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首页> 外文期刊>Frontiers in Chemistry >All-Inorganic CsPbBr3 Perovskite Films Prepared by Single Source Thermal Ablation
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All-Inorganic CsPbBr3 Perovskite Films Prepared by Single Source Thermal Ablation

机译:通过单源热消融制备的全无机CSPBBR3钙钛矿薄膜

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Hybrid organo-lead halide perovskites are becoming the benchmark material for next generation photovoltaics and a very important player for other applications such as photodetectors and light emitting diodes. Nevertheless, the most important issue hindering the large-scale application of these materials remains their intrinsic instability due to the organic cation. Although the substitution with inorganic cesium (Cs) enhances stability, in most cases solution deposition methods of fully inorganic perovskites result in high surface roughness and poor surface coverage. This work reports on the evaporation of the CsPbBr3 precursor by single source thermal ablation, showing that just after deposition films consist of a mixture of CsPbBr3, CsPb2Br5, and Cs4PbBr6 due to a vertical composition gradient. We point out that mild post deposition treatments lead to the conversion of CsPb2Br5 and Cs4PbBr6 into CsPbBr3 due to its higher thermodynamic stability. Conversion results into smooth and pinhole-free CsPbBr3 films with good light absorption and emission properties. We demonstrate the suitability of obtained films for planar devices by preparing perovskite-based pure-green light emitting diodes, thus promoting Single Source Thermal Ablation as a promising alternative deposition technique for all-inorganic perovskite-based devices.
机译:杂交有机铅卤化卤素佩罗夫斯基斯正在成为下一代光伏的基准材料,以及用于诸如光电探测器和发光二极管的其他应用的非常重要的球员。尽管如此,妨碍了这些材料的大规模应用的最重要的问题仍然是由于有机阳离子的内在不稳定性。尽管用无机铯(Cs)取代增强稳定性,但在大多数情况下,溶液沉积方法完全无机钙酯导致高表面粗糙度和表面覆盖差。该工作报告了单源热烧蚀蒸发CSPBBR3前体,表明由于垂直组合梯度,沉积膜组成的沉积膜组成的CSPBBR3,CSPB2BR5和CS4PBBR6的混合物。我们指出,由于其热力学稳定性较高,温和后沉积治疗导致CSPB2BR5和CS4PBBR6的转化为CSPBBR3。转化为具有良好的光吸收和排放性能的平滑和针孔的CSPBBR3薄膜。我们通过制备基于钙钛矿的纯绿色发光二极管来证明所得薄膜的适用性,从而促进单源热消融作为基于无机钙钛矿的所有有前途的替代沉积技术。

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