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一种源自 Fe/N/C 和双金属金属有机骨架复合材料的锌空气电池高效双功能电催化剂。

An Efficient Bifunctional Electrocatalyst for a Zinc-Air Battery Derived from Fe/N/C and Bimetallic Metal-Organic Framework Composites.

机构信息

College of Physics, Optoelectronics and Energy & Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University , Suzhou 215006, China.

出版信息

ACS Appl Mater Interfaces. 2017 Feb 15;9(6):5213-5221. doi: 10.1021/acsami.6b12197. Epub 2017 Feb 3.

Abstract

Efficient bifunctional electrocatalysts with desirable oxygen activities are closely related to practical applications of renewable energy systems including metal-air batteries, fuel cells, and water splitting. Here a composite material derived from a combination of bimetallic zeolitic imidazolate frameworks (denoted as BMZIFs) and Fe/N/C framework was reported as an efficient bifunctional catalyst. Although BMZIF or Fe/N/C alone exhibits undesirable oxygen reaction activity, a combination of these materials shows unprecedented ORR (half-wave potential of 0.85 V as well as comparatively superior OER activities (potential@10 mA cm of 1.64 V), outperforming not only a commercial Pt/C electrocatalyst but also most reported bifunctional electrocatalysts. We then tested its practical application in Zn-air batteries. The primary batteries exhibit a high peak power density of 235 mW cm, and the batteries are able to be operated smoothly for 100 cycles at a curent density of 10 mA cm. The unprecedented catalytic activity can be attritued to chemical coupling effects between Fe/N/C and BMZIF and will aid the development of highly active electrocatalysts and applications for electrochemical energy devices.

摘要

高效的双功能电催化剂具有理想的氧气活性,与包括金属空气电池、燃料电池和水分解在内的可再生能源系统的实际应用密切相关。在这里,报告了一种由双金属沸石咪唑酯骨架(表示为 BMZIFs)和 Fe/N/C 骨架组合而成的复合材料,作为一种高效的双功能催化剂。尽管单独的 BMZIF 或 Fe/N/C 表现出不理想的氧气反应活性,但这些材料的组合表现出前所未有的 ORR(半波电位为 0.85 V,以及比较优越的 OER 活性(在 10 mA cm 处的电位为 1.64 V),不仅优于商业 Pt/C 电催化剂,而且优于大多数报道的双功能电催化剂。然后,我们测试了它在锌空气电池中的实际应用。原电池表现出 235 mW cm 的高峰值功率密度,并且电池能够在 10 mA cm 的电流密度下平稳运行 100 个循环。前所未有的催化活性可归因于 Fe/N/C 和 BMZIF 之间的化学偶联效应,这将有助于开发高活性电催化剂和电化学能源设备的应用。

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