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利用 6-巯基烟酸和 L-半胱氨酸共功能化的金纳米粒子比色法检测 Cd2+。

Colorimetric detection of Cd2+ using gold nanoparticles cofunctionalized with 6-mercaptonicotinic acid and L-cysteine.

机构信息

College of Chemistry and Chemical Engineering, Graduate University of Chinese Academy of Sciences, 19A YuQuan Road, 100049 Beijing, China.

出版信息

Analyst. 2011 Sep 21;136(18):3725-30. doi: 10.1039/c1an15238f. Epub 2011 Aug 1.

Abstract

We have developed a colorimetric assay for the highly sensitive and selective detection of Cd(2+) using gold nanoparticles (AuNPs) cofunctionalized with 6-mercaptonicotinic acid (MNA) and L-Cysteine (L-Cys) through the formation of an Au-S bond. In the presence of Cd(2+), the aggregation of functionalized AuNPs occurred by means of a metal-ligand interaction that led to visible color changes. Most importantly, cofunctionalized AuNPs had better responses for Cd(2+) than that functionalized by either MNA or L-Cys. Cd(2+) could be detected by the colorimetric response of AuNPs that could be detected by the naked eye or a UV-vis spectrophotometer. The absorbance ratio (A(620)/A(523)) was linear with the Cd(2+) concentration in the range of 2.0 × 10(-7) to 1.7 × 10(-6) M. Under optimum conditions (2.0 × 10(-5) M MNA, 2.0 × 10(-6) M L-Cys and 0.020 M NaCl at pH 10.0), the detection limit (3σ) of Cd(2+) could be as low as 1.0 × 10(-7) M. Interference experiments showed that Pb(2+) and Cu(2+) caused a slight interference for Cd(2+) determination while other metal ions caused no interference. The proposed method was successfully applied to determine the concentration of Cd(2+) in environmental samples (lake water).

摘要

我们开发了一种比色法来高度灵敏和选择性地检测 Cd(2+),使用的是通过 Au-S 键形成共功能化的金纳米粒子 (AuNPs),其共功能化试剂是 6-巯基烟酸 (MNA) 和 L-半胱氨酸 (L-Cys)。在存在 Cd(2+)的情况下,通过金属配体相互作用导致功能化 AuNPs 的聚集,从而导致可见的颜色变化。最重要的是,共功能化的 AuNPs 对 Cd(2+)的响应优于仅用 MNA 或 L-Cys 功能化的 AuNPs。Cd(2+)可以通过 AuNPs 的比色响应来检测,这种响应可以用肉眼或紫外-可见分光光度计检测。吸光度比 (A(620)/A(523)) 与 2.0×10(-7)至 1.7×10(-6) M 范围内的 Cd(2+)浓度呈线性关系。在最佳条件下(2.0×10(-5) M MNA、2.0×10(-6) M L-Cys 和 0.020 M NaCl,pH 10.0),Cd(2+)的检测限 (3σ) 可以低至 1.0×10(-7) M。干扰实验表明,Pb(2+)和 Cu(2+)对 Cd(2+)的测定略有干扰,而其他金属离子则没有干扰。该方法成功地应用于环境样品(湖水)中 Cd(2+)浓度的测定。

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