Mithun Chowdhury
Primeasia University, Mushuddi Engineering & Technology Institute, Begum Rokeya University, Rangpur
About
Mithun earned his undergraduate degree from Begum Rokeya University Rangpur (BRUR), specializing in Electrical and Electronic Engineering. He currently holds the position of Lab Instructor in the Department of Electrical and Electronic Engineering (EEE) at PrimeAsia University, Dhaka, beginning in November 2025. Prior to this role, he served as an Instructor in the Department of Electrical Engineering at Mushuddi Engineering and Technology Institute (METI). In his current position, he is committed to shaping the minds of aspiring engineers and advancing the academic and intellectual development of students in the discipline. During his undergraduate studies, his thesis focused on enhancing the power-conversion efficiency of CIGS-based solar cells through an optimized back surface field. Since joining METI as an Instructor in 2023, his focus has shifted to the field of materials science. At present, his research centers on optoelectronics, including the modeling and simulation of thin-film solar cells, perovskite-based tandem solar cells, and density functional theory (DFT).
Employment
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Primeasia University Instructor2025 - Present
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Mushuddi Engineering & Technology Institute Instructor2023 - 2025
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Begum Rokeya University, Rangpur Research Assistant2022 - 2023
Education
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Begum Rokeya University, Rangpur BSc. Engineering
Projects & Funding
Projects & funding information is unavailable.
Publications (8)
- Efficiency improvement of CsSnI3 based heterojunction solar cells with P3HT HTL: A numerical simulation approach Save
- Enhancement of efficiency in CsSnI3 based perovskite solar cell by numerical modeling of graphene oxide as HTL and ZnMgO as ETL Save
- Improving the efficiency of a CIGS solar cell to above 31% with Sb2S3 as a new BSF: a numerical simulation approach by SCAPS-1D Save
- Reply to the ‘Comment on “Improving the efficiency of a CIGS solar cell to above 31% with Sb2S3 as a new BSF: a numerical simulation approach by SCAPS-1D”’ by A. Kirk, RSC Adv., 2024, https://doi.org/10.1039/D4RA03002H Save
- A qualitative Design and optimization of CIGS-based Solar Cells with Sn2S3 Back Surface Field: A plan for achieving 21.83 % efficiency Save
- Lead-free novel perovskite Ba3AsI3: First-principles insights into its electrical, optical, and mechanical properties Save
- Unraveling the strain-induced and spin–orbit coupling effect of novel inorganic halide perovskites of Ca3AsI3 using DFT Save
- Novel Double graded perovskite materials for Performance increment of perovskite solar cell using extensive numerical analysis Save