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Co(II)和 g-CN 的双重修饰策略用于 CuS,可高效比色测定日常化妆品中的巯基乙酸。

Dual-modification strategy of Co(II) and g-CN to CuS for efficient colorimetric determination of thioglycolic acid in daily cosmetics.

机构信息

Key Laboratory of Jiangxi Province for Persistent Pollutants Control and Resources Recycle, Nanchang Hangkong University, Nanchang, 330063, People's Republic of China.

National-Local Joint Engineering Research Center of Heavy Metals Pollutants Control and Resource Utilization, Nanchang Hangkong University, Nanchang, 330063, People's Republic of China.

出版信息

Mikrochim Acta. 2023 Mar 15;190(4):137. doi: 10.1007/s00604-023-05721-2.

Abstract

A conventional colorimetric method based on CuS-catalyzed HO is improved by a dual-modification strategy and employed for thioglycolic acid (TGA) determination. The doping of Co(II) can enhance ion exchange efficiency. Meanwhile, the modification of g-CN can increase specific surface area and decrease unspecific aggregation. The constructed g-CN/Co-CuS nanocomposite exhibited a favorable catalytic feature. A Michaelis constant (K) value of 0.02 mM has been achieved, which is 1/160 of those of CuS and horseradish peroxidase (HRP). The g-CN/Co-CuS displays a rapid color response in 3 min and resulted in a stable measurable signal within 10 min. In the determination procedure, the sulfhydryl contained in TGA is capable of preventing TMB oxidation via competing the ·OH produced by catalysis and caused a color distinction that is related to the TGA amount. The distinctions of absorbance (λ = 652 nm) of different concentrations of TGA are recorded. Linearity is obtained in the ranges of 2.5 - 20 µM and 20 - 160 µM, and the LOD is 0.14 µM. In the real sample assays of perm agent and Qianhu lake water, the recoveries were 96.70 - 106.84% and 100.21 - 101.90%, respectively. This demonstrates that the proposed dual-modification strategy for CuS contributes to highly efficient and convenient determination of TGA in daily cosmetics and water analysis.

摘要

一种基于 CuS 催化 HO 的传统比色法通过双修饰策略得到改进,并用于巯基乙酸 (TGA) 的测定。Co(II)的掺杂可以提高离子交换效率。同时,g-CN 的修饰可以增加比表面积并减少非特异性聚集。构建的 g-CN/Co-CuS 纳米复合材料表现出良好的催化特性。米氏常数 (K) 值为 0.02 mM,是 CuS 和辣根过氧化物酶 (HRP) 的 1/160。g-CN/Co-CuS 在 3 分钟内呈现快速的颜色响应,并在 10 分钟内产生稳定的可测量信号。在测定过程中,TGA 中含有的巯基能够通过与催化产生的·OH 竞争来阻止 TMB 的氧化,从而导致与 TGA 量有关的颜色区别。记录不同浓度 TGA 的吸光度 (λ=652nm) 的差异。在 2.5-20µM 和 20-160µM 的范围内得到线性关系,LOD 为 0.14µM。在烫发剂和千岛湖水样的实际样品测定中,回收率分别为 96.70%-106.84%和 100.21%-101.90%。这表明,CuS 的这种双修饰策略有助于在日常化妆品和水质分析中高效、方便地测定 TGA。

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