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基于碳点材料的长寿命动态室温磷光

Long-Lived Dynamic Room Temperature Phosphorescence from Carbon Dots Based Materials.

作者信息

Wang Kaiti, Qu Lunjun, Yang Chaolong

机构信息

School of Materials Science and Engineering, Chongqing University of Technology, Chongqing, 400054, China.

出版信息

Small. 2023 Aug;19(31):e2206429. doi: 10.1002/smll.202206429. Epub 2023 Jan 6.

Abstract

As a type of room temperature phosphorescence (RTP) material, carbon dots (CDs) always show short lifetime and low phosphorescence efficiency. To counter these disadvantages, several strategies, such as embedding in rigid matrix, introducing of heteroatom, crosslink-enhanced emission, etc., are well developed. Consequently, lots of CDs-based RTP materials are obtained. Doping of CDs into various matrix is the dominant method for preparation of long-lived CDs-based RTP materials so far. The desired CDs@matrix composites always display outstanding RTP performances. Meanwhile, matrix-free CDs and carbonized polymer dots-based RTP materials are also widely developed. Amounts of CDs possessing ultra-long lived, multiple colored, and dynamic RTP emission are successfully obtained. Herein, the recent progress achieved in CDs-based RTP materials as well as the corresponding efficient strategies and emission mechanisms are summarized and reviewed in detail. Due to CDs-based RTP materials possess excellent chemical stability, photostability and low biological toxicity, they exhibit great application potential in the fields of anti-counterfeiting, data encryption, and biological monitoring. The application of the CDs-based RTP materials is also introduced in this review. As a promising functional material, development of long wavelength RTP emitting CDs with long lifetime is still challengeable, especially for the red and near-infrared emitting RTP materials.

摘要

作为一种室温磷光(RTP)材料,碳点(CDs)总是表现出短寿命和低磷光效率。为了克服这些缺点,人们开发了几种策略,如嵌入刚性基质、引入杂原子、交联增强发射等。因此,获得了许多基于碳点的RTP材料。将碳点掺杂到各种基质中是目前制备长寿命碳点基RTP材料的主要方法。理想的碳点@基质复合材料总是表现出优异的RTP性能。同时,无基质碳点和基于碳化聚合物点的RTP材料也得到了广泛的开发。成功获得了大量具有超长寿命、多种颜色和动态RTP发射的碳点。在此,详细总结和综述了基于碳点的RTP材料的最新进展以及相应的有效策略和发射机制。由于基于碳点的RTP材料具有优异的化学稳定性、光稳定性和低生物毒性,它们在防伪、数据加密和生物监测等领域展现出巨大的应用潜力。本综述还介绍了基于碳点的RTP材料的应用。作为一种有前途的功能材料,开发具有长寿命的长波长RTP发射碳点仍然具有挑战性,特别是对于红色和近红外发射的RTP材料。

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