Perovskite materials with improved stability and environmental friendliness for photovoltaics

IF 2 Q2 ENGINEERING, MECHANICAL Frontiers in Mechanical Engineering Pub Date : 2024-04-04 DOI:10.3389/fmech.2024.1357087
Sujit Kumar, Sasanka Sekhor Sharma, J. Giri, Emad Makki, T. Sathish, Hitesh Panchal
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Abstract

Finding innovative, stable, and environmentally acceptable perovskite (PVK) sunlit absorber constituents has developed a major area of study in photovoltaics (PVs). As an alternative to lead-based organic-inorganic halide PVKs, these PVKs are being researched for use in cutting-edge PVK solar cells. While there has been progress in this field as of late, there are still several scientific and technical questions that have yet to be answered. Here, we offer insights into the big picture of PVK toxicity/instability research, and then we discuss methods for creating stable, non-toxic PVKs from scratch. It is also believed that the processing of the proposed PVKs, which occurs between materials design and actual devices, poses novel challenges. PVK PVs that are both stable and ecologically benign can be created if these topics receive more attention. It is interesting to note that although perovskite solar cells (PSCs) have impressive power conversion efficiency, their commercial adoption is hindered by lead toxicity. Lead is a hazardous material that can cause harm to humans and the environment. As a result, researchers worldwide are exploring non-toxic lead-free photovoltaics (PSCs) for a sustainable and safe environment. To achieve this goal, lead in PSCs is replaced by non-toxic or less harmful metals such as tin, germanium, titanium, silver, bismuth, and copper. A study has been conducted that provides information on the characteristics, sustainability, and obstacles of replacing lead with these metals in PSCs. The paper also explores solutions for stability and efficiency issues in lead-free, non-toxic PSC commercialization, including altering manufacturing techniques and adding additives. Lastly, it covers the latest developments/future perspectives in lead-free perovskite solar cells that can be implemented in lead-free PSCs.
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稳定性更好、更环保的光伏用包晶石材料
寻找创新、稳定、环保的过氧化物硅酸盐(PVK)阳光吸收剂成分已成为光伏(PV)领域的一个主要研究方向。作为铅基有机无机卤化物 PVK 的替代品,这些 PVK 正被研究用于最先进的 PVK 太阳能电池。虽然该领域近来取得了一些进展,但仍有一些科学和技术问题尚待解答。在此,我们将深入探讨 PVK 毒性/不稳定性研究的全貌,然后讨论从零开始制造稳定、无毒 PVK 的方法。我们还认为,拟议中的 PVK 的加工过程(发生在材料设计和实际设备之间)提出了新的挑战。如果这些课题得到更多关注,就能创造出既稳定又对生态无害的 PVK 光伏。值得注意的是,尽管过氧化物太阳能电池(PSCs)具有令人印象深刻的功率转换效率,但其商业应用却受到铅毒性的阻碍。铅是一种可对人类和环境造成危害的有害物质。因此,世界各地的研究人员正在探索无毒的无铅光伏电池(PSCs),以实现可持续的安全环境。为了实现这一目标,PSCs 中的铅被无毒或危害较小的金属所取代,如锡、锗、钛、银、铋和铜。本研究提供了有关在 PSC 中用这些金属替代铅的特性、可持续性和障碍的信息。论文还探讨了无铅、无毒 PSC 商业化过程中稳定性和效率问题的解决方案,包括改变制造技术和添加添加剂。最后,论文还介绍了可用于无铅 PSC 的无铅过氧化物太阳能电池的最新进展/未来展望。
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来源期刊
Frontiers in Mechanical Engineering
Frontiers in Mechanical Engineering Engineering-Industrial and Manufacturing Engineering
CiteScore
4.40
自引率
0.00%
发文量
115
审稿时长
14 weeks
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