Julia Shamshina | Biopolymers | Research Excellence Award

Dr. Julia Shamshina | Biopolymers | Research Excellence Award

Texas Tech | United States

Dr. Julia Shamshina is an accomplished chemist and academic leader specializing in sustainable chemistry and biopolymeric materials. She earned her B.S. and M.S. in Chemical Engineering from D. Mendeleev University of Chemical Technology of Russia and completed her Ph.D. in Organic Chemistry at The University of Alabama. Her professional career spans industrial research, national laboratories, startups, and academia, including roles as Research Chemist, Research Scientist, Postdoctoral Fellow, Senior Research Scientist, and multiple Chief Scientific Officer appointments in technology-driven companies. Dr. Shamshina has held academic positions at McGill University and Texas Tech University, where she is currently an Assistant Professor at the Fiber and Biopolymer Research Institute with a joint appointment in Chemistry and Biochemistry. Her research focuses on biopolymers, chitin, functional biopolymeric materials, ionic liquids, biotechnology, and advanced separation technologies, with strong emphasis on green chemistry and sustainable processes. She has received numerous honors, including a NASA Tech Brief Award, a Green Chemistry Challenge Award, and multiple innovation and accelerator awards. Overall, Dr. Shamshina’s career reflects impactful contributions at the intersection of chemistry, sustainability, and translational research.

View ORCID Profile

Featured Publications

Dr. Mohammad Barati | Modeling | Best Researcher Award

Dr. Mohammad Barati | Modeling | Best Researcher Award

University of Kashan | Iran

Dr. Mohammad Barati is an accomplished researcher and assistant professor in applied chemistry at the University of Kashan. He earned his Ph.D. in Applied Chemistry from the University of Tehran, following an M.Sc. and B.Sc. in Applied Chemistry from the University of Tabriz. Dr. Barati has extensive research experience in renewable energy and nanotechnology, focusing on the conversion of microalgae into biodiesel and bio-jet fuel using supercritical media, simultaneous bio-diesel and hydrogen production, and the development of polymer nanocomposites for drug delivery and bio-applications. His work also encompasses the synthesis and performance evaluation of magnetic polymer nanocomposites and their use as scaffolds in cell culture. Recognized for his excellence in teaching, he has been ranked first in annual faculty teaching evaluations at the University of Kashan and has received awards including the provincial first prize for university startups and the second-rank award at the Sabzkooh National Technology Festival. Dr. Barati’s research contributes significantly to sustainable energy, biofuel production, and advanced polymer materials, reflecting his dedication to both scientific innovation and academic excellence.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Fanaee, G., Barati, M., & Bashiri, H. (2026). “Process optimization, kinetics, thermodynamics and kinetic Monte Carlo modeling of catalyzed biodiesel production in supercritical medium” in Renewable Energy.

Aghilinategh, M., Barati, M., & Hamadanian, M. (2024). “Supercritical microalgae conversion to biofuel and value‐added components (oxygenates, hydrocarbons, and aromatics): A catalyst characterization study” in Environmental Progress & Sustainable Energy.

Alirezaei Alavije, A., Barati, F., Barati, M., Nazari, H., & Karimi, I. (2021). “Polyethersulfone/MWCNT nanocomposite scaffold for endometrial cell culture: preparation, characterization, and in vitro investigation” in Biomedical Physics & Engineering Express.

Barati, M. (2019). “Nanobiocatalytic processes for producing biodiesel from algae” in Sustainable Bioenergy (Book chapter).

Alirezaie Alavijeh, A., Barati, M., Barati, M., & Abbasi Dehkordi, H. (2019). “The potential of magnetic nanoparticles for diagnosis and treatment of cancer based on body magnetic field and organ-on-the-chip” in Advanced Pharmaceutical Bulletin.

Mirzaie, Z., Reisi-Vanani, A., & Barati, M. (2019). “Polyvinyl alcohol-sodium alginate blend, composited with 3D-graphene oxide as a controlled release system for curcumin” in Journal of Drug Delivery Science and Technology.