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首页> 外文期刊>Nanoscale >A polymer-coated template-confinement CsPbBr3 perovskite quantum dot composite dagger
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A polymer-coated template-confinement CsPbBr3 perovskite quantum dot composite dagger

机译:一种template-confinement CsPbBr3钙钛矿量子点复合匕首

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Metal halide perovskites show abundant photophysical properties and great potential in photovoltaic and electroluminescence devices, but their poor stability is an obvious shortcoming. Here, we successfully synthesized polymer-coated CsPbBr3 quantum dots (QDs) grown in situ on a template. Conjugated linoleic acid (CLA) is used as a ligand to passivate the surface defects of QDs. QDs can be used as photoinitiators in polymerization to initiate CLA crosslinking under illumination, thereby forming polymer coatings to improve the stability of QDs. The mesoporous silica microspheres are used as templates to make CsPbBr3 QDs grow in situ in the pores and avoid the size growth and agglomeration of QDs. The obtained composite material has a narrow full width at half maximum and an absolute photoluminescence quantum yield of 79.16%. Due to the protection of the hydrophobic polymer layer, it can still maintain 77% of the photoluminescence intensity after soaking in water for a week.
机译:金属卤化物钙钛矿显示丰富光物理性质和巨大的潜力光伏和致发光装置,但是稳定性差是一个明显的缺点。在这里,我们成功地合成了种CsPbBr3量子点(量子点)上原位生长模板。作为配体的表面缺陷使钝化量子点。聚合开始CLA交联照明,从而形成聚合物涂料提高量子点的稳定性。二氧化硅微球作为模板量子点CsPbBr3原位生长在毛孔和避免的量子点的大小增长与集聚。获得复合材料有一个狭窄的完整宽度最大和绝对的一半光致发光量子产率为79.16%。疏水性聚合物层的保护,它仍然可以保持77%的光致发光强度后浸泡水一个星期。

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