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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Water-stable all-inorganic CsPb1-XSnXBr2I perovskite quantum dots encapsulated in paraffin for white light-emitting diodes
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Water-stable all-inorganic CsPb1-XSnXBr2I perovskite quantum dots encapsulated in paraffin for white light-emitting diodes

机译:水稳态全无机CSPB1-XSNXBR2I钙钛矿量子点封装在石蜡中的白光发光二极管

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摘要

All-inorganic perovskite quantum dots (QDs) have become a hot material in the field of photoelectricity due to their excellent properties, such as high photoluminescence quantum yields (PLQYs), narrow emission wavelengths, and easily controlled PL spectra and particle sizes. However, colloidal perovskite QDs are readily oxidized, degraded in a humid environment, and generated by ion exchange. Here, the CsPb1-XSnXBr2I QDs were synthesized successfully, which the Sn2+ ions partly replacing Pb2+ to reduce the toxicity of Pb-based perovskite. The tunable PL spectrum and band gap from 2.27 to 2.14 eV were obtained by adjusting the Sn content. Meanwhile, we adopted a simple, green and low-cost approach to encapsulated CsPb1-XSnXBr2I QDs within solid paraffin, which not only greatly improved the water stability of QDs, but also maintained outstanding luminous intensity after being immersed in water for 20 days. Finally, the while light-emitting diodes (WLEDs) with varying correlated color temperature (CCT), color rendering index (CRI) and luminous efficiency (LE) based on a combination of blue chip, P-CsPb1-XSnXBr2I QDs and red phosphor were successfully achieved. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于其优异的性能,例如高光致发光量子产量(PLQYS),窄发射波长和易于控制的PL光谱和粒径,全无机钙钛矿量子点(QDS)已经成为光电领域的热材料。然而,胶体钙钛矿QDS易于氧化,在潮湿环境中降解,并通过离子交换产生。这里,CSPB1-XSNXBR2I QD成功合成,SN2 +离子部分替代PB2 +以降低Pb的钙钛矿的毒性。通过调节SN含量获得可调谐的PL光谱和带隙,从2.27到2.14eV获得。同时,我们采用了一种简单,绿色和低成本的方法来封装在固体石蜡中的CSPB1-XSNXBR2I QDS,这不仅大大提高了QD的水稳定性,而且在浸入水中浸泡20天后也保持出色的发光强度。最后,基于蓝色芯片,P-CSPB1-XSNXBR2I QD和红磷光体的组合,具有不同相关的色温(CCT),显色指数(CRI)和发光效率(LE)的虽然发光二极管(CCT),颜色渲染指数(CRI)和发光效率(LE)成功实现。 (c)2019 Elsevier B.v.保留所有权利。

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