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Interface Engineering of Air Electrocatalysts for Rechargeable Zinc-Air Batteries

机译:可充电锌空气电池空气电催化剂的界面工程

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摘要

In the face of high costs and the insufficient energy density of current lithium-ion batteries, aqueous rechargeable zinc (Zn)-air batteries with the advantages of low cost, environmental benignity, safety, and high energy density have been growing in importance in recent years. The practical application of Zn-air batteries, however, is severely restricted by the high overpotential, which is associated with the inherent sluggish kinetics of the oxygen evolution reaction (OER) and the oxygen reduction reaction (ORR) of air electrocatalysts. Recently, engineering heterostructured/hybrid electrocatalysts with modulated interface chemistry have been demonstrated as an effective strategy to improve the catalytic performance. Significant electronic effects, geometric effects, coordination effects, synergistic effects, and confinement effects occur at the heterostructure interface, which intensely affect electrocatalysts' performance in terms of intrinsic activity, active site density, and durability. In this review, the recent progress in the development of heterostructured air electrocatalysts by interface engineering is summarized. Particularly, the potential relationship between interface chemistry and oxygen electrocatalysis kinetics is bridged and outlined. This review provides a comprehensive and in-depth outline of the crucial role of the well-defined interfaces towards fast oxygen electrocatalysis, and offers a solid scientific basis for the rational design of efficient heterostructured air electrocatalysts and beyond.
机译:面对高成本和电流锂离子电池的不足的能量密度,近期成本低,环境良性,安全性和高能量密度的优点,可充电锌(Zn)水电池的优点在于年。然而,Zn-Air电池的实际应用受到高过电压的严重限制,这与氧气进化反应(OER)的固有的缓慢动力学相关,以及空气电催化剂的氧还原反应(ORR)。最近,已经证明了具有调制界面化学的工程异性结构/杂化电催化剂作为提高催化性能的有效策略。异质结构界面发生显着的电子效果,几何效果,协调效应,协同效应和监禁效应,这在内在活动,有源部位密度和耐久性方面强烈影响电催化剂的性能。在本综述中,总结了界面工程近期性空气电催化剂的最新进展。特别是,界面化学和氧电催化动力学之间的潜在关系桥接并概述。本综述提供了良好氧气电催化的明确界面界定界面的至关重要和深入概述的,为有效的异性空气电催化剂及超越的理性设计提供了坚实的科学依据。

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