首页> 外文期刊>Journal of Solid State Electrochemistry >Copper oxide-modified glassy carbon electrode prepared through copper hexacyanoferrate–G5-PAMAM dendrimer templates as electrocatalyst for carbohydrate and alcohol oxidation
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Copper oxide-modified glassy carbon electrode prepared through copper hexacyanoferrate–G5-PAMAM dendrimer templates as electrocatalyst for carbohydrate and alcohol oxidation

机译:通过六氰合铁酸铜-G5-PAMAM树枝状大分子模板制备的氧化铜修饰玻碳电极,作为碳水化合物和醇氧化的电催化剂

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摘要

We describe the modification of a glassy carbon electrode by electro-deposition of copper hexacyanoferrate (CuHCF) in the presence of an amine-terminated dendrimer (PAMAM) as a template. The electrode containing the CuHCF template was cycled in alkaline solution to generate a layer of cupric oxide (CuO). The mechanism of the formation of CuO and its electrocatalytic activity were investigated by cyclic voltammetry. Scanning electron microscopy reveals that the CuO prepared by this method has a meso-porous grid-like appearance. The formation of CuO was identified by XPS analysis of the modified electrode. The ability of the CuHCF film towards the electrocatalytic oxidation of carbohydrates and alcohols was detected using cyclic voltammetry. The over-potential required for carbohydrate and alcohol oxidation is lowered by ~400 mV compared to other chemically modified electrodes reported in the literature. Simple methodology has been adopted in this work for the preparation of the catalytically active electrode, and this work also explains the structure directing effect of dendrimer and its influence on the electrocatalytic oxidation of analytes.
机译:我们描述了在胺封端的树枝状大分子(PAMAM)作为模板存在下通过电沉积六氰合铁酸铜(CuHCF)对玻碳电极的改性。将包含CuHCF模板的电极在碱性溶液中循环以生成一层氧化铜(CuO)。通过循环伏安法研究了CuO的形成机理及其电催化活性。扫描电子显微镜显示,通过该方法制备的CuO具有中孔网格状外观。通过修饰电极的XPS分析确定了CuO的形成。使用循环伏安法检测CuHCF膜对碳水化合物和醇类进行电催化氧化的能力。与文献中报道的其他化学修饰电极相比,碳水化合物和乙醇氧化所需的过电位降低了约400 mV。在这项工作中采用了简单的方法来制备催化活性电极,并且这项工作还解释了树枝状大分子的结构导向作用及其对分析物电催化氧化的影响。

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