首页> 外文期刊>Journal of molecular catalysis, A. Chemical >Electrochemical reduction of CO2 mediated by poly-M-aminophthalocyanines (M = Co, Ni, Fe): poly-Co-tetraaminophthalocyanine, a selective catalyst
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Electrochemical reduction of CO2 mediated by poly-M-aminophthalocyanines (M = Co, Ni, Fe): poly-Co-tetraaminophthalocyanine, a selective catalyst

机译:由电化学减少二氧化碳poly-M-aminophthalocyanines (M = Co、Ni、铁):poly-Co-tetraaminophthalocyanine,选择性催化剂

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The electrochemical reduction of carbon dioxide was studied on a glassy carbon electrode modified with either polymeric M-tetrakis aminophthalocyanines (M = Co, Ni, Fe) or with the polymeric free ligand, in aqueous electrolyte. The reaction products are dependent on the central ion: for Co-polymer the only reaction product found was formic acid; for Ni polymer, formic acid and formaldehyde were found, whereas formaldehyde and H, were detected for Fe polymer. For the free ligand polymer only H-2 was detected. Spectroelectrochemical experiments show that in the case of Co-polymer, Co(l) is the active site of the electrocatalysis but the reduced cobalt center and the reduced ligand are not enough to promote the reduction of the carbon dioxide and an extra overpotential is necessary. In the case of the Ni polymer, the reaction takes place at the same potential where the complex is double reduced and it is not necessary to apply more potential. On the other hand, there are important differences between the morphologies of both polymers as demonstrated by electrochemical impedance spectroscopy. The experiments show that the metallic center affects the kinetics of polymerization and the polymer morphology. On the other hand, the chemical nature of the metal center of the catalyst is the most important factor in the electrochemical reduction of CO, and the products involved. (C) 2004 Elsevier B.V. All rights reserved.
机译:的电化学还原二氧化碳研究了在玻璃碳电极修改吗用聚合物M-tetrakisaminophthalocyanines (M = Co、Ni、铁)或聚合物自由配体,在水溶液电解质。反应产品的依赖中心离子:丙烯唯一的反应产品发现甲酸;甲酸和甲醛被发现,而甲醛和H,发现了铁聚合物。自由配体聚合物只有2检测到。在丙烯的情况下,有限公司(l)是电催化作用的活性部位,但降低钴中心和减少配体不足以促进碳的减少二氧化碳和一个额外的过电压是必要的。倪的情况下聚合物的反应在相同的潜在复杂在哪里双减少,没有必要适用更多的潜力。重要的形态差异这两种聚合物的电化学做了演示阻抗光谱学。金属中心的动力学影响聚合和聚合物的形态。另一方面,金属的化学性质中心的催化剂是最重要的电化学还原的因素有限公司和相关产品。保留所有权利。

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