无铅无毒 Perovskite So-lar 电池稳定性和预防策略的进展:评论

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL
Aryan Dilawar Khan, Muhammad Mustajab, Sawaira Moeen, Muhammad Imran, Muhammad Ikram, Qasim Khan and Maaz Khan
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引用次数: 0

摘要

铅毒性是大规模商业生产和实地应用光伏技术所面临的挑战。无铅过氧化物太阳能电池(PSCs)的制造是环境可接受的;研究人员已经研究出了无毒的独特过氧化物材料。研究人员对带隙、光学和电学特性、结构改变、金属电极制造方法及其内部和外部影响的 PSCs 最新进展进行了研究。此外,由于铅在环境中的扩散,有毒铅的影响导致了各种疾病的产生,而使用封装技术可以最大限度地减少这种影响。文章讨论了将异价和同价材料结合在一起以降低铅毒性和提高稳定性的问题,还讨论了避免劣化和腐蚀的封装技术。本评论综述了与 PSCs 稳定性困难和挑战有关的问题。其目的是激发已经活跃在这一迅速崛起的研究领域的年轻研究人员的兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advancements in the stability, protection and lead-free strategies of perovskite solar cells: a critical review

Advancements in the stability, protection and lead-free strategies of perovskite solar cells: a critical review

Lead toxicity is a challenge for the large-scale commercial production and the field implementation of photovoltaics. The fabrication of lead-free perovskite solar cells (PSCs) is environmentally acceptable; researchers have investigated the unique perovskite materials that are non-toxic in nature. The recent advancements in PSCs with suitable bandgap energy, optical and electrical features and structural alterations, methods for manufacturing metal electrodes and their internal and external effects have been investigated. Moreover, the toxic lead causes various diseases due to lead spreading in the environment which has been minimized by encapsulation. Incorporation of heterovalent and isovalent materials to reduce lead toxicity and improve stability has been discussed, and encapsulation techniques to avoid deterioration and corrosion have also been discussed. This critical review addresses the stability issues and challenges of PSCs. The intention is to pique the interest of younger researchers already active in this rapidly emerging study area.

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