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Recent advances in interface engineering of all-inorganic perovskite solar cells

机译:接口工程的最新进展all-inorganic钙钛矿的太阳能电池

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All-inorganic perovskite solar cells (PSCs) have become one of the most attractive research fields in recent years due to their excellent thermal stability and light stability as compared with their organic-inorganic hybrid counterparts. However, there is still a long way to go for their commercial application due to their low efficiency and poor stability under humidity conditions. Herein, an overview of the recent progress of all-inorganic PSCs based on interface engineering is provided. The main roles of interface engineering, adjusting energy-level alignment, enhancing charge transport capacity, passivating interface defects, modulating morphology of perovskite films, stabilizing perovskite phase, broadening spectral absorption, eliminating electrical hysteresis and enhancing operational stability, are summarized with examples, which paves the way for highly efficient and stable all-inorganic PSCs. Some of the latest progress in incorporating dopants to charge transport materials and modifying interface properties in all-inorganic PSCs are also covered.
机译:All-inorganic钙钛矿太阳能电池(已经)成为最具吸引力的研究领域之一近年来由于其优良的热相比之下,稳定、光稳定性有机-无机杂化。然而,仍有很长的路要走他们的商业应用程序由于其低湿度下效率和稳定性差条件。all-inorganic进步已经基于接口工程提供。接口工程,调整能级对齐,提高电荷传输能力,钝化界面缺陷,调制钙钛矿电影的形态、稳定钙钛矿阶段,拓宽光谱吸收,消除电磁滞和增强操作稳定,进行了总结例子,为高度铺平了道路高效和稳定all-inorganic已经。最新的进展将掺质电荷传输材料和修改接口属性all-inorganic已经也覆盖。

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