Numerical Simulation for Enhancing Performance of MoS<sub>2</sub> Hetero-Junction Solar Cell Employing Cu<sub>2</sub>O as Hole Transport Layer
Author:
Publisher
Scientific Research Publishing, Inc.
Subject
General Engineering
Reference32 articles.
1. Performance Enhancement of an MoS2-Based Heterojunction Solar Cell with an In2Te3 Back Surface Field: A Numerical Simulation Approach
2. Device simulation of highly efficient eco-friendly CH3NH3SnI3 perovskite solar cell
3. Optimization and sustainability analysis of PV/wind/diesel hybrid energy system for decentralized energy generation
4. A review on solar energy intensified biomass valorization and value-added products production: Practicability, challenges, techno economic and lifecycle assessment
5. Contribution of renewable energy (hydro, wind, solar and biomass) to decarbonization and transformation of the electricity generation sector for sustainable development
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1. Design and optimization study of all inorganic based double-absorption- layer CsPbI3/MoS2 heterojunction perovskite solar cells by SCAPS-1D;Journal of Physics and Chemistry of Solids;2024-12
2. Improving the efficiency above 35 % of MoS2-based solar cells by through optimization of various wide-bandgap S-chalcogenides ETL;Journal of Physics and Chemistry of Solids;2024-11
3. SCAPS 1D based study of hole and electron transfer layers to improve MoS2–ZrS2 solar cell efficiency;Modelling and Simulation in Materials Science and Engineering;2024-07-02
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