Assist. Prof. Dr. Lilan Zhang | Molecular Physics | Best Researcher Award 

Assist. Prof. Dr. Lilan Zhang | Molecular Physics | Best Researcher Award 

Assist. Prof. Dr. Lilan Zhang | Institute of Tropical Bioscience and Biotechnology, Sanya Research Institute, Chinese Academy of Tropical Agricultural Sciences | China

Dr. Zhang Lilan is an Assistant Professor at the Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences. Her research primarily focuses on animal genetics, breeding, and the molecular mechanisms regulating adipose tissue development, fat deposition, and thermogenesis in pigs. She has made notable contributions to understanding the function of beige adipocytes and the genetic regulation of lipid metabolism. Dr. Zhang utilizes molecular biology, bioinformatics, and gene-editing approaches to uncover key regulators of adipogenesis and energy metabolism. Her work explores the adipose-liver-gut axis and its role in fat deposition and metabolic regulation. She has published extensively in high-impact journals including Cells, Protein & Cell, International Journal of Molecular Sciences, and Animal Feed Science and Technology. Dr. Zhang has also co-invented several patents related to regulating lipid metabolism, cold resistance, and ferroptosis in livestock. Her research has advanced insights into gene–environment interactions in animal physiology. She has been recognized with national awards for outstanding research presentations and contributions to animal genetics. Dr. Zhang has successfully led competitive research projects funded by the NSFC and other national programs. Her studies provide a strong foundation for improving meat quality and animal welfare. She is committed to translating molecular discoveries into practical applications in livestock breeding. Her interdisciplinary approach combines genetics, nutrition, and biotechnology. Dr. Zhang’s work strengthens the understanding of molecular regulators of fat deposition in pigs. She continues to contribute to innovations in animal biotechnology. Her research impact is recognized nationally and internationally in the field of animal science.

Profile: Scopus 

Featured Publications

Zhang, L., Hu, S., Cao, C., Chen, C., Liu, J., Wang, Y., Liu, J., Zhao, J., Tao, C., & Wang, Y. (2022). Functional and genetic characterization of porcine beige adipocytes. Cells, 11(751), 1–15.

Liu, J., Jiang, Y., Chen, C., Zhang, L., Wang, J., Yang, C., Wu, T., Yang, S., Tao, C., & Wang, Y. (2024). Bone morphogenetic protein 2 enhances porcine beige adipogenesis via AKT/mTOR and MAPK signaling pathways. International Journal of Molecular Sciences, 25(7), 3915.

Pan, J., Chui, L., Liu, T., Zheng, Q., Liu, X., Liu, L., Zhao, Y., Zhang, L., Song, M., Han, J., Huang, J., Tang, C., Tao, C., Zhao, J., & Wang, Y. (2023). Fecal microbiota was reshaped in ucp1 knock-in pigs via the adipose-liver-gut axis and contributed to less fat deposition. Microbiology Spectrum, 11(1), e03540-22.

Zhong, R., Gao, L., Zhang, L., Huang, Q., Chen, L., & Zhang, H. (2021). Effects of optimal carbohydrases cocktails screened using an in vitro method on nutrient and energy digestibility of different fiber source diets fed to growing pigs. Animal Feed Science and Technology, 271, 114728.

Liang, X., Tao, C., Pan, J., Zhang, L., Liu, L., Zhao, Y., Fan, Y., Cao, C., Liu, J., Zhang, J., Lam, S. M., Shui, G., Jin, W., Li, W., Zhao, J., Li, L., & Wang, Y. (2020). Rnf20 deficiency in adipocyte impairs adipose tissue development and thermogenesis. Protein & Cell, 12(6), 475–492.

Masud Rana – Molecular Physics – Best Researcher Award 

Dr. Masud Rana - Molecular Physics - Best Researcher Award 

Chonnam National University - South Korea 

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Dr. Masud Rana began his academic journey with a passion for chemistry, completing a Bachelor of Science in Organic, Inorganic, and Physical Chemistry at the University of Rajshahi, Bangladesh, where he built a solid foundation in fundamental chemical principles. His pursuit of knowledge continued with a Master of Science in Organic Chemistry at the same institution, focusing on multicomponent reactions and organocatalysts, which prepared him for advanced research in the field. His early dedication to academic excellence was evident in his consistent performance and achievements during these formative years.

💼 Professional Endeavors

Dr. Rana’s professional career is marked by significant milestones in academia and research. As a Research Fellow at Rajshahi University (2014–2016), he explored multicomponent reactions using chiral organocatalysts, showcasing his skills in synthetic chemistry and innovative problem-solving. He then moved to Chonnam National University, South Korea, where he pursued a PhD in Engineering (2017–2021). His doctoral research on hydrothermal depolymerization of lignin into bio-fuels and aromatic chemicals was supported by prestigious grants from the National Research Foundation of Korea (NRF). Currently, as a Postdoctoral Fellow at the same institution, Dr. Rana is advancing his work on upgrading biomass-derived raw bio-oil into high-quality transport fuels.

🔬 Contributions and Research Focus

Dr. Rana's research contributions span a broad spectrum of chemistry, including molecular physics, lignin chemistry, organometallic catalysts, and biomass valorization. His innovative approaches to hydrothermal liquefaction and ionic liquids have paved the way for sustainable energy solutions. He has also made significant strides in recycling valuable metals from spent batteries, contributing to the circular economy. Dr. Rana’s expertise in combining homogeneous and heterogeneous catalysis, organic solvents, and bio-renewable resources demonstrates his dedication to addressing global environmental challenges.

🌍 Impact and Influence

Dr. Rana’s research has a profound impact on the fields of energy engineering and sustainable chemistry. His work on bio-fuels and lignin depolymerization is highly cited and has influenced ongoing studies in renewable energy and material recycling. By integrating molecular physics principles into his research, he has enhanced the understanding of complex reaction mechanisms, driving advancements in bio-oil upgrading technologies. His collaborative projects and multidisciplinary approach have positioned him as a thought leader in sustainable energy research.

🏆Academic Cites

The high citation rate of Dr. Rana’s publications reflects the academic community's recognition of his contributions to lignin chemistry and bio-fuels. His papers serve as foundational references for researchers exploring bio-renewable energy sources and the application of molecular physics in catalysis and reaction engineering. His innovative methodologies are frequently cited in studies focused on biomass valorization and sustainable energy solutions.

🌟 Legacy and Future Contributions

Dr. Rana’s legacy is defined by his pioneering research and commitment to advancing sustainable energy technologies. His ongoing postdoctoral work on upgrading biomass-derived bio-oil will further contribute to reducing carbon footprints and enhancing energy efficiency. He aspires to expand the application of molecular physics in renewable energy research, bridging the gap between theoretical understanding and practical implementation. Dr. Rana’s future contributions promise to leave a lasting impact on the fields of energy engineering and environmental sustainability.

📝Molecular Physics

Dr. Masud Rana's groundbreaking research integrates molecular physics into the study of lignin chemistry and biomass valorization, enhancing the efficiency of bio-fuel production. His innovative work in molecular physics drives advancements in sustainable energy and catalysis, with implications for global environmental challenges. Through his continued focus on molecular physics, Dr. Rana is shaping the future of renewable energy technologies.

Notable Publication


📝Depolymerization of Kraft Lignin Using a Metal Chloride-Based Deep Eutectic Solvent: Pathways to Sustainable Lignin Valorization

Authors: Ghosh, S., Rana, M., Park, J.-H.

Journal: Applied Sciences (Switzerland)

Year: 2024

Citations: 0


📝Catalyst-Free Depolymerization of Methanol-Fractionated Kraft Lignin to Aromatic Monomers in Supercritical Methanol

Authors: Ghosh, S., Rana, M., Park, J.-H.

Journal: Energies

Year: 2024

Citations: 0


📝Catalytic Depolymerization of Kraft Lignin to High Yield Alkylated-Phenols Over CoMo/SBA-15 Catalyst in Supercritical Ethanol

Authors: Rana, M., Ghosh, S., Nshizirungu, T., Park, J.-H.

Journal: RSC Advances

Year: 2023

Citations: 5


📝Highly Efficient Recyclable Bismuth Nanocatalysts Fabricated Using a Facile One-Step Aqueous Method for Faster Reduction of Azo Dye Contaminants

Authors: Rahman, M.A., Rahman, M.A., Rabbi, M.A., Jalil Miah, M.A., Ahmad, H.

Journal: RSC Advances

Year: 2024

Citations: 0


📝Ultrasound-Assisted Efficient and Convenient Method of Extracting Valuable Metals (Ni, Co, and Cd) from Waste Ni–Cd Batteries Using DL-Malic Acid

Authors: Hossain Khan, M.I., Rana, M., Jo, Y.-T., Park, J.-H.

Journal: Journal of Environmental Management

Year: 2024

Citations: 0


📝Ultrasound-Assisted Sustainable Recycling of Valuable Metals from Spent Li-Ion Batteries via Optimization Using Response Surface Methodology

Authors: Nshizirungu, T., Rana, M., Jo, Y.T., Kim, J., Park, J.-H.

Journal: Journal of Environmental Chemical Engineering

Year: 2024

Citations: 8