双金属片
双功能
电催化剂
石墨烯
过电位
催化作用
化学
析氧
纳米颗粒
双金属
化学工程
氧化物
双功能催化剂
无机化学
纳米技术
材料科学
电化学
电极
有机化学
物理化学
工程类
作者
Bo Zhu,Tongtao Wan,Jing Li,Chuizhou Meng,Xiaohang Du,Guihua Liu,Yuming Guan
标识
DOI:10.1016/j.jelechem.2022.116946
摘要
Developing efficient and stable bifunctional electrocatalysts towards oxygen evolution/reduction reactions (OER/ORR) is both critical and challenging for the application of zinc-air batteries (ZABs). In this work, a reduced graphene oxide-encapsulated, metal–organic framework (MOF)-derived NiCo bimetallic nanoparticles-based bifunctional catalyst ([email protected]) was successfully prepared. The intertwining of flaky rGO and MOF derivatives results in a large specific surface area and abundant pore structure, which is favorable for exposure of active catalytic sites and ensures high electronic conductivity of the catalyst at the same time. The cooperation of cobalt and nickel nanoparticles enriches the active centers and increases the intrinsic catalytic activity compared with monometallic Co nanoparticles, leading to enhanced catalytic performance. Benefited from the above advantages, [email protected] exhibits efficient catalytic activities with an oxygen reduction half-wave potential of 0.85 V and oxygen evolution overpotential of 460 mV at 10 mA cm−2. Furthermore, the ZABs with [email protected] exhibits a open-circuit voltage of 1.49 V, a peak power density of as high as 110.45 mW cm−2 and excellent stability over 180 h. This contribution paves a practical avenue to construct bimetal-rGO composites for high-performance ZABs.
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