Metal-Organic-Framework-Derived Nitrogen-Doped Carbon-Matrix-Encapsulating Co(0.5)Ni(0.5) Alloy as a Bifunctional Oxygen Electrocatalyst for Zinc-Air Batteries

金属有机框架衍生的氮掺杂碳基体包覆Co(0.5)Ni(0.5)合金作为锌空气电池的双功能氧电催化剂

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Abstract

The development of low-cost, high-performance oxygen electrocatalysts is of great significance for energy conversion and storage. As a potential substitute for precious metal electrocatalysts, the construction of efficient and cost-effective oxygen electrocatalysts is conducive to promoting the widespread application of zinc-air batteries. Herein, Co(x)Ni(y)MOF nanoparticles encapsulated within a carbon matrix were synthesized and employed as cathode catalysts in zinc-air batteries. Co(0.5)Ni(0.5)MOF exhibits superior oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) performance and durability. The zinc-air battery assembled with Co(0.5)Ni(0.5)MOF as the air cathode exhibits a maximum power density of 138.6 mW·cm(-2). These improvements are mainly attributed to the optimized metal composition of the cobalt-nickel alloy, which increases the specific surface area of the material and optimizes its pore structure. Significantly, the optimization of the electronic structure and active sites within the material has led to amplified ORR/OER activity and better zinc-air battery performance. This study underscores the immense promise of Co(0.5)Ni(0.5)MOF catalysts as feasible substitutes for commercial Pt/C catalysts in zinc-air batteries.

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