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一种基于氧化石墨烯加速金浸出用于检测Pb2+的无标记比色传感器。

A label-free colorimetric sensor for Pb2+ detection based on the acceleration of gold leaching by graphene oxide.

作者信息

Shi Xinhao, Gu Wei, Zhang Cuiling, Zhao Longyun, Peng Weidong, Xian Yuezhong

机构信息

Department of Chemistry, East China Normal University, Shanghai 200062, People's Republic of China.

出版信息

Dalton Trans. 2015 Mar 14;44(10):4623-9. doi: 10.1039/c4dt03883e.

Abstract

In this work, we developed a novel, label-free, colorimetric sensor for Pb(2+) detection based on the acceleration of gold leaching by graphene oxide (GO) at room temperature. Gold nanoparticles (AuNPs) can be dissolved in a thiosulfate (S2O3(2-)) aqueous environment in the presence of oxygen; however, the leaching rate is very slow due to the high activation energy (27.99 kJ mol(-1)). In order to enhance the reaction rate, some accelerators should be added. In comparison with the traditional accelerators (metal ions or middle ligands), we found that GO could efficiently accelerate the gold leaching reaction. Kinetic data demonstrate that the dissolution rate of gold in the Pb(2+)-S2O3(2-)-GO system is 5 times faster than that without GO at room temperature. In addition, the effects of surface modification and the nanoparticle size on the etching of AuNPs were investigated. Based on the GO-accelerated concentration-dependent colour changes of AuNPs, a colorimetric sensor for Pb(2+) detection was developed with a linear range from 0.1 to 20 μM and the limit of detection (LOD) was evaluated to be 0.05 μM. This colorimetric assay is simple, low-cost, label-free, and has numerous potential applications in the field of environmental chemistry.

摘要

在本工作中,我们基于室温下氧化石墨烯(GO)加速金浸出过程,开发了一种用于检测Pb(2+)的新型无标记比色传感器。在有氧存在的情况下,金纳米颗粒(AuNPs)可溶解于硫代硫酸盐(S2O3(2-))水溶液中;然而,由于高活化能(27.99 kJ mol(-1)),浸出速率非常缓慢。为提高反应速率,应添加一些促进剂。与传统促进剂(金属离子或中间配体)相比,我们发现GO能有效加速金浸出反应。动力学数据表明,室温下在Pb(2+)-S2O3(2-)-GO体系中,金的溶解速率比无GO时快5倍。此外,还研究了表面改性和纳米颗粒尺寸对AuNPs蚀刻的影响。基于GO加速的AuNPs浓度依赖性颜色变化,开发了一种用于检测Pb(2+)的比色传感器,线性范围为0.1至20 μM,检测限(LOD)评估为0.05 μM。这种比色测定法简单、低成本、无标记,在环境化学领域有众多潜在应用。

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