Ran Zhun, Liu Jinkun, Zhuang Jianle, Liu Yingliang, Hu Chaofan
Key Laboratory for Biobased Materials and Energy of Ministry of Education/Guangdong Provincial Engineering Technology Research Center for Optical Agriculture, College of Materials and Energy, South China Agricultural University, Guangzhou, 510642, P. R. China.
Small Methods. 2024 Jan;8(1):e2301013. doi: 10.1002/smtd.202301013. Epub 2023 Oct 27.
Carbon dots (CDs), as emerging long afterglow luminescent material, have attracted the attention of researchers and become one of the hot topics in long afterglow materials. In recent years, researchers have obtained a series of CDs-based long afterglow materials with different properties utilizing matrix-assisted and self-protective methods. To meet diverse application needs, the development of multicolor CDs-based long afterglow materials is a focus and challenge in this field. Most of the previously reported CDs-based long afterglow materials generally emit blue or green afterglow. Recently, some multicolor systems have been discovered, and the emission range can extend from ultraviolet to near-infrared. However, there is a lack of systematic and in-depth analysis regarding the preparation strategy and luminescence mechanism of multicolor afterglow from CDs-based long afterglow materials. Based on this, this review summarizes the preparation strategies of multicolor afterglow from raw materials and reaction parameters. Then, the luminescence mechanisms of multicolor afterglow are analyzed from seven factors, including carbonization degree, surface state, aggregation degree, temperature dependence, excitation dependence, multi-emission center, and energy transfer. Moreover, the applications of multicolor afterglow from CDs-based long afterglow materials are introduced. Finally, the problems and challenges in this field are discussed, and the future development directions are analyzed.
碳点(CDs)作为一种新兴的长余辉发光材料,已引起研究人员的关注,并成为长余辉材料领域的热点话题之一。近年来,研究人员利用基质辅助和自我保护方法获得了一系列具有不同性质的基于碳点的长余辉材料。为满足多样化的应用需求,开发基于碳点的多色长余辉材料是该领域的一个重点和挑战。此前报道的大多数基于碳点的长余辉材料通常发出蓝色或绿色余辉。最近,发现了一些多色体系,其发射范围可从紫外延伸至近红外。然而,对于基于碳点的长余辉材料多色余辉的制备策略和发光机制缺乏系统深入的分析。基于此,本综述总结了从原料和反应参数制备多色余辉的策略。然后,从碳化程度、表面状态、聚集程度、温度依赖性、激发依赖性、多发射中心和能量转移等七个因素分析了多色余辉的发光机制。此外,还介绍了基于碳点的长余辉材料多色余辉的应用。最后,讨论了该领域存在的问题和挑战,并分析了未来的发展方向。