Bao Haili, Liu Yihao, Li He, Qi Wenxin, Sun Keyan
Department of General Surgery, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, 200025, China.
Beijing University of Chemical Technology, Beijing, China.
Heliyon. 2023 Sep 20;9(10):e20317. doi: 10.1016/j.heliyon.2023.e20317. eCollection 2023 Oct.
Similar to fullerenes, carbon nanotubes and graphene, carbon dots (CDs) are causing a lot of research work in their own right. CDs are a type of surface-passivated quantum dot that contain carbon atoms. Their distinctive characteristics, such as luminescent emission that varies with size and wavelength, resistance to photobleaching, easy biological binding, lack of toxicity, and economical production without the need for intricate synthetic processes, have led to a noteworthy surge in attention within the research community. Different techniques can be utilized to create these CDs, spanning from basic candle burning to laser ablation. This review article delves into the principles of fluorescence technology, providing insights into how different synthesis methods of quantum dots impact their luminescent properties. Additionally, it highlights the latest applications of quantum dots in catalysis and biomedical fields, with special emphasis on the current status of luminescent properties in biology and chemistry. Towards the end, the article discusses the limitations of quantum dots in current practical applications, pointing out that CDs hold promising potential for future applications.
与富勒烯、碳纳米管和石墨烯类似,碳点自身也引发了大量的研究工作。碳点是一种表面钝化的量子点,含有碳原子。它们具有独特的特性,如发光发射随尺寸和波长而变化、抗光漂白、易于生物结合、无毒且无需复杂的合成工艺即可经济生产,这些特性已导致研究界对其关注度显著飙升。可以采用不同技术来制备这些碳点,从基本的蜡烛燃烧到激光烧蚀。这篇综述文章深入探讨了荧光技术的原理,深入了解量子点的不同合成方法如何影响其发光特性。此外,文章突出了量子点在催化和生物医学领域的最新应用,特别强调了其在生物学和化学中发光特性的现状。文章结尾讨论了量子点在当前实际应用中的局限性,指出碳点在未来应用中具有广阔的潜力。