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Investigating fluorescence quenching of cysteine-functionalized carbon quantum dots by heavy metal ions: Experimental and QSPR studies

机译:用重金属离子研究半胱氨酸官能化碳量子点的荧光猝灭:实验性和QSPR研究

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Carbon quantum dots (CQDs) have potential application as fluorescent probes for the heavy metal detection. But there are few reports on the investigation of the quenching mechanism of CQDs by heavy metal ions. In this study, CQDs were prepared by directly pyrolyzing turmeric powder and functionalized using the thiol functionality of cysteine. Then the fluorescence quenching of cysteine-functionalized CQDs (Cys-CQDs) by 25 heavy metal ions were experimentally measured. Then the effect of the physical and chemical properties of heavy metal ions on the fluorescence quenching of CQDs was investigated by using the quantitative structure-property relationship (QSPR) method. Applying different machine learning method including genetic algorithm, enhanced replacement method, support vector machine, and multi linear regression, some reliable and predictive models were developed. Based on the variables included in the final QSPR model, covalent interactions of metal ions with functional groups on CQDs surface and the atomic environment were significant effect on the quenching of CQDs by heavy metal ions. Briefly, the tendency of metal ion to accept electrons from a donor ligand and the hard and soft acids and bases affinities can be considered as a primary factor governing the mechanism of quenching of CQDs by heavy metal ions. (C) 2021 Elsevier B.V. All rights reserved.
机译:碳量子点(CQD)作为重金属检测的荧光探针具有潜在的应用前景。但关于重金属离子对CQDs猝灭机理的研究报道较少。在本研究中,通过直接热解姜黄粉制备CQD,并使用半胱氨酸的巯基官能团进行功能化。实验测定了25种重金属离子对半胱氨酸功能化CQDs(Cys-CQDs)的荧光猝灭作用。然后利用定量结构-性质关系(QSPR)方法研究了重金属离子的理化性质对CQDs荧光猝灭的影响。应用不同的机器学习方法,包括遗传算法、增强替换法、支持向量机和多元线性回归,建立了一些可靠的预测模型。基于最终QSPR模型中包含的变量,金属离子与CQDs表面官能团和原子环境的共价相互作用对重金属离子对CQDs的猝灭有显著影响。简言之,金属离子接受来自施主配体的电子的倾向以及硬和软酸碱亲和力可以被认为是控制重金属离子猝灭CQD机制的主要因素。(c)2021爱思唯尔B.V.保留所有权利。

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