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首页> 外文期刊>Journal of Applied Physics >Methylammonium-chloride post-treatment on perovskite surface and its correlation to photovoltaic performance in the aspect of electronic traps
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Methylammonium-chloride post-treatment on perovskite surface and its correlation to photovoltaic performance in the aspect of electronic traps

机译:钙钛矿表面的甲基氯化铵后处理及其与电子陷阱的光电性能相关性

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Herein, MACl post-treatment is utilized for MAPbI(3) and (Cs(0.05)FA(0.79)MA(0.16))Pb(I0.84Br0.16)(3) (MA, methylammonium; FA, formamidinium). Photoluminescence of both perovskite films exhibits a peak shift to the higher emission energy as well as a slower decay of recombination by the MACl treatment, suggesting the passivation of defects in band tail states. Photovoltaic performance is further correlated with the change of deep electronic traps in the bandgap, which is characterized through capacitance analyses of solar cells. Degradation of MAPbI(3) cells by the MACl treatment is attributed to the additional deep-trap formation, and the improvement of photovoltaic parameters for triple-cation perovskites is correlated with the reduction of deep traps with trap-level shifts toward the band edge. The reactive characters of MAPbI(3) against post-treatment conditions seem to be responsible for the deep-trap formation as evidenced by the microstructural/morphological results, and consequently, the improved resistance to trap the formation of triple-cation perovskites provides viability for further performance enhancement by surface passivation.
机译:本文中,MAC1后处理用于MAPbI(3)和(Cs(0.05)FA(0.79)MA(0.16))Pb(I0.84Br0.16)(3)(MA,甲基铵; FA,甲ami)。两种钙钛矿膜的光致发光均显示出向较高发射能量的峰移动以及通过MAC1处理的复合的较慢衰减,这表明带尾态的缺陷被钝化。光伏性能进一步与带隙中深电子陷阱的变化相关,这通过对太阳能电池的电容分析来表征。 MACl处理对MAPbI(3)细胞的降解归因于额外的深陷阱形成,而三阳离子钙钛矿的光伏参数的改善与陷阱水平向带边缘移动的深陷阱的减少相关。 MAPbI(3)对后处理条件的反应性特征似乎是深陷阱形成的原因,微观结构/形态学结果证明了这一点,因此,提高了捕获三阳离子钙钛矿形成的抵抗力,为通过表面钝化进一步提高性能。

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