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Recent Advances in Single-Atom Electrocatalysts for Oxygen Reduction Reaction

机译:用于氧还原反应的单原子电催化剂的最新进展

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摘要

Oxygen reduction reaction (ORR) plays significant roles in electrochemical energy storage and conversion systems as well as clean synthesis of fine chemicals. However, the ORR process shows sluggish kinetics and requires platinum-group noble metal catalysts to accelerate the reaction. The high cost, rare reservation, and unsatisfied durability significantly impede large-scale commercialization of platinum-based catalysts. Single-atom electrocatalysts (SAECs) featuring with well-defined structure, high intrinsic activity, and maximum atom efficiency have emerged as a novel field in electrocatalytic science since it is promising to substitute expensive platinum-group noble metal catalysts. However, finely fabricating SAECs with uniform and highly dense active sites, fully maximizing the utilization efficiency of active sites, and maintaining the atomically isolated sites as single-atom centers under harsh electrocatalytic conditions remain urgent challenges. In this review, we summarized recent advances of SAECs in synthesis, characterization, oxygen reduction reaction (ORR) performance, and applications in ORR-related H2O2 production, metal-air batteries, and low-temperature fuel cells. Relevant progress on tailoring the coordination structure of isolated metal centers by doping other metals or ligands, enriching the concentration of single-atom sites by increasing metal loadings, and engineering the porosity and electronic structure of the support by optimizing the mass and electron transport are also reviewed. Moreover, general strategies to synthesize SAECs with high metal loadings on practical scale are highlighted, the deep learning algorithm for rational design of SAECs is introduced, and theoretical understanding of active-site structures of SAECs is discussed as well. Perspectives on future directions and remaining challenges of SAECs are presented.
机译:氧还原反应(ORR)起着电化学能量存储和转换系统显著角色以及精细化学品的清洁的合成。然而,ORR过程显示呆滞动力学和需要铂族贵金属催化剂以加速反应。成本高,难得保留,并不满意耐久性铂基催化剂的显著阻碍大规模商业化。单原子电催化剂(的SAECs)具有良好定义的结构,高的固有活性,和最大效率原子设有已成为在电催化科学一种新颖的字段,因为它是有希望的替代昂贵的铂族贵金属催化剂。然而,精细地制造具有均匀的SAECs和高度致密的活性位点,完全最大化活性位点的利用效率,并维持原子孤岛苛刻电催化条件下的单原子中心,会继续紧急挑战。在这篇综述中,我们总结的SAECs的在合成,表征,氧还原反应(ORR)性能在ORR相关H2O2生产,金属 - 空气电池的最新进展,和应用程序,和低温燃料电池。上通过掺杂其它金属或配体,通过增加金属负载富集单原子位点的浓度,并通过优化质量和电子传输工程载体的孔隙率和电子结构剪裁分离的金属中心的配位结构相关进度也审查。此外,与实际规模的高金属载合成的SAECs一般策略是强调,对于SAECs中的合理设计深度学习算法的引入,以及SAECs中的活性位点结构的理论知识以及讨论。在未来的发展方向和SAECs中的剩余的挑战视角呈现。

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