From scheelite BaMoO4 to perovskite BaMoO3: Enhanced electrocatalysis toward the hydrogen evolution in alkaline media

被引:59
|
作者
Xu, Xiaomin [1 ]
Pan, Yangli [1 ,2 ]
Zhong, Yijun [1 ]
Ge, Lei [2 ,3 ]
Jiang, San Ping [1 ,4 ]
Shao, Zongping [1 ,5 ]
机构
[1] Curtin Univ, WA Sch Mines Minerals Energy & Chem Engn WASM MEC, Perth, WA 6102, Australia
[2] Univ Southern Queensland, Ctr Future Mat, Springfield Cent, Qld 4300, Australia
[3] Univ Queensland, Sch Chem Engn, St Lucia, Qld 4072, Australia
[4] Curtin Univ, Fuels & Energy Technol Inst, Perth, WA 6102, Australia
[5] Nanjing Tech Univ NanjingTech, Coll Chem Engn, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Peoples R China
基金
澳大利亚研究理事会;
关键词
Hydrogen evolution reaction; Metallic BaMoO3; Perovskite; Phase transformation; Scheelite; Water splitting; ACTIVE EDGE SITES; MOS2; OXIDATION; CATALYSTS; OXIDE; CONDUCTIVITY; DIFFRACTION; BEHAVIOR; SR;
D O I
10.1016/j.compositesb.2020.108214
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The discovery of new, inexpensive, and efficient electrocatalysts for the hydrogen evolution reaction (HER) in alkaline solutions holds key to the realization of clean hydrogen production through water electrolysis. While molybdenum (Mo)-based inorganic compounds have been extensively investigated as catalyst candidates toward the alkaline HER, Mo-based oxides, in particular, complex oxides, are rarely explored. Here we report a Mo-containing, metallic BaMoO3 perovskite, which is derived from a scheelite-type, insulating BaMoO4 oxide through a thermal reduction-induced phase transformation, as a potential electrocatalyst for driving the alkaline HER. The BaMoO3 perovskite made of interconnected MoO6 octahedra is found to be more HER-active than the BaMoO4 scheelite consisting of isolated MoO4 tetrahedra, showing a significant increase in intrinsic activity by about one order of magnitude, which is due to the stabilized Mo tetravalent state, the increased surface oxygen vacancy concentration, and the improved electrical conductivity of BaMoO3. Importantly, BaMoO3 exhibits a smaller overpotential to deliver a geometric current density of -10 mA cm(geo)(-2) when compared with many of the bulk-sized perovskite catalysts comprising other transition metals (e.g., Mn, Fe, Co, and Ni) and the intensively studied Mo-based catalysts (e.g., MoS2), making it highly promising as an alternative electrocatalyst for the alkaline HER.
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页数:9
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