Antiferromagnetic Inverse Spinel Oxide LiCoVO4 with Spin-Polarized Channels for Water Oxidation

被引:154
作者
Chen, Riccardo Ruixi [1 ,2 ]
Sun, Yuanmiao [1 ]
Ong, Samuel Jun Hoong [1 ,3 ]
Xi, Shibo [4 ]
Du, Yonghua [4 ]
Liu, Chuntai [5 ]
Lev, Ovadia [3 ,6 ]
Xu, Zhichuan J. [1 ,2 ,3 ]
机构
[1] Nanyang Technol Univ, Sch Mat Sci & Engn, 50 Nanyang Ave, Singapore 639798, Singapore
[2] Nanyang Technol Univ, Interdisciplinary Grad Sch, NTU ERI N, Energy Res Inst, Singapore 639798, Singapore
[3] CREATE, Nanomat Energy & Energy Water Nexus NEW, Singapore HUJ Alliance Res & Enterprise SHARE, Singapore 138602, Singapore
[4] ASTAR, Inst Chem & Engn Sci, 1 Pesek Rd, Singapore 627833, Singapore
[5] Zhengzhou Univ, Minist Educ, Key Lab Mat Proc & Mold, Zhengzhou 450002, Peoples R China
[6] Hebrew Univ Jerusalem, Inst Chem, IL-9190401 Jerusalem, Israel
关键词
antiferromagnetic materials; electrocatalysis; inverse spinel oxide; spin polarized channels; water oxidation; TRANSITION-METAL OXIDES; OXYGEN; CATALYSIS; SUBSTITUTION; PEROVSKITES; COVALENCY; CO;
D O I
10.1002/adma.201907976
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Exploring highly efficient catalysts for the oxygen evolution reaction (OER) is essential for water electrolysis. Cost-effective transition-metal oxides with reasonable activity are raising attention. Recently, OER reactants' and products' differing spin configurations have been thought to cause slow reaction kinetics. Catalysts with magnetically polarized channels could selectively remove electrons with opposite magnetic moment and conserve overall spin during OER, enhancing triplet state oxygen molecule evolution. Herein, antiferromagnetic inverse spinel oxide LiCoVO4 is found to contain d(7) Co2+ ions that can be stabilized under active octahedral sites, possessing high spin states S = 3/2 (t(2g)(5)e(g)(2)). With high spin configuration, each Co2+ ion has an ideal magnetic moment of 3 mu(B), allowing the edge-shared Co2+ octahedra in spinel to be magnetically polarized. Density functional theory simulation results show that the layered antiferromagnetic LiCoVO4 studied contains magnetically polarized channels. The average magnetic moment (mu(ave)) per transition-metal atom in the spin conduction channel is around 2.66 mu(B). Such channels are able to enhance the selective removal of spin-oriented electrons from the reactants during the OER, which facilitates the accumulation of appropriate magnetic moments for triplet oxygen molecule evolution. In addition, the LiCoVO4 reported has been identified as an oxide catalyst with excellent OER activity.
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页数:8
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