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Surface passivation of perovskite layers using heterocyclic halides: Improved photovoltaic properties and intrinsic stability

机译:使用杂环卤化物的钙钛矿层的表面钝化:改善的光伏性能和内在稳定性

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摘要

Hybrid perovskite structures have been obtained from methylammonium lead triiodide passivated with imidazolium iodide. Imidazolium iodide will effectively passivates the surface at the perovskite/hole transporting layer (HTM) interface. By tuning the passivation layer thickness, the photovoltaic parameters, open circuit voltage (V-OC) and fill-factor (FF) were improved. The placement of a imidazolium iodide layer work as passivation layer on top of perovskite and retards the growth of superoxide formation. The imidazolium cation simultaneously modulates the surface texture, electrical properties, and crystallization of the perovskite films. Photoluminescence (PL) emission exhibits significant blue shift proportional to the thickness of imidazolium passivation layers confirming reduced number of surface traps, while the PL decay shows a similar trend as of pure methylammonium lead triiodide (MAPbI(3)).
机译:已经从用咪唑碘化物钝化的甲基甲基铅三碘化物获得杂交钙钛矿结构。 咪唑碘化物将有效地将表面钝化在钙钛矿/空穴传输层(HTM)界面处。 通过调整钝化层厚度,光伏参数,开路电压(V-OC)和填充因子(FF)得到改善。 将咪唑碘化物层的放置在钙钛矿顶部的钝化层并延缓过超氧化物形成的生长。 咪唑鎓阳离子同时调节钙钛矿膜的表面纹理,电性能和结晶。 光致发光(PL)发射表现出与咪唑鎓钝化层的厚度成比例的显着的蓝色偏移,其确认表面疏水阀的减少数量,而PL衰减显示出纯甲基丙酸铅三碘化物(MAPBI(3))的类似趋势。

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