价(化学)
锰
催化作用
氧气
无定形固体
莫来石
纳米颗粒
材料科学
电化学
化学工程
氧化锰
无机化学
纳米技术
化学
电极
物理化学
结晶学
冶金
有机化学
陶瓷
工程类
作者
Chao Dong,Ziwei Liu,Jieyu Liu,Weichao Wang,Lan Cui,Ruichun Luo,Huilong Guo,Xueli Zheng,Shi Zhang Qiao,Xi‐Wen Du,Jing Yang
出处
期刊:Small
[Wiley]
日期:2017-02-13
卷期号:13 (16)
被引量:87
标识
DOI:10.1002/smll.201603903
摘要
Manganese-based oxides have exhibited high promise as noncoinage alternatives to Pt/C for catalyzing oxygen reduction reaction (ORR) in basic solution and a mix of Mn3+/4+ valence is believed to be vital in achieving optimum ORR performance. Here, it is proposed that, distinct from the most studied perovskites and spinels, Mn-based mullites with equivalent molar ratio of Mn3+ and Mn4+ provide a unique platform to maximize the role of Mn valence in facile ORR kinetics by introducing modest content of oxygen deficiency, which is also beneficial to enhanced catalytic activity. Accordingly, amorphous mullite SmMn2 O5-δ nanoparticles with finely tuned concentration of oxygen vacancies are synthesized via a versatile top-down approach and the modest oxygen-defective sample with an Mn3+ /Mn4+ ratio of 1.78, i.e., Mn valence of 3.36 gives rise to a superior overall ORR activity among the highest reported for the family of Mn-based oxides, comparable to that of Pt/C. Altogether, this study opens up great opportunities for mullite-based catalysts to be a cost-effective alternative to Pt/C in diverse electrochemical energy storage and conversion systems.
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