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Iron–Salen Complex and Co2+ Ion‐Derived Cobalt–Iron Hydroxide/Carbon Nanohybrid as an Efficient Oxygen Evolution Electrocatalyst

机译:铁-沙仑配合物和Co2 +离子源的钴-氢氧化铁/碳纳米杂化物作为高效的析氧电催化剂

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摘要

Metal–salen complexes are widely used as catalysts in numerous fundamental organic transformation reactions. Here, CoFe hydroxide/carbon nanohybrid is reported as an efficient oxygen evolution electrocatalyst derived from the in situ formed molecular Fe–salen complexes and Co ions at a low temperature of 160 °C. It has been evidenced that Fe–salen as a molecular precursor facilitates the confined‐growth of metal hydroxides, while Co plays a critical role in catalyzing the transformation of organic ligand into nanocarbons and constitutes an essential component for CoFe hydroxide. The resulting Co Fe/C hybrid material requires an overpotential of 260 mV at a current density of 10 mA cm with high durability. The high activity is contributed to uniform distribution of CoFe hydroxides on carbon layer and excellent electron conductivity caused by intimate contact between metal and nanocarbon. Given the diversity of molecular precursors, these results represent a promising approach to high‐performance carbon‐based water splitting catalysts.
机译:金属沙仑配合物被广泛用作许多基本有机转化反应的催化剂。在这里,据报道,CoFe氢氧化物/碳纳米杂化物是一种高效的氧释放电催化剂,它是在160°C的低温下从原位形成的分子Fe-salen配合物和Co离子衍生而来的。已有证据表明,Fe-salen作为分子前体可促进金属氢氧化物的局限生长,而Co在催化有机配体向纳米碳的转化中起关键作用,并构成CoFe氢氧化物的重要成分。所得的Co Fe / C杂化材料在10 mA cm的电流密度下要求具有260 mV的过电势,并且具有很高的耐久性。高活性有助于CoFe氢氧化物在碳层上的均匀分布,以及由于金属和纳米碳之间的紧密接触而导致的优异的电子传导性。考虑到分子前体的多样性,这些结果代表了一种高性能的碳基水分解催化剂的有前途的方法。

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