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钙钛矿型 CsPbBr/CsPbBr 复合材料的近 unity 荧光量子产率:大规模合成、发光和形成机制以及白光发光二极管应用。

CsPbBr/CsPbBr Perovskite Composites with Near-Unity Luminescence Quantum Yield: Large-Scale Synthesis, Luminescence and Formation Mechanism, and White Light-Emitting Diode Application.

机构信息

College of Chemistry, Chemical Engineering and Materials Science , Soochow University , Suzhou 215123 , P. R. China.

Department of Physical Science , Hiroshima University , Higashihiroshima, Hiroshima 739-8526 , Japan.

出版信息

ACS Appl Mater Interfaces. 2018 May 9;10(18):15905-15912. doi: 10.1021/acsami.8b04556. Epub 2018 Apr 25.

Abstract

All-inorganic perovskites have emerged as a new class of phosphor materials owing to their outstanding optical properties. Zero-dimensional inorganic perovskites, in particular the CsPbBr-related systems, are inspiring intensive research owing to the high photoluminescence quantum yield (PLQY) and good stability. However, synthesizing such perovskites with high PLQYs through an environment-friendly, cost-effective, scalable, and high-yield approach remains challenging, and their luminescence mechanisms has been elusive. Here, we report a simple, scalable, room-temperature self-assembly strategy for the synthesis of CsPbBr/CsPbBr perovskite composites with near-unity PLQY (95%), high product yield (71%), and good stability using low-cost, low-toxicity chemicals as precursors. A broad range of experimental and theoretical characterizations suggest that the high-efficiency PL originates from CsPbBr nanocrystals well passivated by the zero-dimensional CsPbBr matrix that forms based on a dissolution-crystallization process. These findings underscore the importance in accurately identifying the phase purity of zero-dimensional perovskites by synchrotron X-ray technique to gain deep insights into the structure-property relationship. Additionally, we demonstrate that green-emitting CsPbBr/CsPbBr, combined with red-emitting KSiF:Mn, can be used for the construction of WLEDs. Our work may pave the way for the use of such composite perovskites as highly luminescent emitters in various applications such as lighting, displays, and other optoelectronic and photonic devices.

摘要

全无机钙钛矿因其出色的光学性能而成为一类新型的荧光材料。特别是零维无机钙钛矿,特别是 CsPbBr 相关体系,由于具有高光致发光量子产率(PLQY)和良好的稳定性,正激发着密集的研究。然而,通过环保、经济高效、可扩展且高产率的方法来合成具有高光致发光量子产率的此类钙钛矿仍然具有挑战性,并且其发光机制仍难以捉摸。在这里,我们报告了一种简单、可扩展、室温自组装策略,用于使用低成本、低毒性的化学物质作为前体制备具有近全 PLQY(95%)、高产物产率(71%)和良好稳定性的 CsPbBr/CsPbBr 钙钛矿复合材料。广泛的实验和理论表征表明,高效率 PL 源自通过溶解-结晶过程形成的零维 CsPbBr 基质良好钝化的 CsPbBr 纳米晶体。这些发现强调了通过同步加速器 X 射线技术准确识别零维钙钛矿的相纯度以深入了解结构-性能关系的重要性。此外,我们证明了绿色发射的 CsPbBr/CsPbBr 与红色发射的 KSiF:Mn 结合,可以用于构建 WLED。我们的工作可能为在照明、显示和其他光电和光子器件等各种应用中使用此类复合钙钛矿作为高发光发射器铺平道路。

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