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Functionality and design of Co-MOFs: unique opportunities in electrocatalysts for oxygen reduction reaction

机译:副校长的功能和设计:氧气还原反应的电催化剂的独特机会

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摘要

Zeolitic imidazolate framework (ZIF)-derived electrocatalysts have emerged as efficient, environmentally innocuous, low-cost, non-noble-metal alternatives to precious group metals for the oxygen reduction reaction (ORR) and utilization in clean and sustainable energy systems such as metal–air batteries and fuel cells. Recently, there has been tremendous interest in ZIF-based materials due to the large N content and M–N bonds in the parent ZIF backbone and derived nanostructures, which are responsible for their high ORR catalytic activity. This review summarizes the origin of the activity of ZIF-based materials and their recent progress and focuses specifically on advancements in ZIF-67-based materials for efficient ORR electrocatalysis. Furthermore, this review also outlines the recent strategies for designing more efficient catalysts based on ZIF-67, such as doping with heteroatoms, alloying with various metallic species, and compositing with carbonaceous nanostructures, and discusses their underlying mechanisms. Finally, insight into the remaining challenges and directions for future perspectives and research is provided.
机译:沸石咪唑酸框架(ZIF)衍生的电催化剂已经出现为高效,环境无害的,低成本的,非成本,非额外的金属替代品,用于珍贵的基团金属,用于减少氧气反应(ORR),并在清洁和可持续的能源系统(如金属)中使用 - 空气电池和燃料电池。最近,由于父ZIF主链和衍生的纳米结构中的较大N含量和M – N键,对基于ZIF的材料引起了极大的兴趣,这些纳米结构负责其高ORR催化活性。这篇综述总结了基于ZIF的材料活动的起源及其最近的进展,并专门研究基于ZIF-67的材料的进步,以进行有效的ORR电催化。此外,这篇综述还概述了设计基于ZIF-67的更有效催化剂的最新策略,例如与杂原子掺杂,与各种金属物种合金以及与碳质量纳米结构合成,并讨论其潜在机制。最后,提供了对未来观点和研究的剩余挑战和方向的了解。

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