首页> 外文期刊>ACS applied materials & interfaces >Reconstruction of the (EMIm)(x)MA(1-x)Pb[(BF4)(x)I1-x](3) Interlayer for Efficient and Stable Perovskite Solar Cells
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Reconstruction of the (EMIm)(x)MA(1-x)Pb[(BF4)(x)I1-x](3) Interlayer for Efficient and Stable Perovskite Solar Cells

机译:重建(emim)(x)ma(1-x)pb [(bf4)(x)I1-x](3)中间层用于高效且稳定的钙钛矿太阳能电池

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摘要

Defective grain boundaries (GBs) and surface trap states are detrimental to the efficiency and stability of perovskite solar cells (PSCs). In this research, ionic liquid (IL) is used to control the defect states at the perovskite surface and GBs. The newly formed (EMIm)(x)MA(1-x)Pb[(BF4)(x)I1-x](3) interlayer promotes secondary grain growth to diminish GBs; besides, EMIM+ and BF4- fill the vacancies of MA(+) and I- and also passivate undercoordinated Pb2+ trap states. The newly formed interface largely reduces the nonradiative recombination, thus enhancing the solar-cell performance to 19.0% (AM 1.5, 1 sun with higher photovoltage and fill factor than the control device. Due to the hydrophobicity of the (EMIm)(x)MA(1-x)Pb[(BF4)(x)I1-x](3) interlayer, the unencapsulated device stability in 30 days is much better than the control device under relative humidity (RH) = 20%. This work highlights IL-induced secondary grain growth and a defect passivation method for efficient and stable PSCs.
机译:缺陷晶界(GBs)和表面陷阱态对钙钛矿型太阳能电池(PSC)的效率和稳定性有害。在本研究中,离子液体(IL)用于控制钙钛矿表面和GBs的缺陷状态。新形成的(EMIm)(x)MA(1-x)Pb[(BF4)(x)I1-x](3)中间层促进了二次晶粒的生长,从而减少了GBs;此外,EMIM+和BF4-填补了MA(+)和I-的空缺,并钝化了欠协调的Pb2+陷阱态。新形成的界面大大减少了非辐射复合,从而将太阳能电池的性能提高到19.0%(AM 1.5,1 sun),具有比控制装置更高的光电压和填充因子,在相对湿度(RH)=20%的条件下,30天内未封装设备的稳定性比对照设备要好得多。这项工作强调了IL诱导的二次晶粒生长和高效稳定PSC的缺陷钝化方法。

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