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Perovskite solar cells: Thermal and chemical stability improvement, and economic analysis
Journal article   Peer reviewed

Perovskite solar cells: Thermal and chemical stability improvement, and economic analysis

Shams Forruque Ahmed, Nafisa Islam, P. Senthil Kumar, Anh Tuan Hoang, M. Mofijur, Abrar Inayat, G.M. Shafiullah, Dai-Viet N. Vo, Irfan Anjum Badruddin and Sarfaraz Kamangar
Materials today chemistry, Vol.27, 101284
2023

Abstract

Degradation Perovskite Perovskite device Photovoltaic Solar cell Stability
Perovskite solar cells (PSCs) are highly efficient and are comparatively cheaper than the large silicon crystals primarily used in solar cells. Their outstanding photovoltaic performance makes them a potential alternative to silicon solar cells. While efficiency and photovoltaic performance have been investigated in recent decades, a knowledge gap on the degradation, economic feasibility and stability of PSCs exists, and their poor stability remains a barrier to commercialization. Thus, this review aims to fill this knowledge gap by focusing on approaches to improve PSCs’ thermal and chemical stability, and their economic viability under different conditions. The structure and manufacture of PSCs are also discussed along with an economic analysis of different perovskite devices. Improvements in thermal stability can be reached by incorporating inorganic materials into the PSC. A PSC model optimized with ZnO improves chemical stability by 8% and works well under low temperatures. To make PSCs more economically feasible, certain parts like counter electrodes (CE) and hole transport materials (HTMs) can be replaced with alternative elements like carbon and inorganic HTMs, respectively. PSCs with long durability and high conversion efficiency will expand the commercial prospects for this material. To bridge the lack of knowledge, further investigation is required on the sustainability and longevity of PSCs.

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UN Sustainable Development Goals (SDGs)

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#7 Affordable and Clean Energy

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Collaboration types
Domestic collaboration
International collaboration
Citation topics
2 Chemistry
2.298 Perovskite Solar Cells
2.298.761 Perovskite Properties
Web Of Science research areas
Chemistry, Multidisciplinary
Materials Science, Multidisciplinary
ESI research areas
Materials Science
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