Shi Yuxin, Su Wen, Yuan Fanglong, Yuan Ting, Song Xianzhi, Han Yuyi, Wei Shuyan, Zhang Yang, Li Yunchao, Li Xiaohong, Fan Louzhen
Key Laboratory of Theoretical & Computational Photochemistry of Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, 100875, China.
CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, 100190, China.
Adv Mater. 2023 Nov;35(44):e2210699. doi: 10.1002/adma.202210699. Epub 2023 Jul 23.
Carbon dots (CDs), as emerging carbon nanomaterials, have been regarded as promising alternatives for electroluminescent light-emitting diodes (LEDs) owing to their distinct characteristics, such as low toxicity, tuneable photoluminescence, and good photostability. In the last few years, despite remarkable progress achieved in CD-based LEDs, their device performance is still inferior to that of well-developed organic, heavy-metal-based QDs, and perovskite LEDs. To better exploit LED applications and boost device performance, in this review, a comprehensive overview of currently explored CDs is presented, focusing on their key optical characteristics, which are closely related to the structural design of CDs from their carbon core to surface modifications, and to macroscopic structural engineering, including the embedding of CDs in the matrix or spatial arrangement of CDs. The design of CD-based LEDs for display and lighting applications based on the fluorescence, phosphorescence, and delayed fluorescence emission of CDs is also highlighted. Finally, it is concluded with a discussion regarding the key challenges and plausible prospects in this field. It is hoped that this review inspires more extensive research on CDs from a new perspective and promotes practical applications of CD-based LEDs in multiple directions of current and future research.
碳点(CDs)作为新兴的碳纳米材料,因其独特的特性,如低毒性、可调节的光致发光和良好的光稳定性,被视为电致发光发光二极管(LEDs)的有前途的替代品。在过去几年中,尽管基于碳点的发光二极管取得了显著进展,但其器件性能仍低于成熟的有机、重金属基量子点和钙钛矿发光二极管。为了更好地开发发光二极管应用并提高器件性能,在本综述中,对目前探索的碳点进行了全面概述,重点关注其关键光学特性,这些特性与碳点从碳核到表面修饰的结构设计以及宏观结构工程密切相关,包括将碳点嵌入基质或碳点的空间排列。还强调了基于碳点的荧光、磷光和延迟荧光发射用于显示和照明应用的发光二极管的设计。最后,对该领域的关键挑战和合理前景进行了讨论并得出结论。希望本综述能从新的角度激发对碳点更广泛的研究,并推动基于碳点的发光二极管在当前和未来研究的多个方向上的实际应用。