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Inorganic Surface Engineering to Enhance Perovskite Solar Cell Efficiency

机译:无机表面工程提高钙钛矿太阳能电池效率

摘要

The photoconversion efficiency of perovskite solar cells (PSCs) is enhanced by the deposition of inorganic nanoparticles (NPs) at the interface between the compact TiO2 electron-selective contact and the mesoporous TiO2 film. The NPs used are core/shell Au@SiO2, where a thin SiO2 coating protects the Au core from the direct chemical interaction with CH3NH3PbI3 halide perovskite used as light-harvesting material. The samples prepared with Au@SiO2 NPs exhibit a higher external quantum efficiency in the complete wavelength range at which perovskite presents light absorption and not just at the wavelengths at which Au@SiO2 NPs present their absorption peak. This fact rules out a direct plasmonic process as responsible for the enhancement of cell performance. A detailed characterization by photoluminescence, impedance spectroscopy, and open-circuit voltage decay unveils a modification of the interfacial properties with an augmentation of the interfacial electrostatic potential that increases both photovoltage and photocurrent. This article highlights the dramatic role of interfaces in the performance of PSCs. The use of reduced quantities of highly stable inorganic compounds to modify the PSC interface instead of the extensively used organic compounds opens the door to a new surface engineering based on inorganic compounds.
机译:钙钛矿型太阳能电池(PSC)的光转换效率通过在紧凑的TiO2电子选择性接触与中孔TiO2膜之间的界面处沉积无机纳米颗粒(NPs)来提高。所使用的NP为核/壳Au @ SiO2,其中薄的SiO2涂层可保护Au核免受与用作光收集材料的CH3NH3PbI3卤化物钙钛矿的直接化学相互作用。用Au @ SiO2 NPs制备的样品在钙钛矿呈现光吸收的整个波长范围内显示出更高的外部量子效率,而不仅仅是在Au @ SiO2 NPs呈现吸收峰的波长上显示出更高的外部量子效率。这一事实排除了直接等离激元过程,因为其导致细胞性能的提高。通过光致发光,阻抗谱和开路电压衰减进行的详细表征揭示了界面特性的修改,同时增加了界面静电势,从而增加了光电压和光电流。本文重点介绍了接口在PSC的性能中的重要作用。使用减少量的高度稳定的无机化合物来修饰PSC界面,而不是广泛使用的有机化合物,为基于无机化合物的新表面工程打开了大门。

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