MnO/N‐Doped Mesoporous Carbon as Advanced Oxygen Reduction Reaction Electrocatalyst for Zinc–Air Batteries

电催化剂 介孔材料 碳纤维 电池(电) 材料科学 催化作用 化学工程 纳米技术 兴奋剂 无机化学 电极 化学 电化学 冶金 复合材料 有机化学 光电子学 复合数 物理化学 功率(物理) 工程类 物理 量子力学
作者
Jieting Ding,Shan Ji,Hui Wang,Dan J. L. Brett,Bruno G. Pollet,Rongfang Wang
出处
期刊:Chemistry: A European Journal [Wiley]
卷期号:25 (11): 2868-2876 被引量:30
标识
DOI:10.1002/chem.201806115
摘要

Abstract The development of alternative electrocatalysts exhibiting high activity in the oxygen reduction reaction (ORR) is vital for the deployment of large‐scale clean energy devices, such as fuel cells and zinc–air batteries. N‐doped carbon materials offer a promising platform for the design and synthesis of electrocatalysts due to their high ORR activity, high surface area, and tunable porosity. In this study, materials in which MnO nanoparticles are entrapped in N‐doped mesoporous carbon (MnO/NC) were developed as electrocatalysts for the ORR, and their performances were evaluated in zinc–air batteries. The obtained carbon materials had large surface area and high electrocatalytic activity toward the ORR. The carbon compounds were fabricated by using NaCl as template in a one‐pot process, which significantly simplifies the procedure for preparing mesoporous carbon materials and in turn reduces the total cost. A primary zinc–air battery based on this material exhibits an open‐circuit voltage of 1.49 V, which is higher than that of conventional zinc–air batteries with Pt/C (Pt/C cell) as ORR catalyst (1.41 V). The assembled zinc–air battery delivered a peak power density of 168 mW cm −2 at a current density of about 200 mA cm −2 , which is higher than that of an equivalent Pt/C cell (151 mW cm −2 at a current density of ca. 200 mA cm −2 ). The electrocatalytic data revealed that MnO/NC is a promising nonprecious‐metal ORR catalyst for practical applications in metal–air batteries.
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