Electrochemical Characterization of Platinum Nanotubules Made via Template Wetting Nanofabrication

IF 2.3 Q3 ELECTROCHEMISTRY International journal of electrochemistry Pub Date : 2013-10-24 DOI:10.1155/2013/960513
Eric Broaddus, J. Brubaker, S. Gold
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引用次数: 11

Abstract

Standard oxidation-reduction reactions such as those of ferrocyanide and ferrocene have long been employed in evaluating and comparing new electrode structures with more traditional configurations. A variety of nanostructured carbon electrodes developed in recent years have been reported to exhibit faster electron transfer kinetics than more traditional carbon structures when studied with these redox reactions. This type of comparison has not been widely explored for nanostructured platinum electrodes that have become increasingly common. In this work, a platinum nanotubule array electrode was fabricated via a simple template-based process and evaluated using the standard ferrocyanide redox reaction. The nanotubule array electrodes were observed to more closely approach ideal reversible behavior than a typical Pt black/Nafion fuel cell electrode or a standard polished Pt disc electrode. The apparent heterogeneous electron transfer coefficient was determined using the Nicholson method and found to be one to two orders of magnitude greater for the nanotubule array electrodes, depending on the diameter of the nanotubules, in comparison with these same two more traditional electrode structures.
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模板润湿纳米法制备铂纳米管的电化学表征
标准的氧化还原反应,如亚铁氰化物和二茂铁的氧化还原反应,长期以来被用于评价和比较新的电极结构与更传统的结构。据报道,近年来开发的各种纳米结构碳电极在氧化还原反应中表现出比传统碳结构更快的电子转移动力学。这种类型的比较尚未广泛探索纳米结构铂电极已变得越来越普遍。本文采用简单的模板法制备了铂纳米管阵列电极,并用标准的亚铁氰化物氧化还原反应对其进行了评价。纳米管阵列电极比典型的Pt black/Nafion燃料电池电极或标准抛光Pt圆盘电极更接近理想的可逆行为。使用Nicholson方法确定了表观非均质电子传递系数,发现纳米管阵列电极与这两种更传统的电极结构相比,根据纳米管直径的不同,其表观非均质电子传递系数要大一到两个数量级。
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7 weeks
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