Követés
Tariqul islam Asif
Tariqul islam Asif
University of New Mexico, Graduate Student, Optical Science and Engineering
E-mail megerősítve itt: unm.edu
Cím
Hivatkozott rá
Hivatkozott rá
Év
Ultra-violet to visible band gap engineering of cubic halide KCaCl 3 perovskite under pressure for optoelectronic applications: insights from DFT
MA Haq, M Saiduzzaman, TI Asif, IK Shuvo, KM Hossain
RSC Advances 11 (58), 36367-36378, 2021
602021
Band gap shifting of halide perovskite CsCaBr3 from ultra-violet to visible region under pressure for photovoltaic applications
IK Shuvo, M Saiduzzaman, TI Asif, MA Haq, KM Hossain
Materials Science and Engineering: B 278, 115645, 2022
442022
Band gap engineering to stimulate the optoelectronic performance of lead-free halide perovskites RbGeX3 (X = Cl, Br) under pressure
SK Mitro, M Saiduzzaman, TI Asif, KM Hossain
Journal of Materials Science: Materials in Electronics 33 (17), 13860-13875, 2022
412022
Electronic phase transition from semiconducting to metallic in cubic halide CsYbCl3 perovskite under hydrostatic pressure
MR Molla, M Saiduzzaman, TI Asif, WA Dujana, KM Hossain
Physica B: Condensed Matter 630, 413650, 2022
202022
Unveiling the pressure-driven modulations in AGeF3 (A= Na, Tl) cubic perovskite halides for enhanced optoelectronic performance
SH Rabbi, TI Asif, MI Ahmed, M Saiduzzaman, M Islam
Computational Condensed Matter 38, e00887, 2024
122024
Pressure-driven modification of optoelectronic features of ACaCl3 (A= Cs, Tl) for device applications
TI Asif, M Saiduzzaman, KM Hossain, IK Shuvo, MN Hasan, S Ahmad, ...
Heliyon 10 (5), 2024
102024
Hydrostatic pressure-induced transformations and multifunctional properties of Francium-based halide perovskite FrCaCl3: Insights from first-principles calculations
MI Ahmed, A Biswas, TI Asif, M Saiduzzaman, M Islam
Heliyon 10 (13), 2024
42024
Red shift of lead-free halide perovskite RbCaCl3 under pressure for enhancing optoelectronic performance
M Saiduzzaman, KM Hossain, TI Asif, SK Mitro, S Ahmad
Physica Scripta 98 (3), 035806, 2023
42023
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