Zhao Lei, Zhang Dong, Wang Xin, Li Yang, Li Zihan, Wei Hua, Yao Boxuan, Ding Gongtao, Wang Zifan
Key Laboratory of Biotechnology and Bioengineering of State Ethnic Affairs Commission, Biomedical Research Center, Northwest Minzu University, Lanzhou 730030, China.
School of Chemical Engineering, Northwest Minzu University, Lanzhou 730030, China.
Molecules. 2023 Aug 7;28(15):5917. doi: 10.3390/molecules28155917.
The emergence and fast development of carbon dots (CDs) provide an unprecedented opportunity for applications in the field of photoelectricity, but their practicability still suffers from complicated synthesis procedures and the substrate dependence of solid-state fluorescence. In this study, we design a unique microwave-assisted solid-phase synthesis route for preparing tunable fluorescent CD powders with yellow, orange, and red fluorescence (Y-CDs, O-CDs, R-CDs) by simply adjusting the mass ratio of reactants, a method which is suitable for the large-scale synthesis of CDs. The Y-/O-/R-CDs were systematically characterized using physics and spectroscopy techniques. Based on the perfect solid-state fluorescence performance of the proposed fluorescent CD powders, the Y-/O-/R-CDs were successfully applied for the construction of multi-color and white light-emitting diode devices at low cost. Furthermore, the Y-CDs displayed much higher yield and luminous efficiency than the O-CDs and R-CDs and were further used for fingerprint identification on the surfaces of glass sheets and tinfoil. In addition, the R-CD aqueous solution fluorescence is sensitive to pH, suggesting its use as a pH indicator for monitoring intracellular pH fluctuations. The proposed series of fluorescent powders composed of CDs may herald a new era in the application of optical components and criminal investigation fields.
碳点(CDs)的出现和快速发展为光电领域的应用提供了前所未有的机遇,但其实用性仍受限于复杂的合成程序以及固态荧光对基质的依赖性。在本研究中,我们设计了一种独特的微波辅助固相合成路线,通过简单调整反应物的质量比来制备具有黄色、橙色和红色荧光的可调谐荧光CD粉末(Y-CDs、O-CDs、R-CDs),该方法适用于CDs的大规模合成。利用物理和光谱技术对Y-/O-/R-CDs进行了系统表征。基于所提出的荧光CD粉末优异的固态荧光性能,Y-/O-/R-CDs成功地用于低成本构建多色和白色发光二极管器件。此外,Y-CDs的产率和发光效率比O-CDs和R-CDs高得多,并进一步用于玻璃板和锡纸表面的指纹识别。此外,R-CD水溶液荧光对pH敏感,表明其可作为监测细胞内pH波动的pH指示剂。所提出的由CDs组成的一系列荧光粉末可能预示着光学元件应用和刑事侦查领域的新时代。
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