Asrafusjaman | Advanced Material | Best Researcher Award
Mr. Md Asrafusjaman, City University, Bangladesh.
Md Ashrafuzzaman is a dedicated physics academic and researcher specializing in Density Functional Theory (DFT) and material characterization. As an Assistant Professor at City University, Dhaka, he focuses on semiconductors, superconductors, and solar cell fabrication, exploring their mechanical, optical, and thermodynamic properties. With extensive teaching experience, he has mentored students, conducted computational simulations, and contributed to peer-reviewed research. His expertise spans advanced materials and theoretical modeling, and he actively engages in curriculum development, workshops, and science outreach programs. Passionate about innovation, he remains committed to advancing physics knowledge and inspiring future scientists.ย 


Publication Profiles
Orcid
Education & Experienceย 

ย Education:
ย Master of Philosophy (MPhil) in Physicsย โ Bangladesh University of Engineering and Technology (BUET) (2017โ2023)
ย M.Sc. in Physicsย โ Jagannath University, Dhaka (2012โ2013)
ย B.Sc. (Hons) in Physicsย โ Jagannath University, Dhaka (2009โ2012)
ย Work Experience:
ย Assistant Professor (Physics)ย โ City University, Dhaka (2017โPresent)
ย Adjunct Facultyย โ University of Information Technology & Sciences (UITS), Dhaka (2023)
ย Research Assistantย โ Bangladesh University of Engineering and Technology (BUET) (2022โ2023)
Summary Suitability
Dr. Md Asrafuzzaman is a distinguished researcher and academic in condensed matter physics, specializing in density functional theory (DFT) and material characterization. His groundbreaking work on semiconductors, superconductors, and solar cell fabrication has significantly advanced the understanding of material properties. His recent research, “A Comprehensive DFT Study of the Physical and Superconducting Properties of Chiral Noncentrosymmetric TaRhโBโ and NbRhโBโ,” has provided valuable insights into the pressure-dependent superconducting mechanisms of these materials. His contributions to theoretical modeling and computational physics, alongside his commitment to academic mentorship, make him a deserving recipient of the Best Researcher Award.
Professional Developmentย 

Md Ashrafuzzaman has actively engaged in professional development through research, teaching, and scientific collaboration. His expertise in DFT-based computational simulations has led to valuable insights into semiconductors and superconductors. He has developed and refined curricula, participated in academic committees, and mentored students in research projects. Additionally, he has led workshops, seminars, and outreach programs to enhance physics education. With proficiency in various computational and analytical tools, he continuously integrates innovative methodologies into his research and teaching. Passionate about fostering scientific knowledge, he remains committed to advancing physics and contributing to the academic community.ย 


Research Focus
Md Ashrafuzzamanโs research is centered on advanced materials, with a particular focus on semiconductors, superconductors, and solar cell fabrication. His work explores the mechanical, optical, and thermodynamic properties of materials using Density Functional Theory (DFT) and computational simulations. He has contributed to the study of chiral noncentrosymmetric compounds, analyzing their superconducting behavior under varying pressure conditions. Additionally, he investigates organic-inorganic perovskites and novel materials for energy applications. His interdisciplinary research integrates theoretical physics with experimental validation, bridging gaps between computational modeling and practical applications in modern technology.ย 















ย Bachelorโs Degreeย โ Mechanical Engineering & Automation, Changchun University


ย 2021-2023ย โ โExcellent Postdoctoral’ honor, Hefei Institutes of Physical Science, Chinese Academy of Sciences
ย 2020ย โ โExcellent PhD Graduateโ honor, University of Science and Technology of China (USTC)
ย Enhanced electrochemical characteristics of MnO anode induced cobalt dopant for Li-ion batteriesย (2025) โย 0 citationsย 
ย Ca/Li Synergetic-Doped Na0.67Ni0.33Mn0.67O2 to Realize P2-O2 Phase Transition Suppression for High-Performance Sodium-Ion Batteriesย (2024) โย 0 citationsย
ย Amino Group-Aided Efficient Regeneration Targeting Structural Defects and Inactive FePO4 Phase for Degraded LiFePO4 Cathodesย (2024) โย 0 citationsย 
ย Regulation of Sulfur Atoms in MoSx by Magneto-Electrodeposition for Hydrogen Evolution Reactionย (2024) โย 1 citationย
ย Two Birds with One Stone: V4C3 MXene Synergistically Promoted VS2 Cathode and Zinc Anode for High-Performance Aqueous Zinc-Ion Batteriesย (2024) โย 11 citationsย
ย Recent progress in critical electrode and electrolyte materials for flexible zinc-ion batteriesย (2024) โย 1 citationย
ย Surface Modification Driven Initial Coulombic Efficiency and Rate Performance Enhancement of Li1.2Mn0.54Ni0.13Co0.13O2 Cathodeย (2024) โย 1 citationย
ย Mo2N/CoN nanotube with synergistic reaction of intercalation and conversion enables high-performance lithium-ion batteriesย (2023) โย 1 citationย
ย Carbon Foam-Supported VS2 Cathode for High-Performance Flexible Self-Healing Quasi-Solid-State Zinc-Ion Batteriesย (2023) โย 17 citationsย 
ย Magneto-electrochemistry driven ultralong-life Zn-VS2 aqueous zinc-ion batteriesย (2023) โย 12 citationsย 


ย for predictive maintenance. His work onย carbon fiber reinforcementย
ย aims atย sustainable infrastructureย
ย andย concrete deterioration analysisย
, his research contributes to safer, longer-lasting structures in civil engineering.















ย Parami attended workshops on current trends in photo-electrochemical and photovoltaic materials, gaining insights into advanced methodologies. Her involvement in sustainability leadership initiatives and science exhibitions further highlights her commitment to scientific advancement and community outreach.ย