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关断-开启化学发光法测定氰化物

Turn-off-on chemiluminescence determination of cyanide.

作者信息

Han Suqin, Wang Jianbo, Jia Shize

机构信息

School of Chemistry and Material Science, Shanxi Normal University, Linfen, 041004, Shanxi, People's Republic of China.

出版信息

Luminescence. 2015 Feb;30(1):38-43. doi: 10.1002/bio.2687. Epub 2014 May 8.

Abstract

A flow injection chemiluminescence (FI-CL) method was developed for the determination of cyanide (CN(-) ) based on the recovered CL signal by Cu(2+) inhibiting a glutathione (GSH)-capped CdTe quantum dot (QD) and hydrogen peroxide system. In an alkaline medium, strong CL signals were observed from the reaction of CdTe QDs and H2O2 , and addition of Cu(2+) could cause significant CL inhibition of the CdTe QDs-H2O2 system. In the presence of CN(-) , Cu(2+) can be removed from the surface of CdTe QDs via the formation of particularly stable Cu(CN)n species, and the CL signal of the CdTe QDs-H2O2 system was efficiently recovered. Thus, the CL signals of CdTe QDs-H2O2 system were turned off and turned on by the addition of Cu(2+) and CN(-) , respectively. Further, the results showed that among the tested ions, only CN(-) could recover the CL signal, which suggested that the CdTe QDs-H2O2 -Cu(2+) CL system had highly selectivity for CN(-) . Under optimum conditions, the CL intensity and the concentration of CN(-) show a good linear relationship in the range 0.0-650.0 ng/mL (R(2)  = 0.9996). The limit of detection for CN(-) was 6.0 ng/mL (3σ). This method has been applied to detect CN(-) in river water and industrial wastewater with satisfactory results.

摘要

基于铜离子(Cu(2+))抑制谷胱甘肽(GSH)包覆的碲化镉量子点(QD)与过氧化氢体系所恢复的化学发光(CL)信号,开发了一种流动注射化学发光(FI-CL)法用于测定氰化物(CN(-))。在碱性介质中,碲化镉量子点与过氧化氢反应可观察到强烈的CL信号,加入Cu(2+)会导致碲化镉量子点-过氧化氢体系的CL显著抑制。在CN(-)存在的情况下,Cu(2+)可通过形成特别稳定的Cu(CN)n物种从碲化镉量子点表面去除,碲化镉量子点-过氧化氢体系的CL信号得以有效恢复。因此,分别加入Cu(2+)和CN(-)可使碲化镉量子点-过氧化氢体系的CL信号关闭和开启。此外,结果表明在所测试的离子中,只有CN(-)能恢复CL信号,这表明碲化镉量子点-过氧化氢-Cu(2+) CL体系对CN(-)具有高度选择性。在最佳条件下,CL强度与CN(-)浓度在0.0 - 650.0 ng/mL范围内呈现良好的线性关系(R(2) = 0.9996)。CN(-)的检测限为6.0 ng/mL(3σ)。该方法已应用于河水和工业废水中CN(-)的检测,结果令人满意。

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