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Interface Engineering of Cubic Zinc Metatitanate as an Excellent Electron Transport Material for Stable Perovskite Solar Cells

机译:立方偏钛酸锌作为稳定钙钛矿太阳能电池极好的电子传输材料的界面工程

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Perovskite solar cells (PSCs) have experienced considerable development in the past few years. The stability issue has become a focus of research efforts toward their commercial applications. The development and interface engineering of electron transport materials (ETMs) to build up stable interfaces with perovskites has been emerging as a powerful strategy to enhance PSCs’ stability. Herein, cubic zinc metatitanate (ZTO) is identified as an excellent ETM with interface engineering treatment of dezincification for fabricating PSCs with much better overall performances than those fabricated from TiO_2, a popularly used ETM. The high electron mobility of ZTO helps minimize the hysteresis. Together with the use of CuSCN as inorganic hole transport material and further protecting the PSCs with reduced graphene oxide, the ZTO-based PSCs exhibit remarkable enhancement in stability, retaining 95% of initial power conversion efficiency under AM 1.5 G illumination at 85 ℃ and 85% relative humidity in air for 1000 h at open circuit.
机译:钙钛矿太阳能电池(PSC)在过去几年中经历了可观的发展。稳定性问题已成为对其商业应用进行研究的重点。电子传输材料(ETM)的开发和界面工程已成为与钙钛矿建立稳定界面的一种新兴手段,已成为增强PSC稳定性的有力策略。在这里,立方偏钛酸锌(ZTO)被认为是一种出色的ETM,采用脱锌的界面工程处理来制造PSC,其总体性能要比由常用的ETM TiO_2制造的PSC更好。 ZTO的高电子迁移率有助于最大程度地减少磁滞现象。结合使用CuSCN作为无机空穴传输材料并进一步用还原的氧化石墨烯保护PSC,基于ZTO的PSC表现出显着的稳定性,在85℃和85℃的AM 1.5 G照度下保持95%的初始功率转换效率。开路时空气中1000%的相对湿度。

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