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使用3-巯基丙酸和单磷酸腺苷包覆的金纳米颗粒比色法检测高盐溶液中的汞(II)

Colorimetric detection of mercury(II) in a high-salinity solution using gold nanoparticles capped with 3-mercaptopropionate acid and adenosine monophosphate.

作者信息

Yu Cheng-Ju, Tseng Wei-Lung

机构信息

Department of Chemistry, National Sun Yat-sen University, Kaohsiung, Taiwan.

出版信息

Langmuir. 2008 Nov 4;24(21):12717-22. doi: 10.1021/la802105b. Epub 2008 Oct 8.

DOI:10.1021/la802105b
PMID:18839969
Abstract

A new colorimetric sensor for sensing Hg2+ in a high-salinity solution has been developed using gold nanoparticles (AuNPs) decorated with 3-mercaptopropionate acid (MPA) and adenosine monophosphate (AMP). Because of the high negative charge density of AMP on each AuNP surface, MPA/AMP-capped AuNPs are well dispersed in a high-salt solution. In contrast, the aggregation of MPA-capped AuNPs was induced by sodium ions, which shield the negative charges of the carboxylic groups of MPA. Through the coordination between the carboxylic group of MPA and Hg2+, the selectivity of MPA/AMP-capped AuNPs for Hg2+ in a high-salt solution is remarkably high over that of the other metals without the addition of a masking agent or a change in the temperature. We have carefully investigated the effect of the AMP concentration on the stability and sensitivity of MPA/AMP-capped AuNPs. Under optimum conditions, the lowest detectable concentration of Hg2+ using this probe was 500 nM on the basis of the measurement of the ratio of absorption at 620 nm to that at 520 nm. The sensitivity to Hg2+ can be further improved by modifying the MPA/AMP-capped AuNPs with highly fluorescent rhodamine 6G (R6G). By monitoring the fluorescence enhancement, the lowest detectable concentration of Hg2+ using R6G/MPA/AMP-capped AuNPs was 50 nM.

摘要

一种用于在高盐溶液中检测Hg2+的新型比色传感器已被开发出来,它使用了用3-巯基丙酸(MPA)和单磷酸腺苷(AMP)修饰的金纳米颗粒(AuNPs)。由于每个AuNP表面AMP的高负电荷密度,MPA/AMP包覆的AuNPs在高盐溶液中能很好地分散。相比之下,MPA包覆的AuNPs的聚集是由钠离子诱导的,钠离子屏蔽了MPA羧基的负电荷。通过MPA的羧基与Hg2+之间的配位作用,在不添加掩蔽剂或改变温度的情况下,MPA/AMP包覆的AuNPs对高盐溶液中Hg2+的选择性明显高于其他金属。我们仔细研究了AMP浓度对MPA/AMP包覆的AuNPs稳定性和灵敏度的影响。在最佳条件下,基于620nm处与520nm处吸收比的测量,使用该探针检测Hg2+的最低可检测浓度为500 nM。通过用高荧光罗丹明6G(R6G)修饰MPA/AMP包覆的AuNPs,对Hg2+的灵敏度可以进一步提高。通过监测荧光增强,使用R6G/MPA/AMP包覆的AuNPs检测Hg2+的最低可检测浓度为50 nM。

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