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一种基于功能化金纳米粒子和罗丹明6G的荧光传感器,用于高灵敏、选择性地检测环境水样中的汞(II)。

A functionalized gold nanoparticles and Rhodamine 6G based fluorescent sensor for high sensitive and selective detection of mercury(II) in environmental water samples.

作者信息

Chen Jinlong, Zheng AiFang, Chen AiHong, Gao Yingchun, He Chiyang, Kai Xiaoming, Wu Genhua, Chen Youcun

机构信息

School of Chemistry & Chemical Engineering, Anhui Key Laboratory of Functional Molecule, Anqing Normal College, Anqing 246003, PR China.

出版信息

Anal Chim Acta. 2007 Sep 5;599(1):134-42. doi: 10.1016/j.aca.2007.07.074. Epub 2007 Aug 6.

Abstract

A gold-nanoparticles (Au NPs)-Rhodamine 6G (Rh6G) based fluorescent sensor for detecting Hg(II) in aqueous solution has been developed. Water-soluble and monodisperse gold nanoparticles (Au NPs) has been prepared facilely and further modified with thioglycolic acid (TGA). Free Rh6G dye was strongly fluorescent in bulk solution. The sensor system composing of Rh6G and Au NPs fluoresce weakly as result of fluorescence resonance energy transfer (FRET) and collision. The fluorescence of Rh6G and Au NPs based sensor was gradually recovered due to Rh6G units departed from the surface of functionalized Au NPs in the presence of Hg(II). Based on the modulation of fluorescence quenching efficiency of Rh6G-Au NPs by Hg(II) at pH 9.0 of teraborate buffer solution, a simple, rapid, reliable and specific turn-on fluorescent assay for Hg(II) was proposed. Under the optimum conditions, the fluorescence intensity of sensor is proportional to the concentration of Hg(II). The calibration graphs are linear over the range of 5.0x10(-10) to 3.55x10(-8) mol L(-1), and the corresponding limit of detection (LOD) is low as 6.0x10(-11) mol L(-1). The relative standard deviation of 10 replicate measurements is 1.5% for 2.0x10(-9) mol L(-1) Hg(II). In comparison with conventional fluorimetric methods for detection of mercury ion, the present nanosensor endowed with higher sensitivity and selectivity for Hg(II) in aqueous solution. Mercury(II) of real environmental water samples was determined by our proposed method with satisfactory results that were obtained by atomic absorption spectroscopy (AAS).

摘要

已开发出一种基于金纳米颗粒(Au NPs)-罗丹明6G(Rh6G)的荧光传感器,用于检测水溶液中的Hg(II)。水溶性单分散金纳米颗粒(Au NPs)已被简便制备,并进一步用巯基乙酸(TGA)修饰。游离的Rh6G染料在本体溶液中具有很强的荧光。由于荧光共振能量转移(FRET)和碰撞,由Rh6G和Au NPs组成的传感器系统荧光较弱。在Hg(II)存在下,由于Rh6G单元从功能化Au NPs表面脱离,基于Rh6G和Au NPs的传感器荧光逐渐恢复。基于Hg(II)在pH 9.0的硼酸盐缓冲溶液中对Rh6G-Au NPs荧光猝灭效率的调制,提出了一种简单、快速、可靠且特异的Hg(II)开启型荧光检测方法。在最佳条件下,传感器的荧光强度与Hg(II)浓度成正比。校准曲线在5.0×10(-10)至3.55×10(-8) mol L(-1)范围内呈线性,相应的检测限(LOD)低至6.0×10(-11) mol L(-1)。对于2.0×10(-9) mol L(-1) Hg(II),10次重复测量的相对标准偏差为1.5%。与传统的汞离子荧光检测方法相比,本纳米传感器对水溶液中的Hg(II)具有更高的灵敏度和选择性。采用我们提出的方法测定了实际环境水样中的汞(II),结果与原子吸收光谱法(AAS)获得的结果令人满意。

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