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The Role of Carbon on Copper–Carbon Composites for the Electrooxidation of Alcohols in an Alkaline Medium

机译:碳在碱性介质中对醇电氧化的铜-碳复合材料上的作用

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摘要

Copper–carbon composites were prepared following various different synthetic routes and using various carbon precursors (i.e., lignocellulose and graphite oxide), and were used as electrocatalysts for the oxidation of propargyl alcohol (PGA) in an alkaline medium. The electrochemical response of the copper-based catalysts was analyzed in terms of the influence of the metallic species, the carbon matrix incorporated in the composites, and the chemical structure of the ionomers—Nafion and poly (4-vinylpyridine) cross-linked methyl chloride quaternary salt resin (4VP)—used in the fabrication of the electrodes. Data has shown that the incorporation of reduced graphene oxide sheets between the copper metallic particles increased the performance due to the increased conductivity provided by the carbonaceous phase. Catalytic inks with ca. 40 wt.% Nafion and 12 wt.% 4VP as ionomers provided the best electrochemical response and cohesion of the catalysts, minimizing the losses in the electroactivity of the copper species.
机译:铜-碳复合材料是按照各种不同的合成路线并使用各种碳前体(即木质纤维素和氧化石墨)制备的,并用作碱性介质中炔丙醇(PGA)氧化的电催化剂。根据金属种类,复合物中掺入的碳基质以及离聚物Nafion和聚(4-乙烯基吡啶)交联氯甲烷的化学结构的影响,分析了铜基催化剂的电化学响应季盐树脂(4VP)-用于电极的制造。数据表明,由于碳相提供的电导率增加,在铜金属颗粒之间掺入还原的氧化石墨烯片提高了性能。催化油墨约40%(重量)的Nafion和12%(重量)的4VP作为离聚物提供了最佳的电化学反应和催化剂的内聚力,使铜物质的电活性损失最小。

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