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负载金纳米粒子的三维石墨烯:同时测定多巴胺和尿酸的伏安法。

Gold nanoparticles anchored onto three-dimensional graphene: simultaneous voltammetric determination of dopamine and uric acid.

机构信息

School of Materials Science and Engineering, Harbin University of Science and Technology, Harbin, 150040, People's Republic of China.

Department of Neurology, The First Affiliated Hospital of Harbin Medical University, Harbin, 150001, People's Republic of China.

出版信息

Mikrochim Acta. 2019 Jul 24;186(8):573. doi: 10.1007/s00604-019-3663-7.

Abstract

An electrochemical sensor is described for simultaneous voltammetric determination of dopamine (DA) and uric acid (UA). It is based on the use of a nanomaterial composed of gold nanoparticles and 3-dimensional graphene (Au NP@3D GR). The 3D GR was prepared by chemical vapor deposition using nickel nanoparticles as the template at a temperature of around 900 °C. The surface of 3D GR contains oxygen-functional groups after treatment with acid. Carboxylated Au NP were self-assembled and anchored onto the surface of 3D GR. The nanomaterial was placed on a ITO electrode. The few-layer graphene on the ITO glass has a porous structure and the distribution of Au NP is uniform. The electrode shows a high sensitivity and a low detection limit for DA and UA. Figures of merit include detection limits of 0.1 M for DA and of 0.1 μM for UA, and well separated peaks at potentials of 0.18 and 0.30 V (vs. Ag/AgCl), respectively, at pH 7.0. The electrode has good repeatability and stability. Graphical abstract Carboxylated gold nanoparticles were self-assembled and immobilized on 3-dimensional graphene by chemical vapor deposition for simultaneous determination of dopamine (DA) and uric acid (UA).

摘要

电化学传感器用于同时测定多巴胺(DA)和尿酸(UA)的伏安法。它基于使用纳米材料,纳米材料由金纳米粒子和 3 维石墨烯(Au NP@3D GR)组成。3D GR 通过使用镍纳米粒子作为模板在约 900°C 的温度下的化学气相沉积制备。3D GR 经酸处理后表面含有含氧官能团。羧基化的 Au NP 自组装并锚定在 3D GR 的表面。纳米材料被放置在 ITO 电极上。ITO 玻璃上的少层石墨烯具有多孔结构,Au NP 的分布均匀。该电极对 DA 和 UA 具有高灵敏度和低检测限。重要指标包括 DA 的检测限为 0.1 M,UA 的检测限为 0.1 μM,在 pH 7.0 时,分别在 0.18 和 0.30 V(相对于 Ag/AgCl)处具有良好分离的峰。电极具有良好的重现性和稳定性。

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