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首页> 外文期刊>Chemistry, an Asian journal >Defect Engineering of Carbon-based Electrocatalysts for Rechargeable Zinc-air Batteries
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Defect Engineering of Carbon-based Electrocatalysts for Rechargeable Zinc-air Batteries

机译:可充电锌空气电池碳基电催化剂的缺陷工程

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摘要

Rechargeable zinc-air batteries (ZABs) are considered as one of the most promising electrochemical energy devices due to their various unique advantages. Oxygen electrocatalysis, involving the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), determines the overall performance of zinc-air batteries. Therefore, the development of highly efficient bifunctional ORR/OER catalysts is critical for the large-scale application of ZABs. Carbon-based nanomaterials have been widely reported to be efficient electrocatalysts toward both ORR and OER. The enhanced activity of these electrocatalysts are usually attributed to different doping defects, synergistic effects and even the intrinsic carbon defects. Herein, an overview of the defect engineering in carbon-based electrocatalysts for ORR and OER is provided. The different types of intrinsic carbon defects and strategies for the generation of other defects in carbon-based electrocatalysts are presented. The interaction of heteroatoms doped carbon and transition metals (TMs) is also explored. In the end, the existing challenges and future perspectives on defect engineering are discussed.
机译:可充电锌 - 空气电池(ZABs)被认为是由于它们各种独特的优势导致最有前途的电化学能量装置之一。氧电催化,涉及氧还原反应(ORR)和氧气进化反应(OER),决定了锌 - 空气电池的总体性能。因此,高效的双功能ORR / OER催化剂的开发对于大规模应用ZABs至关重要。已普遍据报道碳基纳米材料是朝向ORR和OER的有效电催化剂。这些电催化剂的增强活性通常归因于不同的掺杂缺陷,协同效应甚至内在碳缺陷。这里,提供了用于ORR和OER的碳基电催化剂的缺陷工程的概述。提出了不同类型的内在碳缺陷和用于产生其他碳基电催化剂的缺陷。还探讨了杂原子掺杂碳和过渡金属(TMS)的相互作用。最后,讨论了现有的挑战和未来的缺陷工程的观点。

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