Afsaneh Ghahari | Computational in Physical Chemistry | Best Researcher Award

Dr. Afsaneh Ghahari | Computational in Physical Chemistry | Best Researcher Award

Departemant of chemistry at University of birjand, Iran

Afsaneh Ghahari is a dedicated researcher in the field of chemistry, specializing in nanostructured materials. She is deeply involved in exploring advanced methodologies to enhance drug delivery systems, water desalination processes, and energy storage applications. With over four years of research experience, she has contributed significantly to the study of molecular dynamic simulations and free energy calculations. Her work focuses on developing innovative materials that address critical challenges in environmental and medical sciences.

Profile

Scholar

EDUCATION

Afsaneh Ghahari earned her Master of Science degree in Physical Chemistry from Ardakan University, Yazd, in 2017. She later pursued a Doctor of Philosophy at the University of Birjand, where she focused on nanostructured materials and their applications. Her academic journey has been driven by a passion for chemistry and materials science, leading to significant contributions in her field.

EXPERIENCE

With extensive research experience, Afsaneh has served as a laboratory expert at the Food and Drug Administration at Tehran University of Medical Sciences for two years. She also gained industrial experience by working in the polyethylene pipe production sector for one year. Additionally, she has been actively engaged in academia, teaching at Birjand University and Medical Sciences for four years. Her expertise in molecular simulations and nanomaterial design has been instrumental in advancing scientific knowledge.

RESEARCH INTEREST

Her research interests include nanostructured materials for drug delivery, water desalination, energy storage, membrane simulation, free energy calculations, and molecular dynamics simulations. She focuses on designing covalent organic frameworks (COFs) to enhance material performance in environmental and medical applications. Her work contributes to the sustainable development of advanced materials for various scientific and industrial applications.

AWARD

Afsaneh Ghahari has been recognized as an exemplary PhD researcher at Birjand University in 1403 (Iranian calendar) and was honored as an outstanding researcher in South Khorasan Province in the same year. These accolades highlight her significant contributions to scientific research and innovation in chemistry and materials science.

PUBLICATION

Design of a New Drug Delivery Platform Based on Surface Functionalization of 2D Covalent Organic Frameworks – Published in Elsevier, 2021.

Proposing Two-Dimensional Covalent Organic Frameworks for the Capture of Phenol Molecules from Wastewaters – Published in Nature, 2022.

Architectural Design of Anode Materials for Superior Alkali-Ion (Li/Na/K) Batteries Storage – Published in Nature, 2024.

The Strategy of Three-Dimensional Covalent Organic Frameworks to Exclude Dye Contaminants in Aqueous Solutions – Published in Nature, 2024.

Architectural Design of 2D Covalent Organic Frameworks (COFs) for Pharmaceutical Pollutant Removal – Published in npj Clean Water, 2024.

Ionic Liquids and Graphene: The Ultimate Combination for High-Performance Supercapacitors – Published in Journal of Molecular Liquids, 2024.

Selective Detection of Food Contaminants Using Engineered Gallium-Organic Frameworks with MD and Metadynamics Simulations – Published in Scientific Reports, 2024.

CONCLUSION

Afsaneh Ghahari’s outstanding contributions to nanomaterials research, environmental chemistry, and energy storage make her a strong candidate for the Best Researcher Award. Her extensive research, academic leadership, and industry experience position her as a key innovator in the field of sustainable chemistry and nanomaterials.

Yang Liu – molecular dynamics – Best Researcher Award

Yang Liu - molecular dynamics - Best Researcher Award

Sichuan university - China

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Yang Liu's academic journey commenced at the University of Electronic Science and Technology of China (UESTC), where he earned his Bachelor's and Master's degrees in Mechanical and Electronic Engineering, respectively. He furthered his education with specialized training programs at Tsinghua University and continued to excel in molecular dynamics.

PROFESSIONAL ENDEAVORS

Yang Liu has undertaken significant roles in prestigious institutions worldwide. From his Ph.D. at the University of Groningen under the guidance of Prof. Dr. Siewert J. Marrink to his postdoctoral fellowships at the Chinese University of Hong Kong and the University of Groningen, he has consistently pursued excellence in molecular dynamics research.

CONTRIBUTIONS AND RESEARCH FOCUS

Yang Liu's research focuses on the development and application of molecular dynamics simulations in various fields, including biological liquid-liquid phase separation, drug carrier systems, and anti-cancer drug development. His representative publications demonstrate his expertise in capturing complex phenomena at the molecular level.

IMPACT AND INFLUENCE

As evidenced by his extensive publication record and conference presentations, Yang Liu has made a significant impact on the field of molecular dynamics. His research contributions have advanced our understanding of fundamental biological processes and have the potential to inform the development of novel therapeutics and materials.

ACADEMIC CITES

Yang Liu's publications have garnered considerable attention within the scientific community, with several articles featured on journal covers and cited extensively. His work at the intersection of molecular dynamics and biophysics has earned recognition for its innovation and relevance to addressing critical research questions.

LEGACY AND FUTURE CONTRIBUTIONS

Yang Liu's legacy in the field of molecular dynamics is characterized by his dedication to pushing the boundaries of simulation techniques and their applications. As he continues to explore new frontiers in molecular dynamics research, his contributions will undoubtedly shape the future of biophysics and materials science.

NOTABLE PUBLICATION

Hot-press melt-assembly anisotropic porous structure with enhanced radiative cooling 2024

Unraveling the influence of aromatic endcaps in peptide self-assembly 2024

Polymersomes in Drug Delivery─From Experiment to Computational Modeling 2024 (4)