Bangladesh Army International University of Science and Technology

Cumilla, Bangladesh

BAIUST

Md. Gulam Mustafa

Lecturer (Physics)

mustafa.scnhum@baiust.ac.bd

Functional Materials Science and Engineering

  • Advanced Functional Materials
  • Multiferroic Composite Ceramics
  • Magnetoelectric Materials and Coupled Multiphysics Systems
  • Ferrite and Ferroelectric Oxide Materials
  • Condensed Matter Physics 
  • Thin Film Materials and Thin Film Physics

Electromagnetic Materials and Communication Systems

  • Advanced Electromagnetic Materials for Communication Applications
  • Microstrip Patch Antenna Design and Optimization
  • CST-Based Computational Electromagnetic Modeling and Optimization

Master of Science (M.Sc.) in Physics (Thesis)

Comilla University, Cumilla 3506

Session: 2019 – 2020

Bachelor of Science (B.Sc.) in Physics

Comilla University, Cumilla 3506

Session: 2015 – 2016

  • Lecturer (Physics) (October 2023 – Present)

Department of Science and Humanities, BAIUST.

  • Lecturer (Physics) (January 2023 – October 2023)

KC Model School and College, Dhaka 1230.

  • Assistant Project Director  (July 2022 – June 2023)

Department of Physics, Comilla University, Cumilla 3506.

Publications

  1. Md. Gulam Mustafa, Salma Akter, S. C. Mazumdar*, “Enhanced Multiferroic Properties of NZCFO-BNFSO Composites: Synthesis, Characterization, and Performance Analysis”Heliyon, Volume 10, Issue 15, e35260, August 2024.

    DOI: 10.1016/j.heliyon.2024.e35260

    Publisher: Elsevier, Q1 Journal, Impact Factor: 3.6, CiteScore: 7.8

  1. S. C. Mazumdar and Md. Gulam Mustafa*, “Enhancement of multiferroic and functional properties of (1-y)Bi0.7La0.3FeO3+yNi0.50Cu0.05Zn0.45Fe2O4 composite ceramics”, Ceramics International, Volume 52, Issue 13, Part A, May 2026, Pages 21540-21558.

    DOI: 10.1016/j.ceramint.2026.03.232

    Publisher: Elsevier, Q1 Journal, Impact Factor: 6.0, CiteScore: 9.1

  1. Tanvir Ahmed Fahim, Md. Abdullah-Al-Mamun, Joton Kumar Dea, Md. Gulam Mustafa*, “Machine learning-driven gain prediction of a high-performance dual-wideband decoupling-enhanced graphene MIMO antenna for THz applications”, Diamond and Related Materials, Volume 169, Part B, Article 114121, November 2026.

    DOI: 10.1016/j.diamond.2026.114121

    Publisher: Elsevier, Q1 Journal, Impact Factor: 5.2, CiteScore: 8.2