Amino functionalized carbon nanotubes supported CoNi@CoO–NiO core/shell nanoparticles as highly efficient bifunctional catalyst for rechargeable Zn-air batteries

双功能 非阻塞I/O 过电位 双金属片 材料科学 双功能催化剂 析氧 催化作用 化学工程 纳米颗粒 碳纳米管 纳米技术 电化学 化学 电极 有机化学 物理化学 工程类
作者
Hongzhou Pan,Yuwei Cao,Baoan Zhang,Jiaqi Han,Yunfei Bai,Xiaonan Shang,Zhongqing Jiang,Xiaoning Tian,Zhong‐Jie Jiang,Zhong-Jie Jiang,Zhong-Jie Jiang
出处
期刊:International Journal of Hydrogen Energy [Elsevier BV]
卷期号:46 (1): 374-388 被引量:36
标识
DOI:10.1016/j.ijhydene.2020.09.174
摘要

Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are the core reaction processes of rechargeable Zn-air battery (ZAB) cathode. Therefore, exploring a bifunctional catalyst with excellent electrochemical performance, high durability, and low cost is essential for rechargeable ZAB. In this work, amino functionalized carbon nanotubes supported core/shell nanoparticles composed of CoNi alloy core and CoO–NiO shell ([email protected]–NiO/NH2-CNTs-1) is synthesized through a simple and efficient hydrothermal reaction and calcination method, which shows higher ORR/OER bifunctional catalytic performance than the single metal-based catalyst, such as [email protected]/NH2-CNTs and [email protected]/NH2-CNTs. The fabricated bimetallic alloy based catalyst [email protected]–NiO/NH2-CNTs-3 with the optimized loading content of [email protected]–NiO core/shell nanoparticles, presents the best bifunctional catalytic performance for ORR/OER. Experimental studies reveal that [email protected]–NiO/NH2-CNTs-3 exhibits the onset potential of 0.956 V and 1.423 V vs. RHE for ORR and OER, respectively. It also exhibits a low overpotential of 377 mV to achieve a 10 mA cm−2 current density for OER, and positive half-wave potentials of 0.794 V for ORR. And the potential difference between half-wave potential of ORR (E1/2) and the potential at 10 mA cm−2 for OER (Ej10) is 0.813 V. In addition, when [email protected]–NiO/NH2-CNTs-3 is used as an air electrode catalyst of rechargeable ZAB, its maximum power density and open circuit voltage (OCV) can reach 128.7 mW cm−2 and 1.458 V (The commercially available catalyst of Pt/C–RuO2 is 88.1 mW cm−2), which strongly demonstrates that the fabricated catalyst [email protected]–NiO/NH2-CNTs-3 can be used as a highly efficient bifunctional catalyst for ZABs, and is expected to replace those expensive precious metal electrocatalysts to meet the growing demand for new energy devices.
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