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首页> 外文期刊>Electrochemical Energy Reviews >Advanced Noncarbon Materials as Catalyst Supports and Non-noble Electrocatalysts for Fuel Cells and Metal-Air Batteries
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Advanced Noncarbon Materials as Catalyst Supports and Non-noble Electrocatalysts for Fuel Cells and Metal-Air Batteries

机译:先进的无碳材料催化剂支持并为燃料电池和非贵金属Electrocatalysts金属气质电池

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摘要

Electrochemical energy systems such as fuel cells and metal-air batteries can be used as clean power sources in the field of electric transportation and possess great potential in the reduction of various energy and environmental issues. In these systems, the oxygen reduction reaction (ORR) at the cathode is the rate-determining factor for overall system performance, and up to now, platinum group metals supported on carbon materials, especially Pt, remain the highest performing and the most practical ORR electrocatalysts. However, corresponding carbonaceous catalyst supports are extremely susceptible to corrosion under electrochemical operation, and therefore, the extensive exploration of alternative stable materials for ORR electrocatalysts with both high electrochemical stability and catalytic performance is essential. Here, noncarbon materials with high corrosion resistance have been explored to substitute traditional carbon supports or even act directly as low-cost non-noble metal electrocatalysts, and based on this, this review will present a comprehensive overview and deep analysis of the recent progress in noncarbon materials, including metals, oxides, nitrides, carbides, sulfides, and so on. Overall, general attributes associated with noncarbon materials include high corrosion resistance, strong metal-support interaction, and impressive porous structure retention. However, major drawbacks include low electrical conductivity, insufficient chemical stability in acidic or alkaline media, and poor electrochemical stability at ORR electrode potentials. To overcome these challenges, this review will also summarize efficient strategies such as combining with highly conductive materials, introducing dopants and forming vacancies to result in promising electrocatalytic ORR performances. Finally, this review will propose possible research directions to facilitate future research and development toward the practical application of noncarbon-based ORR electrocatalysts.
机译:电化学能源系统,如燃料电池和金属气质电池可以作为清洁能源领域的电气运输和拥有巨大的潜力减少各种能源和环境问题。在阴极反应(ORR)是整个系统的速度决定因素性能,到目前为止,铂族金属支持碳材料,尤其是Pt,保持最高的表演和最实际的奥尔electrocatalysts。相应的碳质催化剂支持非常容易受到腐蚀电化学操作,因此,广泛的探索替代的稳定材料或者electrocatalysts都高电化学稳定性和催化性能是至关重要的。高耐腐蚀材料探索替代传统的碳支持甚至直接采取低成本非贵金属electrocatalysts,基于这将提供一个全面的审查最新进展的概述和深入分析在无碳材料,包括金属、氧化物、氮化物、碳化物、硫化物等。一般属性与非相关联材料包括有高的抗腐蚀性、强烈的金属支撑互动,让人印象深刻多孔结构保留。缺点包括导电率低,化学稳定性在酸性或不足碱性媒体,可怜的电化学稳定或者电极电位。克服这些挑战,本文还将总结有效结合等策略用高导电材料,引入掺杂物,形成空缺导致承诺electrocatalytic奥尔表演。最后,本文将提出可能的研究方向,以方便未来的研究向实际应用和发展noncarbon-based奥尔electrocatalysts。

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