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The Role of Charge Selective Contacts in Perovskite Solar Cell Stability

机译:电荷选择性接触在钙钛矿太阳能电池稳定性中的作用

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Lead halide perovskite solar cells have rapidly achieved high efficiencies comparable to established commercial photovoltaic technologies. The main focus of the field is now shifting toward improving the device lifetime. Many efforts have been made to increase the stability of the perovskite compound and charge-selective contacts. The electron and hole selective contacts are responsible for the transport of photogenerated charges out of the solar cell and are in intimate contact with the perovskite absorber. Besides the intrinsic stability of the selective contacts themselves, the interfaces at perovskite/selective contact and metal/selective contact play an important role in determining the overall operational lifetime of perovskite solar cells. This review discusses the impact of external factors, i.e., heat, UV-light, oxygen, and moisture, and measured conditions, i.e., applied bias on the overall stability of perovskite solar cells (PSCs). The authors summarize and analyze the reported strategies, i.e., material engineering of selective contacts and interface engineering via the introduction of interlayers in the aim of enhancing the device stability of PSCs at elevated temperatures, high humidity, and UV irradiation. Finally, an outlook is provided with an emphasis on inorganic contacts that is believed to be the key to achieving highly stable PSCs.
机译:卤化铅钙钛矿太阳能电池迅速实现了与建立的商业光伏技术相当的高效率。该领域的主要焦点现在正在转向改善设备寿命。已经提高了许多努力来增加钙钛矿化合物和电荷选择性接触的稳定性。电子和孔选择性触点负责将光发生的电池传输出太阳能电池,并且与钙钛矿吸收器紧密接触。除了选择性触点本身的内在稳定性外,钙钛矿/选择性接触和金属/选择性接触的界面在确定钙钛矿太阳能电池的整体操作寿命方面发挥着重要作用。本综述讨论了外部因素,即热,紫外线,氧气和水分的影响,以及测量条件,即应用偏见对钙钛矿太阳能电池(PSC)的整体稳定性。作者总结和分析了报告的策略,即通过引入中间层的选择性接触和接口工程的材料工程,其目的是提高PSC在升高的温度,高湿度和UV照射时的装置稳定性。最后,提供了一个前景,重点是无机接触,被认为是实现高度稳定PSC的关键。

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