焦莉, 黄立漳, 蒋淑恋, 刘佳铭, 张丽红, 郑志勇. 非聚集金纳米棒比色传感器测定半胱氨酸[J]. 分析测试技术与仪器, 2013, 19(1): 17-23.
引用本文: 焦莉, 黄立漳, 蒋淑恋, 刘佳铭, 张丽红, 郑志勇. 非聚集金纳米棒比色传感器测定半胱氨酸[J]. 分析测试技术与仪器, 2013, 19(1): 17-23.
JIAO Li, HUANG Li-zhang, JIANG Shu-lian, LIU Jia-ming, ZHANG Li-Hong, ZGENG Zhi-Yong. Non-Aggregation Gold Nanorods Colorimetric Sensor for Detection of Cysteine[J]. Analysis and Testing Technology and Instruments, 2013, 19(1): 17-23.
Citation: JIAO Li, HUANG Li-zhang, JIANG Shu-lian, LIU Jia-ming, ZHANG Li-Hong, ZGENG Zhi-Yong. Non-Aggregation Gold Nanorods Colorimetric Sensor for Detection of Cysteine[J]. Analysis and Testing Technology and Instruments, 2013, 19(1): 17-23.

非聚集金纳米棒比色传感器测定半胱氨酸

Non-Aggregation Gold Nanorods Colorimetric Sensor for Detection of Cysteine

  • 摘要: 基于半胱氨酸(Cys)中的–SH与Hg2+配合生成稳定的Hg(Cys)2,有效抑制抗坏血酸(Vc)还原Hg2+生成Hg0,进而抑制Hg0与金纳米棒(AuNRs)纵向部位的Au作用而生成金汞齐,导致AuNRs的纵向等离子体共振(Longitudinal surface plasmon resonance,LSPR)吸收峰红移,相应的吸光度(A)增大,并且伴随着溶液颜色的显著变化,同时随着Cys浓度的增大,吸光度A也逐渐增大,据此建立了一种快速

     

    Abstract: The strong coordination of hydrosulfide groups (–SH) in cysteine (Cys) with Hg2+ results in a stable Hg(Cys)2 complex, which inhibits vitamine C (Vc) to reduce Hg2+ to form Hg0 and further inhibits the reaction between Hg0 and Au at the tips of gold nanorods (AuNRs) to form gold amalgamation (AuHg2(L)). As a result, the longitudinal surface plasmon resonance (LSPR) peak of Au NRs red shifts and the corresponding absorbance (A) increass along with a rapid color change from red to blue. Simultaneously, A was gradually enlarges with the increase of Cys content. Bearing this in mind, a quick, sensitive and simple non-aggregation AuNRs colorimetric sensor for the determination of Cys has been established. Under optimized experimental conditions, the developed colorimetric sensor gave a linear range of 0.050~3.0 μmol/L with a limit of quantization (LOQ) of 0.030 μmol/L. The proposed colorimetric sensor has been successfully applied to the determination of Cys in human urine samples, the results agreed well with those obtained by inductively coupled plasma-mass spectroscopy (ICP-MS). Furthermore, the sensing mechanism for the determination of Cys is also discussed.

     

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