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The optoelectronic role of chlorine in CH3NH3PbI3(Cl)-based perovskite solar cells

机译:氯在基于CH3NH3PbI3(Cl)的钙钛矿太阳能电池中的光电作用

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摘要

Perovskite photovoltaics offer a compelling combination of extremely low-cost, ease of processing and high device performance. The optoelectronic properties of the prototypical CH3NH3PbI3 can be further adjusted by introducing other extrinsic ions. Specifically, chlorine incorporation has been shown to affect the morphological development of perovksite films, which results in improved optoelectronic characteristics for high efficiency. However, it requires a deep understanding to the role of extrinsic halide, especially in the absence of unpredictable morphological influence during film growth. Here we report an effective strategy to investigate the role of the extrinsic ion in the context of optoelectronic properties, in which the morphological factors that closely correlate to device performance are mostly decoupled. The chlorine incorporation is found to mainly improve the carrier transport across the heterojunction interfaces, rather than within the perovskite crystals. Further optimization according this protocol leads to solar cells achieving power conversion efficiency of 17.91%.
机译:钙钛矿光伏产品具有极低的成本,易于加工和较高的设备性能的强大组合。可以通过引入其他非本征离子进一步调整原型CH3NH3PbI3的光电性能。具体而言,已表明氯的掺入会影响过钾长石薄膜的形貌发展,从而改善了光电特性,从而提高了效率。但是,它需要深入了解外在卤化物的作用,尤其是在薄膜生长过程中没有不可预测的形态学影响的情况下。在这里,我们报告了一种有效的策略,以研究外在离子在光电特性中的作用,其中与器件性能密切相关的形态学因素大多是分离的。发现氯的引入主要改善了跨异质结界面而不是钙钛矿晶体内部的载流子传输。根据该协议的进一步优化导致太阳能电池实现了17.91%的功率转换效率。

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