معرفی
Md Mahmudul Hasan is currently serving as a Junior Researcher (Assistant Professor) at Waseda University's Research Organization for Nano & Life Innovation since May 2022. Previously, he worked as a Research Assistant at Waseda University in April 2022. He earned his Ph.D. in Materials Science from Japan Advanced Institute of Science and Technology between April 2019 and March 2022. He is also a member of The Surface Finishing Society of Japan since July 2022.
His research focuses on nanomaterials and electrochemical systems, with particular emphasis on nanometer-scale chemistry, material processing and microstructure control, energy chemistry, and nanomaterials. His work spans magnetic nanostructures, fuel cells, electroless deposition techniques, electrodeposition processes, and hierarchical metal nanostructures. His research has significant applications in energy storage, magnetic memory devices, and environmental remediation technologies.
Dr. Hasan's publication record shows a consistent output with 27 papers and 482 citations according to Google Scholar, with an h-index of 14. His research trajectory demonstrates a strong focus on developing novel nanomaterials for energy applications, particularly in fuel cells and magnetic storage devices. Recent work has expanded into proton-conducting electrolytes, metal nanostructures for electrocatalysis, and photocatalytic degradation of pollutants.
Scientific Awards:
- Director's Active Audience Award (2021.11, JAIST International Research Center for Silent Voice Sensing)
- Student's Selection Award (2021.11, JAIST International Research Center for Silent Voice Sensing)
- Best Student Paper Award (2021.10, NANOSYM 2021 Conference, Malaysia)
His research has attracted significant media attention, particularly for his work on 'Unique christmas-tree-shaped palladium nanostructures for ascorbic acid oxidation,' which was featured in multiple publications including Mirage, BIOENGINEER, AlphaGalileo, and EurekAlert in June 2021. Dr. Hasan is actively involved in multiple research projects, including 'Emulation of thermally assisted method for ultra-high recording density using surface-enhanced Raman optical device' funded by the Japan Society for the Promotion of Science.



