Efficiency enhancement above 31% of Sb2Se3 solar cells with optimizing various BSF layer

MF Rahman, A Lubaba, LB Farhat, S Ezzine… - Materials Science and …, 2024 - Elsevier
Recent advancements in solar technology have increased the acceptance of antimony
selenide (Sb 2 Se 3) due to its advantageous properties. This study aims to enhance the …

Unveiling the Structural, Electronic, Optical, Mechanical, and Photovoltaic Properties of Lead-Free Inorganic New Ba3MBr3 (M = As, N, P, and Sb) Perovskites

MF Rahman, MH Rahman, A Kuddus… - Energy & …, 2024 - ACS Publications
Highly efficient, stable perovskite solar cells (PSCs) are investigated using barium (Ba)-
based homologous series compound materials such as Ba3MBr3 (M= As, P, Sb, and N) as …

A Deep Analysis and Enhancing Photovoltaic Performance Above 31% with New Inorganic RbPbI3‐Based Perovskite Solar Cells via DFT and SCAPS‐1D

MF Rahman, M Harun‐Or‐Rashid… - Advanced Theory …, 2024 - Wiley Online Library
The inimitable structural, electronic, and optical properties of inorganic cubic rubidium‐lead‐
halide perovskite have obtained significant attention. In this research, novel rubidium‐lead …

Design and optimization of WS2 based high performance double absorber solar cell

J Al Mahmud, MF Rahman, MD Haque… - Physica …, 2024 - iopscience.iop.org
Ultra-thin flexible photovoltaic materials for solar cells, like transition metal di-chalcogenides
(TMDCs), hold significant promise due to their advantageous properties in photon …

Analysis of the role of A-cations in lead-free A3SbI3 (A = Ba, Sr, Ca) perovskite solar cells

M Harun-Or-Rashid, LB Farhat, A Brahmia… - Journal of Materials …, 2024 - Springer
Recently, the solar energy sector has been greatly interested in lead (Pb)-free inorganic
halide perovskites due to their remarkable mechanical, optical, electronic, and structural …

An innovative approach to design readily synthesizable polymers for all-polymer solar cells

NS Alsaiari, MH Tahir, A Hussain, N Sultan… - Chemical Physics, 2024 - Elsevier
The communalization of all-polymer solar cells depends on the cost of active layer materials.
We have introduced a framework to find the easily synthesizable polymers. Breaking …

Discovering the relationship between sulfide and selenide-based HTLs and cubic Ba3SbI3 solar cells with SCAPS-1D and machine learning modelling

A Ghosh, MR Hasan, M Moumita, KU Apu… - Inorganic Chemistry …, 2024 - Elsevier
This study investigates the possibility of creating stable, effective perovskite solar cells
(PSCs) by combining Hole transport layers (HTLs) with barium-based homologous series …

Achieving 34% efficiency with a dual-absorber solar cell design using CaRbCl3 and Ca3NCl3 perovskites

M Boujelbene, MR Khan, MA Rahman, A Ghosh… - Inorganic Chemistry …, 2024 - Elsevier
This study's DFT calculations show that the direct bandgaps of perovskite CaRbCl 3 and Ca
3 NCl 3 are 1.386 eV and 1.430 eV, respectively, confirming their semiconducting nature …

Design and simulation of a new kesterite solar cell structure with and without a perovskite back surface field layer to exceed 32% efficiency

L Et-Taya, A El Khalfi, M Ouhadou, A El Boukili… - Physica …, 2024 - iopscience.iop.org
Copper zinc tin sulfide-selenide (CZTSSe) is a promising thin-film material for photovoltaic
solar cells due to its abundance, environmentally friendly constituents, direct bandgap, and …

Impact of CdTe BSF layer on enhancing the efficiency of MoSe2 solar cell

N Rahman, A Bakkar, MD Haque, SR Al Ahmed… - Journal of Optics, 2024 - Springer
Abstract Molybdenum Diselenide (MoSe2)-based solar cells have gained significant interest
among researchers due to their exceptional semiconducting properties. However, the …