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多功能 DIY 方法将各种电极材料纳入旋转环盘电极中。

Versatile DIY Route for Incorporation of a Wide Range of Electrode Materials into Rotating Ring Disk Electrodes.

机构信息

Department of Chemistry, University of Warwick, Coventry CV4 7AL, U.K.

出版信息

Anal Chem. 2022 Jul 12;94(27):9856-9862. doi: 10.1021/acs.analchem.2c01744. Epub 2022 Jun 29.

Abstract

Rotating ring disk electrodes (RRDEs) are a powerful and versatile tool for mechanistically investigating electrochemical reactions at electrode surfaces, particularly in the area of electroanalysis and catalysis. Despite their importance, only limited electrode materials (typically glassy carbon, platinum, and gold) and combinations thereof are available commercially. In this work, we present a method employing three-dimensional (3D) printing in conjunction with machined brass components to produce housing, which can accommodate any electrode material in, ., pressed powdered pellet, wafer, rod, foil, or vapor deposited onto a conductive substrate form. In this way, the range and usability of RRDEs is extended. This custom do-it-yourself (DIY) approach to fabricating RRDEs also enables RRDEs to be produced at a significant fraction of the cost of commercial RRDEs. To illustrate the versatility of our approach, coplanar boron-doped diamond (BDD) RRDEs are fabricated for the first time using the approach described. Experimental collection efficiencies for the redox couple FcTMA/FcTMA are found to be very close to those predicted theoretically. BDD electrodes serve as an ideal electrocatalyst support due to their low background currents, wide solvent potential window in aqueous solution, and chemical and electrochemical stability in acid and alkali solutions. The BDD RRDE configuration is employed to investigate the importance of surface-incorporated nondiamond carbon in BDD on hydrogen peroxide generation the oxygen reduction reaction in acid solutions.

摘要

旋转环盘电极 (RRDE) 是一种强大且多功能的工具,可用于研究电极表面的电化学反应的机理,特别是在电分析和催化领域。尽管它们很重要,但商业上可用的电极材料(通常是玻璃碳、铂和金)及其组合非常有限。在这项工作中,我们提出了一种使用三维 (3D) 打印与机械加工黄铜部件结合的方法来制作外壳,可以容纳任何电极材料,无论是压制成的粉末压片、晶片、棒、箔,还是沉积在导电基底上的形式。通过这种方式,可以扩展 RRDE 的范围和可用性。这种定制的 DIY 方法制造 RRDE 还可以使 RRDE 的成本降低到商业 RRDE 的一小部分。为了说明我们方法的多功能性,首次使用所描述的方法制造了共面掺硼金刚石 (BDD) RRDE。发现对于氧化还原偶 FcTMA/FcTMA,实验收集效率非常接近理论预测值。由于背景电流低、水溶液中的溶剂电位窗口宽以及在酸碱溶液中的化学和电化学稳定性,BDD 电极是理想的电催化剂载体。BDD RRDE 配置用于研究表面结合的非金刚石碳在 BDD 中对过氧化氢生成的重要性——在酸性溶液中的氧还原反应。

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