Improving the efficiency of a CIGS solar cell to above 31% with Sb2S3 as a new BSF: a numerical simulation approach by SCAPS-1D

Author:

Rahman Md. Ferdous1ORCID,Chowdhury Mithun1,Marasamy Latha2ORCID,Mohammed Mustafa K. A.3ORCID,Haque Md. Dulal4,Al Ahmed Sheikh Rashel5ORCID,Irfan Ahmad6,Chaudhry Aijaz Rasool7,Goumri-Said Souraya8ORCID

Affiliation:

1. Advanced Energy Materials and Solar Cell Research Laboratory, Department of Electrical and Electronic Engineering, Begum Rokeya University, Rangpur 5400, Bangladesh

2. Facultad de Química, Materiales-Energía, Universidad Autónoma de Querétaro (UAQ), Santiago de Querétaro, Querétaro, C.P. 76010, Mexico

3. College of Remote Sensing and Geophysics, Al-Karkh University of Science, Al-Karkh Side, Haifa St. Hamada Palace, Baghdad 10011, Iraq

4. Department of Electronics and Communication Engineering, Hajee Mohammad Danesh Science and Technology University, Dinajpur 5200, Bangladesh

5. Department of Electrical, Electronic and Communication Engineering, Pabna University of Science and Technology, Pabna 6600, Bangladesh

6. Department of Chemistry, College of Science, King Khalid University, P.O. Box 9004, Abha 61413, Saudi Arabia

7. Department of Physics, College of Science, University of Bisha, P.O. Box 551, Bisha 61922, Saudi Arabia

8. Physics Department, Colleges of Science and General Studies, Alfaisal University, P.O. Box 50927, Riyadh 11533, Saudi Arabia

Abstract

The remarkable performance of copper indium gallium selenide (CIGS)-based double heterojunction (DH) photovoltaic cells is presented in this work.

Funder

University of Bisha

King Khalid University

Publisher

Royal Society of Chemistry (RSC)

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