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在硼掺杂金刚石电极上顺序电沉积 Cu-Pt 双金属纳米催化剂,用于甲醇的简单快速检测。

Sequential electrodeposition of Cu-Pt bimetallic nanocatalysts on boron-doped diamond electrodes for the simple and rapid detection of methanol.

机构信息

Electrochemistry and Optical Spectroscopy Center of Excellence (EOSCE), Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.

The Institute of Biotechnology and Genetic Engineering, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Sci Rep. 2021 Jul 13;11(1):14354. doi: 10.1038/s41598-021-92769-w.

Abstract

In this work, a novel electrochemical sensor for methanol determination was established by developing a bimetallic catalyst with superiority to a monometallic catalyst. A Cu-Pt nanocatalyst was proposed and easily synthesized by sequential electrodeposition onto a boron-doped diamond (BDD) electrode. The successful deposition of this nanocatalyst was then verified by scanning electron microscopy and energy dispersive spectroscopy. The electrodeposition technique and sequence of metal deposition significantly affected the surface morphology and electrocatalytic properties of the Cu-Pt nanocatalyst. The presence of Cu atoms reduced the adsorption of other species on the Pt surface, consequently enhancing the long-term stability and poisoning tolerance of Pt nanocatalysts during the methanol oxidation process. This advanced sensor was also integrated with sequential injection analysis to achieve automated and high-throughput analysis. This combination can significantly improve the detection limit of the developed sensor by approximately 100 times compared with that of the cyclic voltammetric technique. The limit of detection of this sensor was 83 µM (S/N = 3), and wide linearity of the standard curve for methanol concentrations ranging from 0.1 to 1000 mM was achieved. Finally, this proposed sensor was successfully applied to detect methanol in fruit and vegetable beverage samples.

摘要

在这项工作中,通过开发一种优于单金属催化剂的双金属催化剂,建立了一种用于甲醇测定的新型电化学传感器。提出并通过顺序电化学沉积在掺硼金刚石(BDD)电极上容易合成 Cu-Pt 纳米催化剂。通过扫描电子显微镜和能谱对纳米催化剂的成功沉积进行了验证。金属沉积的电沉积技术和顺序显著影响 Cu-Pt 纳米催化剂的表面形态和电催化性能。Cu 原子的存在减少了其他物种在 Pt 表面的吸附,从而提高了 Pt 纳米催化剂在甲醇氧化过程中的长期稳定性和抗中毒能力。该先进的传感器还与顺序注射分析相结合,实现了自动化和高通量分析。与循环伏安技术相比,这种组合可以将开发的传感器的检测限提高约 100 倍。该传感器的检测限为 83µM(S/N=3),并且甲醇浓度在 0.1 至 1000mM 范围内的标准曲线具有较宽的线性。最后,该传感器成功地应用于检测水果和蔬菜饮料样品中的甲醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/502c/8277777/7e8ca56a98b2/41598_2021_92769_Fig1_HTML.jpg

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