Members
SUSMAT Lab is home to a dedicated group of MSc, PhD, and postdoctoral researchers exploring the frontier of sustainable materials.
Assistant Professor
Ph.D., Nuclear Engineering,
The University of Tokyo, Japan.
M.Sc., Nuclear Engineering,
Grenoble Institute of Technology (Grenoble INP), France.
B.Sc., Mechanical Engineering,
Khulna University of Engineering & Technology, Bangladesh.
Nonlinear finite element analysis, composite materials
Fracture mechanics of additively manufactured polymers; mechanical anisotropy in FFF; bioinspired architected materials; structure-processing-property relationships in thermoplastics
Nonlinear finite element analysis, composite materials
Renewable energy systems analysis with a focus on techno-economic feasibility and data-driven performance modeling; techno-economic and environmental assessment of hydrogen-based steel decarbonization pathways in Saudi Arabia
Hydrogen production and utilization pathways, techno-economic analysis of emerging energy systems, life-cycle assessment for industrial decarbonization, materials performance and durability in environments
Hard carbon anodes for sodium-ion batteries: optimizing initial coulombic efficiency, reversible capacity, and cycling stability through pre- and post-treatment strategies
Hard carbonanodes, sodium-ion batteries, petroleum-derived carbon precursors, precursor engineering, pre-treatment & post-treatment optimization, microstructure tuning, defect engineering, porosity control, surface functionalization, solid electrolyte interphase stabilization, electrolyte compatibility, initial coulombic efficiency improvement, reversible capacity enhancement, long-term cycling stability
Physics-informed machine learning for structural health monitoring, damage detection, and remaining-life prediction of composite structures
Machine learning, deep learning, physics-informed neural network, structural health monitoring, composite materials
Upcycling low-value petrochemical by-products into high-value carbon materials (hard carbon, graphene, graphite) for next-generation sodium-ion battery applications, supporting net-zero goals
Energy storage materials, composite materials, finite element analysis, additive manufacturing
Synthesis of anode materials for energy storage, especially in sodium-ion batteries; several synthesis technologies, characterization, pre & post processing, techno-economic and life cycle analysis
Energy storage materials, sodium-ion batteries, materials characterization, process optimization of materials synthesis, hydrogen carriers & delivery, green hydrogen production using renewable sources, techno-economic analysis, life cycle analysis, composite materials, failure analysis of materials