Li Jiurong, Wu Yongzhong, Gong Xiao
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology Wuhan 430070 P. R. China
School of Mechanical Engineering, Suzhou University of Science and Technology Suzhou 215009 P. R. China.
Chem Sci. 2023 Mar 2;14(14):3705-3729. doi: 10.1039/d3sc00062a. eCollection 2023 Apr 5.
Traditional room temperature phosphorescence (RTP) materials usually include organometallic composites and pure organic compounds, which generally possess the disadvantages of high toxicity, high cost and complicated preparation. Carbon dots (CDs) are a new kind of luminescent material and have attracted widespread attention due to their benefits of excellent tunable emission, nice biocompatibility, cost-effectiveness, facile preparation and environmental friendliness. Since photoluminescence is an important luminescent property of carbon-based fluorescent nanomaterials, CD-based RTP materials have sparked a new research wave due to the properties of extremely long phosphorescence lifetime, large Stokes shift and high environmental sensitivity. In order to construct excellent CD-based RTP materials, many attempts have been made, and the corresponding progress has been achieved. Herein, we summarize the progress in CD-based RTP materials in recent years, mainly focusing on the outstanding contributions over the years, phosphorescence emission, phosphorescence lifetime, preparation and application of CD-based RTP materials. In particular, this review provides a comprehensive summary and analyze the outstanding contributions in the fields of the phosphorescence emission and phosphorescence lifetime of CD-based RTP materials over the years. Finally, several existing challenges and the future outlook of RTP materials based on CDs have been put forward.
传统的室温磷光(RTP)材料通常包括有机金属复合材料和纯有机化合物,这些材料一般具有高毒性、高成本和制备复杂的缺点。碳点(CDs)是一种新型发光材料,因其具有出色的发射可调性、良好的生物相容性、成本效益高、制备简便和环境友好等优点而受到广泛关注。由于光致发光是碳基荧光纳米材料的一种重要发光特性,基于CDs的RTP材料因其具有极长的磷光寿命、大斯托克斯位移和高环境敏感性等特性而引发了新的研究热潮。为了构建优异的基于CDs的RTP材料,人们进行了许多尝试,并取得了相应的进展。在此,我们总结了近年来基于CDs的RTP材料的研究进展,主要聚焦于多年来的突出贡献、基于CDs的RTP材料的磷光发射、磷光寿命、制备及应用。特别是,本综述全面总结并分析了多年来基于CDs的RTP材料在磷光发射和磷光寿命领域的突出贡献。最后,提出了基于CDs的RTP材料目前存在的几个挑战以及未来展望。