Electrical and optical parameters optimization and interface engineering for efficiency improvement of double CIGS absorber based solar cell
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Renewable Energy, Sustainability and the Environment
Reference40 articles.
1. Numerical simulation of quantum dots as a buffer layer in CIGS solar cells: a comparative study;Abdulghani;Sci. Rep.,2022
2. Efficiency boost of CZTS solar cells based on double-absorber architecture: Device modeling and analysis;AlZoubi;Sol. Energy,2021
3. Simulation analysis of functional MoSe2 layer for ultra-thin Cu(In, Ga)Se2 solar cells architecture;Alzoubi;Mod. Phys. Lett. B,2020
4. Influence of back surface field layer on enhancing the efficiency of CIGS solar cell;Barman;Sol. Energy.,2021
5. Performance enhancement of CIGS-based solar cells by incorporating an ultrathin BaSi2 BSF layer;Biplab;J. Comput. Electron.,2020
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1. Modeling and Simulation of CZTS Solar Cell using Zn1-xMgxO as a buffer layer and Cul as a hole transport layer for efficiency improvement;Engineering Research Express;2024-01-10
2. Thermal and power performance optimization of cost-effective solar cells using eco-friendly perovskite materials;Physica Scripta;2024-01-10
3. A synergistic approach in designing InP/ZnS quantum dot based CIGS solar cell;Micro and Nanostructures;2024-01
4. Design and study of eco-friendly perovskite based solar cell using CuO as HTL, ZrO2 as ETL with high quantum efficiency;Materials Today: Proceedings;2024-01
5. Low-cost lead-free perovskite solar cell with graphene oxide as hole transport layer and carbon as back contact;Optik;2023-12
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