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Identification of dual-active sites in cobalt phthalocyanine for electrochemical carbon dioxide reduction

机译:鉴定钴酞菁中的双活性位点进行电化学二氧化碳减少

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Cobalt phthalocyanine (CoPc) as a typical transition metal complex catalyst for electrochemical CO2 reduction is able to produce CO with high selectivity and activity. However, the reaction mechanism remain unclear because of the ambiguity in catalytic active sites between Co center atom and Pc ligand. Herein, synchrotron-based X-ray photoelectron spectroscopy (XPS) and soft X-ray absorption spectroscopy (XAS) were employed to elucidate the catalytic active site evolution during the reaction process. We found that the electrochemical reduction reaction of CO2 on CoPc follows a dual-active sites process. The CO2 molecule is initially protonated on the N atom site of Pc ligand forming *COOH intermediate and then is further reduced to *CO at the center Co site.
机译:钴酞菁(COPC)作为用于电化学CO2还原的典型过渡金属络合物催化剂,能够产生高选择性和活性的CO。 然而,由于CO中心原子和PC配体之间的催化活性位点中的模糊,反应机制仍不清楚。 这里,使用同步基于X射线光电子能谱(XPS)和软X射线吸收光谱(XAS)来阐明反应过程中的催化活性位点进化。 我们发现CO2在COPC上的电化学还原反应遵循双活性位点。 二氧化碳分子最初在PC配体的N原子位点上归解,形成酸焦中间体,然后进一步降低至中心Co位点的份数。

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