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首页> 外文期刊>Angewandte Chemie >Hydrothermal Synthesis of Metal-Polyphenol Coordination Crystals and Their Derived Metal/N-doped Carbon Composites for Oxygen Electrocatalysis
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Hydrothermal Synthesis of Metal-Polyphenol Coordination Crystals and Their Derived Metal/N-doped Carbon Composites for Oxygen Electrocatalysis

机译:氧电催化金属-多酚配位晶体及其衍生的金属/ N掺杂碳复合物的水热合成

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Cobalt (or iron)-polyphenol coordination polymers with crystalline frameworks are synthesized for the first time. The crystalline framework is formed by the assembly of metal ions and polyphenol followed by oxidative self-polymerization of the organic ligands (polyphenol) during hydrothermal treatment in alkaline condition. As a result, such coordination crystals are even partly stable in strong acid (such as 2 M HCl). The metal (Co or Fe)-natural abundant polyphenol (tannin) coordination crystals are a renewable source for the fabrication of metal/carbon composites as a nonprecious-metal catalyst, which show high catalytic performance for both oxygen reduction reaction and oxygen evolution reaction. Such excellent performance makes metal-polyphenol coordination crystals an efficient precursor to fabricate low-cost catalysts for the large-scale application of fuel cells and metal-air batteries.
机译:首次合成具有晶体骨架的钴(或铁)-多酚配位聚合物。通过在碱性条件下进行水热处理期间,金属离子和多酚的组装,然后有机配体(多酚)的氧化自聚合,形成晶体骨架。结果,这种配位晶体在强酸(例如2M HCl)中甚至部分稳定。金属(钴或铁)天然丰富的多酚(单宁)配位晶体是用于制造金属/碳复合材料作为非贵金属催化剂的可再生资源,对氧还原反应和氧释放反应均显示出高催化性能。如此优异的性能使金属-多酚配位晶体成为制造低成本催化剂的有效前体,可用于燃料电池和金属-空气电池的大规模应用。

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