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Multi-Color Excitonic Emissions in Chemical Dip-Coated Organolead Mixed-Halide Perovskite

机译:化学浸入涂层的混合壁性钙钛矿中的多色激素排放

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摘要

Organolead mixed-halide perovskites capable of emitting multiple colors not only allow the fabrication of compact devices but also improves the functionality of light emitting devices beyond conventional displays. Here we demonstrate a cost-effective chemical dip-coating technique to grow highly reproducible methylammonium-lead-halide perovskite film, which exhibits highly efficient multi-color emissions of red, green and ultraviolet. The power- and temperature-resolved cathodoluminescence analyses reveal that these emissions are attributed to localized excitions with thermal activation energies of 27, 29 and 57 meV. The non-linear fitting of these emission band widths within the frame work of Boson model reveals that excitons are strongly coupled to the lattice with energy of 28 meV, which is consistent with the Raman measurement. This work presents an effective method for the deposition of high-quality and large-area perovskite film, which could be useful for high-performance multi-color display devices.
机译:有机降壁的混合孔钙壶能够发射多种颜色,不仅允许制造紧凑的设备,而且还可以改善传统显示器以外的光发射设备的功能。在这里,我们展示了一种具有成本效益的化学浸入技术,可以生长高度可再现的甲基铵铅甲烷钙钛矿膜,该薄膜表现出高效的多颜色排放红色,绿色和紫外线。功率和温度分辨的阴极发光分析表明,这些排放归因于27、29和57 MEV的热激活能的局部易位。这些发射带宽度在玻色子模型中的非线性拟合表明,激子与28 MeV的能量强烈耦合到晶格,这与拉曼测量是一致的。这项工作提出了一种用于沉积高品质和大面积钙钛矿膜的有效方法,这对于高性能多色显示器可能很有用。

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