Potential challenges and approaches to develop the large area efficient monolithic perovskite solar cells (mPSCs)
Author | Mishra A. |
Author | Ahmad Z. |
Available date | 2020-04-01T06:50:39Z |
Publication Date | 2019 |
Publication Name | Journal of Materials Science: Materials in Electronics |
Resource | Scopus |
ISSN | 9574522 |
Abstract | The next generation technologies based on perovskite solar cells (PSCs) are targeted to develop a true low cost, low tech, widely deployable, easily manufactured and reliable photovoltaics. After the extremely fast evolution in the last few years on the laboratory-scale, PSCs power conversion efficiency (PCE) reached over 24%. However, the widespread use of PSCs requires addressing the stability and industrial scale production issues. Carbon based monolithic perovskite solar cells (mPSCs) are one of the most promising candidates for the commercialization of the PSCs. mPSCs possess a unique architectural design and pave an easy way to produce large area and cost-effective fabrication of the PSCs. In this article, recent progress in the field of mPSCs, challenges and strategies for their improvement are briefly reviewed. Also, we focus on the predominant implementations of recent techniques in the fabrication of the mPSCs to improve their performance. This review is intended to serve as a future direction guide for the scientists who are looking forward to developing more reliable, cost-effective and large area PSCs. - 2019, The Author(s). |
Sponsor | Open Access funding provided by the Qatar National Library. This publication was made possible by Qatar University Internal Grant Nos. QUCG-CAM-2018/19-1 and NPRP11S-1210-170080 from Qatar National Research Fund (a member of Qatar Foundation). The findings achieved herein are solely the responsibility of the authors. |
Language | en |
Publisher | Springer |
Subject | Perovskite Solar cells Methylammonium lead |
Type | Article Review |
Pagination | 20320-20329 |
Issue Number | 23 |
Volume Number | 30 |
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