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具有可控几何形状的碳、金、铂、银和汞超微电极的制备。

Fabrication of carbon, gold, platinum, silver, and mercury ultramicroelectrodes with controlled geometry.

作者信息

Danis Laurence, Polcari David, Kwan Annie, Gateman Samantha Michelle, Mauzeroll Janine

机构信息

Department of Chemistry, McGill University , 801 Sherbrooke Street West, Montreal, Quebec, Canada H3A 0B8.

出版信息

Anal Chem. 2015 Mar 3;87(5):2565-9. doi: 10.1021/ac503767n. Epub 2015 Feb 11.

Abstract

A simple, fast, and reproducible method for the fabrication of disk ultramicroelectrodes (UMEs) with controlled geometry is reported. The use of prepulled soda-lime glass capillaries allows one to bypass the irreproducible torch-sealing and experimentally challenging tip-sharpening steps used in conventional fabrication protocols. A micron-sized electroactive wire is sealed inside this capillary producing UMEs with a highly reproducible geometry. Total fabrication time (1 h) and experimental difficulty are significantly reduced. Disk UMEs with various diameters and cores were fabricated, including carbon fiber (7 and 11 μm), gold (10 and 25 μm), platinum (10 and 25 μm), silver (25 μm), and mercury (25 μm). The ratio of the insulating sheath to the electroactive core of the UMEs was 2.5-3.6. Silver UMEs were also used to produce a Ag/AgCl microreference electrode. This general fabrication method can readily be applied to other electroactive cores and could allow any research group to produce high quality disk UMEs, which are a prerequisite for quantitative scanning electrochemical microscopy.

摘要

报道了一种用于制备具有可控几何形状的圆盘超微电极(UME)的简单、快速且可重复的方法。使用预先拉制的钠钙玻璃毛细管可以避免传统制备方案中不可重复的火焰密封和实验上具有挑战性的尖端锐化步骤。将一根微米级的电活性金属丝密封在该毛细管内,从而制备出具有高度可重复几何形状的UME。总制备时间(1小时)和实验难度显著降低。制备了具有各种直径和芯材的圆盘UME,包括碳纤维(7和11μm)、金(10和25μm)、铂(10和25μm)、银(25μm)和汞(25μm)。UME的绝缘鞘与电活性芯的比例为2.5 - 3.6。银UME还用于制备Ag/AgCl微参比电极。这种通用的制备方法可以很容易地应用于其他电活性芯材,并且可以让任何研究小组制备出高质量的圆盘UME,这是定量扫描电化学显微镜的先决条件。

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