Chen De Xing, Long Yun Fei
Hunan University of Science and Technology, Hunan Provincial Key Laboratory of Controllable Preparation and Functional Application of Fine Polymers, Key Laboratory of Theoretical Organic Chemistry and Function Molecule, Ministry of Education, Hunan Provincial Key Laboratory of Advanced Materials for New Energy Storage and Conversion, School of Chemistry and Chemical Engineering, Xiangtan, 411201, P.R. China.
J Fluoresc. 2024 Nov 22. doi: 10.1007/s10895-024-04033-9.
The copper nanoclusters (CuNCs) have been garnered significant attention owing to their low cost raw materials, outstanding optical properties, environmental friendliness and good biocompatibility. In this study, copper nanoclusters stabilized by Acid Chromic Blue K (ACBK-CuNCs) were synthesized. The optimal excitation wavelength of the synthesized ACBK-CuNCs is 344 nm and the optimal emission wavelength is 460 nm. Its fluorescence intensity can be retained for more than two weeks, which indicated that the antioxidant capacity of the synthesized ACBK-CuNCs is strong. It was noted that the fluorescence intensities of the synthesized ACBK-CuNCs significantly increased with the decrease of pH. There are good linear correlation between the fluorescence intensity ratio of the system to the fluorescence intensity of the original solution (F/F) and the pH of the medium. Based on this finding, a method for fluorescence analysis to detect the pH of solution was developed. Additionally, it was discovered that the fluorescence intensity of CuNCs could be quenched efficiently by Berberine hydrochloride (BH), and there is a favorable linear relationship between the change value of fluorescence intensity of CuNCs ((F - F) / F) and the concentration of BH. This gave rise to the establishment of a fluorescence analysis method for determining the concentration of BH. Simultaneously, visual quantitative detection for BH and pH was achieved based on smartphones and colorimetric analysis software using ACBK-CuNCs as the fluorescent probes.
铜纳米簇(CuNCs)因其原材料成本低、优异的光学性能、环境友好性和良好的生物相容性而备受关注。在本研究中,合成了由酸性铬蓝K稳定的铜纳米簇(ACBK-CuNCs)。合成的ACBK-CuNCs的最佳激发波长为344nm,最佳发射波长为460nm。其荧光强度可保持两周以上,这表明合成的ACBK-CuNCs的抗氧化能力较强。值得注意的是,合成的ACBK-CuNCs的荧光强度随着pH值的降低而显著增加。体系荧光强度与原溶液荧光强度之比(F/F)与介质pH值之间具有良好的线性相关性。基于这一发现,建立了一种检测溶液pH值的荧光分析方法。此外,发现盐酸小檗碱(BH)能有效猝灭CuNCs的荧光强度,CuNCs荧光强度变化值((F - F)/F)与BH浓度之间具有良好的线性关系。由此建立了一种测定BH浓度的荧光分析方法。同时,以ACBK-CuNCs为荧光探针,基于智能手机和比色分析软件实现了对BH和pH的可视化定量检测。