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首页> 外文期刊>ACS Omega >Spatial Inhomogeneity of Methylammonium Lead-Mixed Halide Perovskite Examined by Space- and Time-Resolved Microwave Conductivity
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Spatial Inhomogeneity of Methylammonium Lead-Mixed Halide Perovskite Examined by Space- and Time-Resolved Microwave Conductivity

机译:通过空间和时间分辨的微波电导率检查甲基丙烯酸铅铅混合卤化物钙钛矿的空间不均匀性

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Reducing the spatial inhomogeneity of solution-processed, multicrystalline methylammonium lead iodide (MAPbI_(3)) perovskite is of great importance for improving its power conversion efficiency, suppressing point-to-point deviations, and delaying degradation during operation. Various techniques, such as conducting-mode atomic force microscopy and photoluminescence mapping, have been applied for this intriguing class of materials, revealing nonuniform electronic properties on the nanometer-to-micrometer scale. Here, we designed a new space- and time-resolved microwave conductivity system that enables mapping of the transient photoconductivity with resolution greater than ~45 μm. We examined the effects of the precursor concentration of MAPbI_(3) and the mixing of halides (I~(–) and Br~(–)) on the charge carrier dynamics, crystal size, and inhomogeneity of the films. The optoelectronic inhomogeneity of MAPbI_(3) and MAPb(I_(1–x )Br_(x) )_(3) on the sub-millimeter and millimeter scales shows a general correlation with their crystallite sizes, whereas the precursor concentration and halide mixing affect the inhomogeneity in a different way, providing a basis for uniform processing of a multicrystalline perovskite film.
机译:减少溶液加工的空间不均匀性,多晶硅甲基铅碘化物(MAPBI_(3))钙钛矿对于提高其功率转换效率,抑制点对点偏差以及在操作期间延迟劣化。已经施加了各种技术,例如导电模式原子力显微镜和光致发光映射,用于这种有趣的材料,揭示纳米至微米级上的非均匀电子性质。这里,我们设计了一种新的空间和时间分辨的微波电导系统,其能够通过大于〜45μm的分辨率来映射瞬态光电导性。我们检查了MAPBI_(3)的前体浓度的影响以及卤化物(I〜( - )和BR〜( - )的混合电荷载体动力学,晶体尺寸和薄膜的不均匀性。 MAPBI_(3)和MAPB(I_(1- x)BR _(x))_(3)上的光电子不均匀性显示与其微晶尺寸的一般相关性,虽然前体浓度和卤化物混合以不同的方式影响不均匀性,为多晶硅钙钛矿膜均匀加工提供基础。

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