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首页> 外文期刊>ChemElectroChem >Ordered Array Electrodes Fabricated by a Mask-Assisted Electron-Beam Method as Platforms for Studying Kinetic and Mass-Transport Phenomena on Electrocatalysts
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Ordered Array Electrodes Fabricated by a Mask-Assisted Electron-Beam Method as Platforms for Studying Kinetic and Mass-Transport Phenomena on Electrocatalysts

机译:由掩模辅助电子束法制造的有序阵列电极作为用于在电催化剂上研究动力学和大规模运输现象的平台

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This work describes a method for fabrication of extensive ordered arrays of microelectrodes with varied geometries, surrounded either by an insulating surface of poly(methyl methacrylate) (PMMA) or by a conductive material such as gold or glassy carbon (GC). The method is based on procedures from electron beam lithography (EBL) but, in contrast to classic EBL, it can be applied by using widely available conventional SEM instruments that are not specifically tailored for EBL operation. The electron gun of the SEM is used to irradiate and modify a PMMA film that is covered by a micro- or nano-structured mask (i.e., a TEM grid), which is further selectively revealed. Each array can be evaluated in two configurations, when it is surrounded by the PMMA film, and when it is in contact with the exposed support after PMMA removal. The first configuration is useful to evaluate the electrochemical behavior of pure microelectrode arrays for correlating it with model equations. The second configuration is particularly useful when the substrate material by itself is inactive for the studied reaction. In the latter case, any detected differences between the electrochemical behavior of the PMMA-coated array and that of the bi-component array should come from the contributions of the microelectrode boundaries. These arrays were employed for studying the hydrogen oxidation reaction in alkaline medium on Au/Rh and on GC/Rh in order to detect possible kinetic interactions of both components at the heterojunctions.
机译:该工作描述了一种制造具有变化几何形微电子的广泛有序的微电极阵列的方法,通过聚(甲基丙烯酸甲酯)(PMMA)的绝缘表面或通过导电材料(如金或玻璃碳(GC))包围。该方法基于电子束光刻(EBL)的过程,但是,与经典EBL相反,可以通过使用广泛可用的传统SEM仪器来应用,该仪器没有特别针对EBL操作而专门定制的。 SEM的电子枪用于照射和改变由微型或纳米结构掩模(即TEM网格)覆盖的PMMA膜,其进一步选择性地揭示。当其被PMMA膜包围时,可以以两种配置评估每个阵列,并且当PMMA去除后与暴露的载体接触时。第一配置可用于评估纯微电极阵列的电化学行为与模型方程相关联。当基材材料本身的底物材料本身是无活性的第二种构造对于所研究的反应特别有用。在后一种情况下,PMMA涂覆阵列的电化学行为与双组分阵列的任何检测到的差异应该来自微电极边界的贡献。使用这些阵列用于研究Au / Rh和GC / RH上的碱性培养基中的氢氧化反应,以检测杂交功能的可能的动力学相互作用。

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