◪ Faculty Member, Department of Physics, University of Barishal
◪ Student Advisor, Department of Physics, University of Barishal
◪ Member, Sakura Science Club, Japan
Research Interests: Biophysics, Biomedical Physics, & Sensor Tech Expert
Contact: phy.asad.bu@gmail.com | 01704938370
Md. Asaduzzaman is dedicated to pioneering research in Biophysics and Biomedical Sensor Technologies, with a strong commitment to advancing health, sustainability, and innovation. He has received prestigious awards and fellowships in recognition of his academic excellence and contributions.
University of Barishal | 2020 - 2022
Achieved 1st Class (1st) in MS in Physics with a focus on advanced theoretical and experimental physics.
University of Barishal | 2015 - 2020
Graduated with a Bachelor of Science degree in Physics, specializing in modern physics and computational techniques.
Govt. B.L University College, Khulna | 2011 - 2013
Completed Higher Secondary Certificate (HSC) in the Science Group with a strong academic record.
Nakipur H.C Pilot Model High School | 2006 - 2011
Received Talentpool Scholarships in classes 5 and 8, excelling in the Science Group.
University of Barishal | 2024 - Present
Serving as the Student Advisor in the Department of Physics, guiding students in their academic journey.
University of Barishal | 2023 - Present
Appointed as a permanent lecturer, contributing to academic research and teaching undergraduate physics courses.
Unique StudyTube | 2020 - Present
Creating educational content to simplify physics concepts for students through engaging videos.
Advanced College, Barishal | 2020 - 2022
Taught physics to college students and mentored them in academic excellence.
Biophysics, Biomedical Physics, & Sensor Tech Expert
My work integrates these domains to deepen biological insight, enhance therapeutic strategies, and drive innovation in diagnostics and sensor technologies—advancing health, sustainability, and future-ready solutions.
See MoreMS Thesis: "Study of molecular transport through nano-sized multipores in the membrane of a giant unilamellar vesicle using COMSOL simulation".
📄 Md. Asaduzzaman, Apu Kumar Ghosh and Md. Khorshed Alam, "Adsorption of CO on Pt3, Pd3, Pd Doped Pt2 and Pt Doped Pd3 Clusters: A Density Functional Study," DAFFODIL INTERNATIONAL UNIVERSITY JOURNAL OF SCIENCE AND TECHNOLOGY, Volume 18, Issue 2, July 2023. ISSN 1818-5878 (Print), 2408-8498 (Online).
📄 Theoretical Study of Irreversible Electroporation of Tissue for Effective Intracellular Delivery of Biomacromolecules" This study delves into the mechanisms of irreversible electroporation (IRE) as a potential approach for intracellular delivery and cancer therapy. It provides insights into the transport kinetics of molecular probes and the role of pore creation in lipid membranes.
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📄 Exploring Molecular Transport in Single Nanopores: Impact of Probe Size Variation in Various-Sized Giant Unilamellar Vesicles (GUVs) Using COMSOL Simulation" This work focuses on the dynamics of molecular transport through nanopores in GUVs, contributing to our understanding of antimicrobial peptides and their mechanisms, with implications for drug design in cancer therapy.
"Investigation of molecular transport into the GUV through a single nanopore by varying the sizes of nanopores in the GUV membranes" – European Journal of Biophysics.
"Study of molecular transport through nano-sized multipores in the membrane of a giant unilamellar vesicle using COMSOL simulation" – Biophysical Journal.
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