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YAG:Ce 荧光粉:从用于普通照明的微米级主力产品到纳米级的光明未来。

YAG:Ce Phosphor: From Micron-Sized Workhorse for General Lighting to a Bright Future on the Nanoscale.

作者信息

Berends Anne C, van de Haar Marie Anne, Krames Michael R

机构信息

Seaborough Research BV, Matrix VII Innovation Center, Science Park 106, 1098 XG Amsterdam, The Netherlands.

Arkesso LLC, 2625 Middlefield Road, No. 687, Palo Alto, California 94306, United States.

出版信息

Chem Rev. 2020 Dec 23;120(24):13461-13479. doi: 10.1021/acs.chemrev.0c00618. Epub 2020 Nov 9.

Abstract

The renowned yellow phosphor yttrium aluminum garnet (YAG) doped with trivalent cerium has found its way into applications in many forms: as powder of micron sized crystals, as a ceramic, and even as a single crystal. However, additional technological advancement requires providing this material in new form factors, especially in terms of particle size. Where many materials have been developed on the nanoscale with excellent optical properties (e.g., semiconductor quantum dots, perovskite nanocrystals, and rare earth doped phosphors), it is surprising that the development of nanocrystalline YAG:Ce is not as mature as for these other materials. Control over size and shape is still in its infancy, and optical properties are not yet at the same level as other materials on the nanoscale, even though YAG:Ce microcrystalline materials exceed the performance of most other materials. This review highlights developments in synthesis methods and mechanisms and gives an overview of the state of the art morphologies, particle sizes, and optical properties of YAG:Ce on the nanoscale.

摘要

著名的掺有三价铈的黄色荧光粉钇铝石榴石(YAG)已在多种形式的应用中得到应用:作为微米级晶体粉末、作为陶瓷,甚至作为单晶。然而,进一步的技术进步需要以新的形态提供这种材料,特别是在粒径方面。尽管许多材料已在纳米尺度上得到开发并具有优异的光学性能(例如半导体量子点、钙钛矿纳米晶体和稀土掺杂荧光粉),但令人惊讶的是,纳米晶YAG:Ce的开发不如其他材料成熟。对尺寸和形状的控制仍处于起步阶段,并且光学性能尚未达到纳米尺度上其他材料的水平,尽管YAG:Ce微晶材料的性能超过了大多数其他材料。本综述重点介绍了合成方法和机理的进展,并概述了纳米尺度上YAG:Ce的现有形态、粒径和光学性能。

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