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Chemical Approaches for Stabilizing Perovskite Solar Cells

机译:稳定钙钛矿太阳能电池的化学方法

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Chemical bonding dictates not only the optoelectronic properties of materials, but also the intrinsic and extrinsic stability of materials. Here, the causes of intrinsic and extrinsic instability of perovskite materials are reviewed considering their correlation with the unique chemical-bonding nature of perovskite materials. There are a number of key standardized stability tests established by the International Electrotechnical Commission for commercialized photovoltaic modules. Based on these procedures, the possible causes and related mechanisms of the material degradation that can arise during the test procedures are identified, which are discussed in terms of their chemical bonds. Based on the understanding of the critical causes, promising strategies for mitigating the causes to enhance the stability of perovskite solar cells are summarized. The stability of the state-of-the-art perovskite solar cells implies a need for the development of improved stability-testing protocols to move onto the next stage toward commercialization.
机译:化学键不仅决定材料的光电性能,而且决定材料的固有和非固有稳定性。在此,考虑钙钛矿材料与钙钛矿材料独特的化学键合性质之间的相关性,回顾了钙钛矿材料固有和外部不稳定性的原因。国际电工委员会针对商业化的光伏模块建立了许多关键的标准化稳定性测试。基于这些程序,确定了在测试程序过程中可能发生的材料降解的可能原因和相关机理,并就其化学键进行了讨论。基于对关键原因的理解,总结了缓解潜在原因以增强钙钛矿太阳能电池稳定性的策略。最先进的钙钛矿太阳能电池的稳定性意味着需要开发改进的稳定性测试协议,以进入商业化的下一阶段。

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