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Ultrastable and high colour rendering index WLEDs based on CsPbBrI2 nanocrystals prepared by a two-step facile encapsulation method

机译:基于CSPBBRI2纳米晶体的超吸引和高色渲染指数由两步容易封装方法制备的CSPBBRI2纳米晶体

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Lead halide perovskite CsPbX3 (X = Cl, Br, and I) nanocrystals (NCs) are widely used in the newest generation of lighting display equipment because of their excellent optical properties. However, their poor stability remains an urgent issue to overcome. Encapsulation has become a significant and effective strategy to promote the stability of perovskite NCs, particularly by the package coating of polymer and porous materials. Herein, a simple two-step encapsulation strategy is adopted to fabricate CsPbBrI2@zeolite/PMMA composite films to replace the previous preparation methods of perovskite films. A highly efficient and stable red-emitting material with great colour purity and excellent PLQY of similar to 53.9% is manufactured by this simple and effective packaging method. Furthermore, because of the first-encapsulation with zeolite, the CsPbBrI2@zeoite/PMMA composite films not only reduced the agglomeration of NCs but also obtained better optical performance and environmental stability compared to that of pure CsPbBrI2/PMMA. Ultimately, WLEDs constructed by the red-emitting CsPbBrI2@zeolite/PMMA composite material achieve an outstanding colour rendering index, luminous efficiency and correlated color temperature (CRI = 94.5, LE = 77.22 lm W-1 and CCT = 5354 K), and realize tunable colour coordinates of (0.3359-0.32912, 0.3455-0.3336) in the white light area, implying that CsPbBrI2@zeolite/PMMA is very promising for obtaining a high CRI of WLEDs instead of traditional phosphor. The facile two-step encapsulation method proposed in this study provides a prospect for obtaining high-quality perovskites.
机译:卤化铅钙钛矿型CsPbX3(X=Cl,Br,I)纳米晶体(NCs)因其优异的光学性能在最新一代的照明显示设备中得到了广泛的应用。然而,它们的稳定性差仍然是一个迫切需要克服的问题。封装已成为提高钙钛矿型纳米晶稳定性的一个重要而有效的策略,尤其是通过聚合物和多孔材料的封装涂层。本文采用了一种简单的两步封装策略CsPbBrI2@zeolite/PMMA复合薄膜取代了以往钙钛矿薄膜的制备方法。通过这种简单有效的包装方法,制备出了一种高效稳定的红色发光材料,其颜色纯度高,PLQY质量分数高达53.9%。此外,由于首次使用沸石进行封装,因此CsPbBrI2@zeoite/与纯CsPbBrI2/PMMA相比,PMMA复合薄膜不仅减少了NCs的团聚,而且获得了更好的光学性能和环境稳定性。最终,WLED由红色发光二极管构成CsPbBrI2@zeolite/PMMA复合材料实现了卓越的显色指数、发光效率和相关色温(CRI=94.5、LE=77.22 lm W-1和CCT=5354 K),并在白光区域实现了(0.3359-0.32912、0.3455-0.3336)的可调色坐标,这意味着CsPbBrI2@zeolite/聚甲基丙烯酸甲酯(PMMA)有望代替传统的荧光粉获得高CRI的WLEDs。本研究提出的简便的两步封装方法为获得高质量钙钛矿提供了前景。

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