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ELECTROCHEMICAL REDUCTION OF FORMALDEHYDE TO ETHYLENE GLYCOL AT MODIFIED GRAPHITE ELECTRODES

机译:修饰石墨电极上甲醛的电化学还原成乙二醇

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摘要

The electrochemical reduction of formaldehyde to ethylene glycol has been investigated with boron-doped diamond film coated graphite electrodes. The boron-doped diamond films were deposited using a high-pressure microwave plasma-assisted chemical vapor deposition system. The film was continuous and uniform. Raman spectroscopy revealed a high degree of sp3 bonding in the film. The coated electrodes possessed a wider working potential window and lower capacitive current than the bare electrode. The coated electrode also showed superior stability for the generation of ethylene glycol by electrochemical reduction of formaldehyde, as compare to the bare graphite electrode.
机译:用硼掺杂的金刚石薄膜涂覆的石墨电极已经研究了甲醛将电化学还原成乙二醇的方法。使用高压微波等离子体辅助化学气相沉积系统沉积掺硼金刚石薄膜。该膜是连续且均匀的。拉曼光谱显示膜中高度的sp3键合。与裸电极相比,涂覆电极具有更大的工作电势窗口和更低的电容电流。与裸露的石墨电极相比,该涂层电极还显示出通过电化学还原甲醛来生成乙二醇的优异稳定性。

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