发光
全色胶片
碳纤维
材料科学
曲面(拓扑)
纳米技术
光电子学
遥感
多光谱图像
地质学
数学
几何学
复合数
复合材料
作者
Hangzhen Zhang,Jiafan Bai,Hao Chen,Linyu Wang,Wenzhen Peng,Yuancong Zhao,Jie Weng,Wei Zhi,Jianxin Wang
标识
DOI:10.1016/j.jcis.2024.08.073
摘要
Carbon dots have shown a broad application prospect in the fields of sensing and detection, biological imaging, and optoelectronic devices. However, it is still challenging to adopt a simple and green synthesis route and to develop new precursor systems to prepare full-color luminescent carbon dots. This study proposes a mechanism for fine regulation of carbon dot fluorescence spectra based on surface states of CN, COC, and OH, among which CN play a major role in long wavelength emission while COC and OH are responsible for the blue shift of emission wavelength. Using 4,4-bipyridine and p-phenylenediamine as precursors in safe and environmentally friendly glycol and water as solvents for the first time, the fine spectral carbon dots with full spectrum luminescence from purple (441 nm) to red (627 nm) were successfully synthesized by simply changing the composition of the reaction solvent and using a short reaction time. Compared with other reports on regulating polychromatic carbon dots, our method is more refined and has a wider distribution of luminescent colors. In addition, the obtained carbon dots based on such surface state luminescence mechanism have shown good application prospects in specific detection of Fe
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