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首页> 外文期刊>Nanoscale >Bottom-up synthesis of high-performance nitrogen-enriched transition metal/graphene oxygen reduction electrocatalysts both in alkaline and acidic solution
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Bottom-up synthesis of high-performance nitrogen-enriched transition metal/graphene oxygen reduction electrocatalysts both in alkaline and acidic solution

机译:自底向上合成高性能氮过渡金属/石墨烯氧还原electrocatalysts都在碱性和酸性溶液

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摘要

Oxygen reduction electrocatalysts with low cost and excellent performance are urgently required for large-scale application in fuel cells and metal-air batteries. Though nitrogen-enriched transition metal/graphene hybrids (N-TM/G, TM = Fe, Co, and Ni and related compounds) have been developed as novel substitutes for precious metal catalysts (PMCs) towards oxygen reduction reaction (ORR), a significant challenge still remains for simple and efficient synthesis of N-TM/G catalysts with satisfactory electrocatalytic behavior. Herein, we demonstrate a universal bottom-up strategy for efficient fabrication of strongly-coupled N-TM/G catalysts. This strategy is implemented via direct polymerization of transition metal phthalocyanine (TMPc) in the two-dimensional confined space of in situ generated g-C3N4 and a subsequent pyrolysis. Such a space-confined bottom-up synthesis route successfully constructs a strongly-coupled triple junction of transition metal-graphitic carbon-nitrogen-doped graphene (TM-GC-NG) with extensive controllability over the specific surface area, nitrogen content/types as well as the states of metal. As a result, the optimized N-Fe/G materials have promising potential as high-performance NPMCs towards ORR both in alkaline and acidic solution.
机译:氧还原electrocatalysts与低成本和优秀的性能是迫切需要的在燃料电池和大规模应用金属气质电池。过渡金属/石墨烯混合动力车(N-TM / G, TM =铁、Co、Ni和相关化合物)作为小说代替贵金属对氧还原催化剂(pmc)反应(ORR),一个重大的挑战保持简单和高效的合成N-TM / G催化剂与满意electrocatalytic行为。一个普遍的自下而上的有效策略制造的强耦合N-TM / G催化剂。这种策略是通过直接实现的过渡金属酞菁的聚合(TMPc)的二维有限空间原位生成g-C3N4和后续热解。成功地构造一个合成路线强耦合的三联点过渡metal-graphitic carbon-nitrogen-doped石墨烯(TM-GC-NG)与广泛的可控制性比表面积、含氮量/类型以及美国的金属。优化N-Fe / G有前途的材料作为高性能的潜力NPMCs向奥尔在碱性和酸性溶液。

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