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Recent advancements and future insight of lead-free non-toxic perovskite solar cells for sustainable and clean energy production: A review

铅(地质) 钙钛矿(结构) 光伏系统 环境友好型 能量转换效率 太阳能 纳米技术 太阳能电池 材料科学 环境科学 工程类 电气工程 化学工程 地质学 光电子学 地貌学 生态学 生物
作者
Muhammad Ikram,Rumesa Malik,Rimsha Raees,Muhammad Imran,Feng Wang,Salamat Ali,Maaz Khan,Qasim Khan,Muhammad Maqbool
出处
期刊:Sustainable Energy Technologies and Assessments [Elsevier BV]
卷期号:53: 102433-102433 被引量:60
标识
DOI:10.1016/j.seta.2022.102433
摘要

Production and management of clean energy in a sustainable manner is a global need. Several methods of energy production have been explored but some of them are accompanied with environmental hazards and toxic materials. One of those several means of sustainable energy production is a perovskite solar cell. Perovskite solar cells have received interest for photovoltaic applications attributed to their verified over 25% power conversion efficiency. Because of the high toxicity associated with lead, it seems a pressing need to clean and remove toxic lead from currently available and future inorganic Perovskite solar cells. Environmental-health hazards are posed by lead-based compounds and devices available for use. This review focuses on the development of lead-free non-toxic perovskite materials based solar cells and other devices. To solve the lead associated toxicity problem, lead can be substituted with nontoxic and environmentally friendly metals like Ti, Sn, Sb, Ge, Bi, and Ag. To further enhance the stability of lead-free perovskites, all-inorganic lead-free perovskites have recently gotten considerable attention. In numerical simulation, the CsSnI3 based perovskite solar cell has the highest power conversion efficiency of 28.97% among all the lead-free perovskite based devices. Extensive review of environmentally friendly and toxicity free perovskites and their applications has been performed. The advantages of lead substituted metals have been discussed. Lastly, critical analysis and discusses is reported on the progress to enhance the efficiency and stability of lead-free perovskite solar cells and devices by energy-band engineering and inorganic transport layers.

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