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原位掺杂硫的石墨相氮化碳纳米片具有增强的电致化学发光性能,用于灵敏和选择性检测 l-半胱氨酸。

In situ sulfur-doped graphitic carbon nitride nanosheets with enhanced electrogenerated chemiluminescence used for sensitive and selective sensing of l-cysteine.

机构信息

School of Chemical Sciences, University of Chinese Academy of Sciences, 19A YuQuan Road, Beijing, 100049, China.

出版信息

J Mater Chem B. 2019 Apr 14;7(14):2320-2329. doi: 10.1039/c9tb00301k. Epub 2019 Mar 7.

Abstract

In this study, in situ sulfur-doped carbon nitride nanosheets (S-g-CN NSs) are used as the signal readout for the sensitive and selective sensing of l-cysteine (l-Cys) in human serum samples based on the competitive coordination chemistry of Cu between l-Cys and S-g-CN NSs. S-g-CN NSs are prepared by using trithiocyanuric acid as a precursor for the first time, which exhibits stronger electrogenerated chemiluminescence (ECL) intensity compared with pristine graphitic carbon nitride nanosheets (g-CN NSs). The ECL signals of the S-g-CN NSs can be quenched by Cu and the subsequent presence of l-Cys can recover the ECL signals of the S-g-CN NSs. These changes are ascribed to the higher coordination ability between Cu and l-Cys than that between Cu and the S-g-CN NSs. On the basis of this, the concentration of l-Cys can be quantitatively determined. Under optimized conditions, the ECL intensity recovery shows a linear relationship with the l-Cys concentration range from 30 nM to 0.2 mM with a lower detection limit of 5 nM (S/N = 3). The proposed method is highly sensitive and selective and is thus particularly useful for fast and simple clinical diagnosis of diseases, such as Alzheimer's disease and cardiovascular disease.

摘要

在这项研究中,采用原位硫掺杂氮化碳纳米片(S-g-CN NSs)作为信号读出,基于 Cu 与 l-半胱氨酸(l-Cys)和 S-g-CN NSs 的竞争配位化学,用于灵敏和选择性检测人血清样品中的 l-Cys。S-g-CN NSs 是首次采用三聚氰胺氰尿酸作为前驱体制备的,与原始石墨相氮化碳纳米片(g-CN NSs)相比,其电致化学发光(ECL)强度更强。Cu 可以猝灭 S-g-CN NSs 的 ECL 信号,随后存在的 l-Cys 可以恢复 S-g-CN NSs 的 ECL 信号。这些变化归因于 Cu 与 l-Cys 之间的配位能力比 Cu 与 S-g-CN NSs 之间的配位能力更高。在此基础上,可以定量测定 l-Cys 的浓度。在优化条件下,ECL 强度恢复与 l-Cys 的浓度范围从 30 nM 到 0.2 mM 呈线性关系,检测限低至 5 nM(S/N = 3)。该方法具有高灵敏度和选择性,特别适用于阿尔茨海默病和心血管疾病等疾病的快速、简单的临床诊断。

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