applications in electronic devices. His educational background has provided him with the theoretical knowledge and practical skills necessary to excel in research and development in the rapidly evolving field of materials science.

Experience

Dr. Feng has extensive experience in both academia and research institutions. He began his career as a postdoctoral researcher, where he worked on various projects related to semiconductor fabrication and characterization. His role involved collaborating with multidisciplinary teams to explore innovative solutions for improving device performance. At Northwestern Polytechnical University, he has taken on various responsibilities, including supervising graduate students and leading research projects. His experience encompasses a range of topics, from nanomaterials to optoelectronic devices, and he has played a key role in establishing partnerships with industry stakeholders.

Awards and Honors

Dr. Feng has received several prestigious awards in recognition of his contributions to materials science and engineering. He was honored with the Outstanding Researcher Award at Northwestern Polytechnical University, which acknowledges his significant impact on the field. Additionally, he has been recognized for his innovative research with the National Science and Technology Progress Award in China. His work has not only advanced scientific knowledge but has also contributed to practical applications, earning him accolades from both academic and industrial sectors.

Research Focus

Qingliang Feng’s research focuses on the development and characterization of advanced semiconductor materials for electronic and optoelectronic applications. His interests include two-dimensional materials, organic-inorganic hybrids, and their applications in photodetectors, energy storage devices, and flexible electronics. He is particularly focused on improving device efficiency and performance through novel material synthesis and processing techniques. Feng’s work aims to bridge the gap between fundamental science and practical technology, contributing to the advancement of sustainable energy solutions and next-generation electronic devices.

Publication Top Notes

  1. All-Covalent Organic Framework Nanofilms Assembled Lithium-Ion Capacitor to Solve the Imbalanced Charge Storage Kinetics 🔋
  2. Solution-Processable Large-Area Black Phosphorus/Reduced Graphene Oxide Schottky Junction for High-Temperature Broadband Photodetectors 🌡️
  3. Two-Dimensional Optoelectronic Memristive Device Realized by Ferroelectric Regulation 💡
  4. Modulating the Electronic Structure of VS2 via Ru Decoration for an Efficient pH-Universal Electrocatalytic Hydrogen Evolution Reaction 🔧
  5. Controlled Growth of Single-Crystalline 2D p-Type Semiconductor α-MnSe for Broadband Photodetector 📷
  6. Composition-Triggered Growth of Monolayer MoTe2(1−x)S2x Alloys with Coherent Phase Interfaces for High-Performance Broadband Photodetection 🔬
  7. High-Responsivity Self-Powered Deep-Ultraviolet Photodetector Based on n-SnS2/p-GaN Heterostructures 🔦
  8. Resolidified Chalcogen-Assisted Growth of Bilayer Semiconductors with Controlled Stacking Orders 📈
  9. Solution-Processed Black Phosphorus Film-Based Volatile Memristor for Encryption Applications 🔒
  10. Bending Resistance Covalent Organic Framework Superlattice: “Nano-Hourglass”-Induced Charge Accumulation for Flexible In-Plane Micro-Supercapacitors 📏

Conclusion

In conclusion, Qingliang Feng’s exemplary research contributions, coupled with his potential for growth in outreach and interdisciplinary collaboration, position him as a strong contender for the Research for Best Researcher Award. His continued commitment to advancing materials science and promoting innovative applications holds promise for significant future contributions to both academic and practical domains. Recognizing his efforts with this award would not only honor his achievements but also encourage further excellence in research within his field.

Liu Jun – Fundamental research – Excellence in Research

Liu Jun - Fundamental research - Excellence in Research

Chongqing Medical University - China

NOTABLE PUBLICATION

SCOPUS

🎓 EDUCATION BACKGROUND

Liu Jun received a bachelor's degree from Southwest Medical University in 2016 and later earned a master's degree from Chongqing Medical University in 2024. Specializing in integrated Chinese and Western medicine, Liu Jun is an attending doctor in Internal Medicine, with a particular focus on the prevention and treatment of chronic kidney disease. His academic journey has provided a strong foundation in both traditional Chinese medicine and modern medical practices, allowing him to approach complex health issues with a holistic perspective.

🩺 RESEARCH INTERESTS

Liu Jun’s research is centered on the integration of Chinese and Western medicine for the prevention and treatment of chronic kidney disease (CKD). His work explores the therapeutic potential of combining traditional herbal remedies, such as Astragaloside IV, with modern medical techniques. By focusing on the synergistic effects of these two medical traditions, he aims to develop more effective treatments for CKD, particularly in the context of complex conditions like diabetic kidney disease (DKD).

🔬 KEY STUDY ON ASTRAGALOSIDE IV

Liu Jun has conducted groundbreaking research on Astragaloside IV (AS-IV), a bioactive compound from the Astragalus membranaceus root, used in Chinese medicine to treat CKD. His study revealed that AS-IV plays a significant role in the treatment of diabetic kidney disease by mitigating oxidative stress, ferroptosis, and mitochondrial dysfunction in renal tubular epithelial cells. This research provides new insights into the renoprotective mechanisms of AS-IV and highlights its potential for clinical application in DKD management.

🧬 RESEARCH METHODS AND FINDINGS

In his study, Liu Jun employed advanced research techniques, including network pharmacology, proteomics, molecular docking, and molecular dynamics simulation, to uncover the molecular mechanisms by which AS-IV exerts its protective effects. His findings demonstrated that AS-IV enhances renal function, reduces oxidative stress, and prevents mitochondrial damage in DKD models. The study also identified key proteins—HMOX1, FTH1, and TFR1—that interact with AS-IV, further supporting its role in combating mitochondrial dysfunction and ferroptosis in DKD.

📚 PUBLICATIONS

Liu Jun has published four SCI papers, each contributing to the understanding of integrated Chinese and Western medicine in the treatment of chronic kidney disease. His work on AS-IV and its effects on DKD has been particularly impactful, offering new avenues for the development of renoprotective therapies. His publications reflect a commitment to advancing the field of nephrology through innovative research that bridges traditional and modern medical practices.

🏅 CONTRIBUTIONS TO INTEGRATED MEDICINE

Through his research, Liu Jun is making significant contributions to the field of integrated Chinese and Western medicine. His work not only advances the scientific understanding of traditional herbal compounds like AS-IV but also paves the way for their integration into modern medical treatments. His research has the potential to improve patient outcomes by providing more comprehensive and effective therapies for chronic kidney disease, particularly in the context of diabetes.

🌟 PROFESSIONAL GOALS

Looking ahead, Liu Jun aims to continue his research in integrated medicine, focusing on the development of new strategies for the treatment of chronic kidney disease. His goal is to further explore the potential of traditional Chinese medicine in combination with Western medical approaches, ultimately contributing to the creation of more holistic and effective treatment options for patients with complex medical conditions like DKD.

NOTABLE PUBLICATION

A New Strategy for Astragaloside IV in the Treatment of Diabetic Kidney Disease: Analyzing the Regulation of Ferroptosis and Mitochondrial Function of Renal Tubular Epithelial Cells
Authors: Liu, J., Yang, K., Zhou, L., Zhang, Y., Cao, W.
Year: 2024
Journal: International Immunopharmacology

Proteomic and Lipidomic Analysis of the Mechanism Underlying Astragaloside IV in Mitigating Ferroptosis Through Hypoxia-Inducible Factor 1α/Heme Oxygenase 1 Pathway in Renal Tubular Epithelial Cells in Diabetic Kidney Disease
Authors: Liu, J., Ren, J., Zhou, L., Cao, W., Zhang, Y.
Year: 2024
Journal: Journal of Ethnopharmacology

Integration of Network Pharmacology and Serum Medicinal Chemistry to Investigate the Pharmacological Mechanisms of QiZhuYangGan Decoction in the Treatment of Hepatic Fibrosis
Authors: Deng, J.-W., Yuan, S., Shi, L.-P., Yang, Q., Cao, W.-F.
Year: 2024
Journal: Journal of Ethnopharmacology