Assist. Prof. Dr. Xiancai Li | Natural Products Chemistry | Research Excellence Award

Assist. Prof. Dr. Xiancai Li | Natural Products Chemistry | Research Excellence Award

South China Botanical Garden, Chinese Academy of Sciences, China

Assist Prof. Dr. Xiancai Li is a dedicated pharmacological researcher recognized for his strong contributions to plant-based therapeutic discovery, particularly in the antimicrobial and uric-acid-lowering potential of natural products. With extensive experience in molecular biology and phytochemical research, he has developed deep expertise in transcriptomic and metabolomic analysis, enabling him to elucidate complex biochemical pathways and identify novel bioactive compounds. He earned his Bachelor of Science in plant protection, followed by a Ph.D. in science, where he focused on natural product pharmacology and plant-derived mechanisms of disease mitigation. His postdoctoral research at the Institute of Genetics and Developmental Biology further strengthened his proficiency in functional genomics and biological validation techniques, leading to several impactful publications in reputable scientific journals. Currently serving as a Research Associate at the South China Botanical Garden, Chinese Academy of Sciences, he continues to advance innovative pharmacological studies with an emphasis on plant resources for drug discovery. His research interests span antimicrobial resistance, metabolic regulation, phytotherapy, and natural product innovation. Throughout his career, he has been recognized with academic honors and research achievements that highlight his commitment to scientific excellence. Dr. Li remains dedicated to advancing evidence-based natural medicine and contributing to global health solutions.

Profile: Orcid

Featured Publications

Li, X., Yu, W., Yao, L., Liu, F., Li, Y., Xiong, B., Xie, J., & Qiu, S.-X. (2026). “Amelioration effects of Cajanus cajan extracts and the active ingredient pinostrobin on hyperuricemia and related kidney injury.” Food & Function.
https://doi.org/10.1039/D5FO01806D

Li, X., Chen, S., Wu, Y., Liu, F., Jumai, A., Zhu, B., Xiong, B., & Qiu, S.-X. (2026). “γ-mangostin from Garcinia mangostana (L.) exerts antifungal activity against Cryptococcus neoformans by inhibiting ribosome biogenesis.” Journal of Ethnopharmacology, March 2026. https://doi.org/10.1016/j.jep.2025.120986

Moganesh G | Plant Nanoparticles for Medicine | Outstanding Scientist Award

Dr. Moganesh G | Plant Nanoparticles for Medicine | Outstanding Scientist Award

Saveetha Engineering College | India

Dr. Moganesh G is a dedicated researcher and academician whose work spans physics, materials science, and nanotechnology, with a strong foundation built through advanced degrees including a Doctor of Philosophy in Physics from Sacred Heart College, Thiruvalluvar University. His research career began with contributions at DTR Research Foundation, followed by roles as Lecturer, Research Professor, Assistant Professor, and Director at various reputed institutions, and he currently serves as Research Faculty at Saveetha Engineering College. His expertise centers on nanomaterials synthesis, green synthesis approaches, photocatalysis, nuclear physics, solar cell device fabrication, and the development of energy-storage materials with emerging applications in anti-cancer and anti-diabetic studies. He has made notable scientific contributions, including the development of a Photon-Induced Method for material synthesis and innovative AC TIMER research highlighted in local media. Dr. Moganesh has been honoured with multiple recognitions, such as the Best Researcher Award at the 2nd International Research Awards on Science, Health and Engineering and the International Plant Scientist Award. Through his extensive teaching, research leadership, and continuous innovation, he remains committed to advancing sustainable materials and interdisciplinary solutions that address scientific and societal challenges.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Govindhan, M., Selvaraj, S., & Sukumar, K. (2025). Fluorometric detection of CIP and bioimaging employing a fluorescent nanoprobe with blue emission using carbon quantum dots from papaya seeds (Carica papaya). Journal of Environmental Chemical Engineering.

Govindhan, M. (2025). Green synthesis of structural and bandgap engineering nickel oxide nanostructure for visible light photocatalyst. Catalysis Letters.

Tamilarasu, S., & Govindhan, M. (2025). Phase stability and band-gap engineering of pure TiO₂ for visible light photocatalyst via photon-induced method. Journal of Sol-Gel Science and Technology.

Govindhan, M. (2025). Structural and optical engineering of MgO–ZnO nanocomposite via photon-induced method. Ceramics International.

Sasikumar, P., Chinnaiah, K., Kannan, K., Alqahtani, M. S., Abbas, M., Govindhan, M., & Gurushankar, K. (2024). Evaluating the antimicrobial and electrochemical performance of phenytoin nanoparticles from Catharanthus roseus plant. Chemical Physics Letters.

Selvam, P. P., Rathinam, V., Arunraj, A., Ali Baig, A. B., & Govindhan, M. (2023). Synthesis effect of Mg-doped ZnO nanoparticles for visible light photocatalysis. Ionics.

Nagaraj, G., Chinnaiah, K., Kannan, K., & Gurushankar, K. (2022). Nano-sized neem plant particles as an electrode for electrochemical storage applications. Ionics.