Thin-film solar cells based on copper indium gallium selenide (CIGS) and perovskites continue to enhance their market share as promising energy conversion devices for indoor and outdoor applications. CIGS has been known for its high absorption coefficient, tunable bandgap and flexibility. Nevertheless, the use of toxic, regulated elements (cadmium) and reliance on rare elements create a huge barrier in the efforts to enhance the commercial market of CIGS. Perovskite solar cells have attracted increasing scientific and technological interest because of their high efficiency. This is due to their ability to fulfil the multiple roles of light-absorption, charge separation and transport of holes and electrons in materials. Furthermore, they contain low amounts of rare earth materials. However, this technology is still limited by the stability, scale-up and composition of materials. CIGS–perovskite tandem solar cells continue to demonstrate very high efficiencies over 24%. In this study, an overview of the recent developments in material specifications, deposition techniques and device architecture of CIGS and perovskite solar cells is presented.
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1 October 2020
Research Article|
August 11 2020
CIGS and perovskite solar cells – an overview Available to Purchase
Leqi Lin, MSc
;
Leqi Lin, MSc
Research Assistant
Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, NJ, USA
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Nuggehalli M Ravindra, PhD
Interdisciplinary Program in Materials Science & Engineering, New Jersey Institute of Technology, Newark, NJ, USA
(corresponding author: n.m.ravindra@njit.edu; nmravindra@gmail.com)
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(corresponding author: n.m.ravindra@njit.edu; nmravindra@gmail.com)
Publisher: Emerald Publishing
Received:
May 14 2020
Accepted:
July 22 2020
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2020
Emerging Materials Research (2020) 9 (3): 812–824.
Article history
Received:
May 14 2020
Accepted:
July 22 2020
Citation
Lin L, Ravindra NM (2020), "CIGS and perovskite solar cells – an overview". Emerging Materials Research, Vol. 9 No. 3 pp. 812–824, doi: https://doi.org/10.1680/jemmr.20.00124
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