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金属有机框架衍生的先进氧气电催化剂作为锌空气电池的空气阴极:最新趋势和未来展望。

Metal-organic framework-derived advanced oxygen electrocatalysts as air-cathodes for Zn-air batteries: recent trends and future perspectives.

机构信息

Surface Engineering and Tribology Division, Council of Scientific and Industrial Research Central Mechanical Engineering Research Institute, Mahatma Gandhi Avenue, Durgapur-713209, West Bengal, India.

Academy of Scientific and Innovative Research (AcSIR), CSIR-Human Resource Development Centre, (CSIR-HRDC) Campus, Postal Staff College Area, Sector 19, Kamla Nehru Nagar, Ghaziabad-201002, Uttar Pradesh, India.

出版信息

Mater Horiz. 2023 Mar 6;10(3):745-787. doi: 10.1039/d2mh01067d.

Abstract

Electrochemical energy storage devices with stable performance, high power output, and energy density are urgently needed to meet the global energy demand. Among the different electrochemical energy storage devices, batteries have become the most promising energy technologies and ranked as a highly investigated research subject. Recently, metal-air batteries especially Zn-air batteries (ZABs) have attracted enormous scientific interest in the electrochemical community due to their ease of operation, sustainability, environmental friendliness, and high efficiency. The oxygen electrocatalytic reactions [oxygen reduction reaction (ORR) and oxygen evolution reaction (OER)] are the two fundamental reactions for the development of ZABs. Noble metal-based electrocatalysts are widely considered as the benchmark for oxygen electrocatalysis, but their practical application in rechargeable ZAB is hindered due to several shortcomings. Thus, to replace noble metal-based catalysts, a wide range of transition-metal-based materials and heteroatom-doped metal-free carbon materials has been extensively investigated as oxygen electrocatalysts for ZABs. Recently, metal-organic frameworks (MOFs) with unique structural flexibility and uniformly dispersed active sites have become attractive precursors for the synthesis of a large variety of advanced functional materials. Herein, we summarize the recent progress of MOF-derived oxygen electrocatalysts (MOF-derived carbon nanomaterials, MOF-derived alloys/nanoparticles, and MOF-derived single-atom electrocatalysts) for ZABs. Specifically, we highlight MOF-derived single-atom electrocatalysts owing to the wide exploration of these emerging materials in electrocatalysis. The influence of the active sites, structural/compositional design, and porosity of MOF-derived advanced materials on the oxygen electrocatalytic performances is also discussed. Finally, the existing challenges and prospects of MOF-derived electrocatalysts in ZABs are briefly highlighted.

摘要

电化学储能设备需要具有稳定的性能、高功率输出和能量密度,以满足全球能源需求。在不同的电化学储能设备中,电池已成为最有前途的能源技术,并成为高度研究的课题。最近,由于操作简单、可持续性、环境友好性和高效率,金属-空气电池,特别是锌-空气电池(ZAB),在电化学界引起了极大的科学兴趣。氧气电催化反应[氧还原反应(ORR)和氧析出反应(OER)]是开发 ZAB 的两个基本反应。贵金属基电催化剂被广泛认为是氧电催化的基准,但由于存在多种缺点,其在可充电 ZAB 中的实际应用受到限制。因此,为了取代贵金属基催化剂,广泛研究了各种过渡金属基材料和杂原子掺杂的金属自由碳材料作为 ZAB 的氧电催化剂。最近,具有独特结构灵活性和均匀分散活性位点的金属有机骨架(MOF)已成为合成各种先进功能材料的有吸引力的前体。在此,我们总结了 MOF 衍生的氧电催化剂(MOF 衍生的碳纳米材料、MOF 衍生的合金/纳米颗粒和 MOF 衍生的单原子电催化剂)在 ZAB 中的最新进展。具体而言,我们重点介绍了 MOF 衍生的单原子电催化剂,因为这些新兴材料在电催化中的广泛探索。还讨论了 MOF 衍生的先进材料的活性位点、结构/组成设计和多孔性对氧电催化性能的影响。最后,简要地强调了 MOF 衍生的电催化剂在 ZAB 中存在的挑战和前景。

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