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Aluminum‐Doped Cesium Lead Bromide Perovskite Nanocrystals with Stable Blue Photoluminescence Used for Display Backlight

机译:具有稳定蓝色光致发光的铝掺杂铯铅溴化钙钛矿纳米晶体用于显示器背光

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摘要

Bright and stable blue emitters with narrow full‐width at half‐maxima are particularly desirable for applications in television displays and related technologies. Here, this study shows that doping aluminum (Al3+) ion into CsPbBr3 nanocrystals (NCs) using AlBr3 can afford lead‐halide perovskites NCs with stable blue photoluminescence. First, theoretical and experimental analyses reveal that the extended band gap and quantum confinement effect of elongated shape give rise to the desirable blueshifted emission. Second, the aluminum ion incorporation path is rationalized qualitatively by invoking fundamental considerations about binding relations in AlBr3 and its dimer. Finally, the absence of anion‐exchange effect is corroborated when green CsPbBr3 and blue Al:CsPbBr3 NCs are mixed. Combinations of the above two NCs with red‐emitting CdSe@ZnS NCs result in UV‐pumped white light‐emitting diodes (LED) with an National Television System Committee (NTSC) value of 116% and ITU‐R Recommendation B.T. 2020 (Rec. 2020) of 87%. The color coordinates of the white LED are optimized at (0.32, 0.34) in CIE 1931. The results suggest that low‐cost, earth‐abundant, solution‐processable Al‐doped perovskite NCs can be promising candidate materials for blue down‐conversion layer in backlit displays.
机译:具有半峰全宽的明亮稳定的蓝色发射器特别适合电视显示器和相关技术中的应用。在这里,这项研究表明,使用AlBr3将铝离子(Al 3 + )掺杂到CsPbBr3纳米晶体(NCs)中可以提供具有稳定的蓝色光致发光的卤化钙钛矿型NCs。首先,理论和实验分析表明,扩展的带隙和细长形状的量子限制效应产生了理想的蓝移发射。其次,通过引用有关AlBr3及其二聚体中键合关系的基本考虑,定性地合理化铝离子的掺入路径。最后,当绿色CsPbBr3和蓝色Al:CsPbBr3 NC混合时,可以证实没有阴离子交换作用。上面两个NC与发红光的CdSe @ ZnS NC的组合产生了国家电视系统委员会(NTSC)值为116%和ITU​​‐R B.T建议书的紫外线泵浦白光发光二极管(LED)。 2020年(2020年建议)为87%。在CIE 1931中将白色LED的颜色坐标优化为(0.32,0.34)。结果表明,低成本,富含地球,可固溶处理的Al掺杂钙钛矿型NC有望成为蓝色下转换层的有前途的候选材料。在背光显示器中。

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