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A first-principles prediction on the healing effect of graphene preventing carrier trapping near the surface of metal halide perovskites

机译:石墨烯的修复作用防止载流子在金属卤化物钙钛矿表面附近捕获的第一性原理预测

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摘要

We herein report that surface modification of metal halide perovskites using graphene would be beneficial to improving the energy conversion efficiencies of perovskite solar cells. The present first-principles calculations on MAPbI3 with a single vacancy created by removing either I, Pb or MA show that the I and Pb vacancies near the surface result in the formation of Pb–Pb and I–I dimers, respectively. They are predicted to yield mid-gap levels, and would degrade the energy conversion efficiency of perovskite solar cells through carrier trapping. The present calculations suggest that when the surface of MAPbI3 is covered with a graphene sheet, the formation of the carrier trapping dimers would be suppressed. The origin of the “healing effect” of graphene on the lattice defect is ascribed to electronic interactions on the surface, which prevent charge localization at the lattice defects beneath the surface.
机译:我们在本文中报道,使用石墨烯对金属卤化物钙钛矿进行表面改性将有利于改善钙钛矿太阳能电池的能量转换效率。目前通过去除I,Pb或MA产生的单个空位的MAPbI3的第一性原理计算表明,表面附近的I和Pb空位分别导致形成Pb-Pb和I-I二聚体。预计它们将产生中间能隙水平,并且将通过载流子捕获而降低钙钛矿太阳能电池的能量转换效率。当前的计算表明,当MAPbI3的表面覆盖有石墨烯片时,将抑制载流子捕获二聚体的形成。石墨烯对晶格缺陷的“修复效应”的起源归因于表面上的电子相互作用,这阻止了电荷在表面下方的晶格缺陷处的定位。

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