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Silica coating enhances the stability of inorganic perovskite nanocrystals for efficient and stable down-conversion in white light-emitting devices

机译:无机的硅涂层提高了稳定性钙钛矿为高效、稳定的纳米晶体下变频白色发光装置

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摘要

Recently, inorganic halide perovskite (CsPbX3, X = Cl, Br, I) quantum dots (QDs) have attracted tremendous research interests because of their great potential for application in the fields of low-cost light sources and displays. However, the unsatisfactory structural and chemical stabilities of such materials are the main obstacles hindering reliable device operation significantly. In this study, we successfully prepared CsPbBr3/silica QD composites through a simple sol-gel reaction by using tetramethoxysilane as a single molecule precursor. The as-prepared CsPbBr3/silica QD composites demonstrated substantially improved stability against heat, light, and environmental oxygen/moisture. Besides, a relatively narrower photoluminescence linewidth and higher quantum yield were achieved compared with that of fresh CsPbBr3 QDs. Furthermore, the CsPbBr3 QDs/silica composites were applied as color-converting layer curing on blue light-emitting diodes (LEDs) for white LED applications. Finally, a high power efficiency of 63.5 lm W-1 was obtained and the light emission could be efficiently sustained over 13 h without any decay in the continuous current mode, demonstrating remarkable operation stability than that reported previously. It can be anticipated that the excellent properties and facile processing technique used here will make perovskite QDs/silica composites attractive for applications in optoelectronics and industrial fields.
机译:最近,无机金属卤化物钙钛矿(CsPbX3 X =Cl, Br)量子点(量子点)吸引了极大的研究兴趣,因为他们的领域的应用潜力巨大低成本的光源和显示。不令人满意的结构和化学这样的材料是主要的稳定性障碍阻碍可靠的设备操作显著。准备CsPbBr3 /二氧化硅QD复合材料通过通过使用简单的溶胶-凝胶反应tetramethoxysilane作为单个分子前体。复合材料表现出大幅改善对热稳定,光,和环境氧气/水分。光致发光的谱线宽度和更高的量子产生了比新鲜量子点CsPbBr3。复合材料应用于color-converting层固化在蓝色发光二极管(led)白光LED的应用程序。63.5获得了lm w1和效率光发射可以有效地持续下去在连续超过13 h没有任何衰变当前模式,展示非凡的操作稳定性比先前报道。是优秀的属性和预期这里使用的处理技术量子点钙钛矿/二氧化硅复合材料有吸引力在光电子学和工业中的应用字段。

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