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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhanced Luminescence and Stability of Cesium Lead Halide Perovskite CsPbX3 Nanocrystals by Cu2+-Assisted Anion Exchange Reactions
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Enhanced Luminescence and Stability of Cesium Lead Halide Perovskite CsPbX3 Nanocrystals by Cu2+-Assisted Anion Exchange Reactions

机译:通过Cu2 +亚替金对阴离子交换反应增强铯铅卤化铯卤化铯CSSPBX3纳米晶的发光和稳定性

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Inorganic CsPbX3 perovskite nanocrystals (NCs) have exhibited great optical properties, such as tunable emission wave-length, narrow emission line-widths, and high photoluminescent quantum yields. However, the unstable crystal structure of perovskite CsPbX3 NCs lead to a deterioration in optical performance. In this work, it is demonstrated that inorganic perovskite NCs, including CsPbCl3 and CsPbBr3-xClx NCs with excellent photoluminescence quantum yield and optical stability can be improved via anion exchange reaction treated with a new halide precursor consisting of copper halide (CuX2-) oleylamine (OLA) complexes. Unlike traditional perovskite synthesized processes for better crystalline structures operated at high temperatures, this work offers an economical method operable at the room temperatures. The treated CsPbX3 perovskite nanocrystals were characterized by in situ photoluminescence (PL) spectra and in situ X-ray (XRD). Cu2+ ions were only absorbed on the surface of perovskite NCs confirmed by the X-ray absorption spectroscopy (XAS) analysis. Density functional theory calculation explained that the origin of high stability and good crystallinity for treated perovskite NCs stemmed from adsorption of CuCl2 on perovskite's surface to passivate defect sites during the recrystallization process. diffraction
机译:无机CSPBX3钙钛矿纳米晶体(NCS)表现出较大的光学性质,例如可调发射波长,窄发射线宽和高光致发光量子产率。然而,Perovskite CSPBX3 NCS的不稳定晶体结构导致光学性能的劣化。在这项工作中,证明可以通过用卤化镓(Cux2-)Oleylamine组成的新卤化卤前体(Cux2-)Oxylamine( OLA)复合物。与传统的Perovskite合成工艺不同,对于在高温下操作的更好的晶体结构,该工作提供了一种在室温下可操作的经济方法。通过原位光致发光(PL)光谱和原位X射线(XRD)的处理过处理的CSPBX3钙钛矿纳米晶体。 Cu2 +离子仅被X射线吸收光谱(XAS)分析证实的钙钛矿NCS的表面上。密度函数理论计算说明,用于治疗的钙钛矿NCS的高稳定性和良好结晶度的起源源于Cucskite的表面在重结晶过程中钝化缺陷位点的Cucl2。衍射

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