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具有用于水氧化的自旋极化通道的反铁磁反尖晶石氧化物LiCoVO

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

作者信息

Chen Riccardo Ruixi, Sun Yuanmiao, Ong Samuel Jun Hoong, Xi Shibo, Du Yonghua, Liu Chuntai, Lev Ovadia, Xu Zhichuan J

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

Energy Research Institute @NTU ERI@N, Interdisciplinary Graduate School, Nanyang Technological University, Singapore, 639798, Singapore.

出版信息

Adv Mater. 2020 Mar;32(10):e1907976. doi: 10.1002/adma.201907976. Epub 2020 Jan 31.

Abstract

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 LiCoVO is found to contain d Co ions that can be stabilized under active octahedral sites, possessing high spin states S = 3/2 (t e ). With high spin configuration, each Co ion has an ideal magnetic moment of 3 µ , allowing the edge-shared Co octahedra in spinel to be magnetically polarized. Density functional theory simulation results show that the layered antiferromagnetic LiCoVO studied contains magnetically polarized channels. The average magnetic moment (µ ) per transition-metal atom in the spin conduction channel is around 2.66 µ . 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 LiCoVO reported has been identified as an oxide catalyst with excellent OER activity.

摘要

探索用于析氧反应(OER)的高效催化剂对于水电解至关重要。具有合理活性且成本效益高的过渡金属氧化物正受到关注。最近,人们认为OER反应物和产物不同的自旋构型会导致反应动力学缓慢。具有磁极化通道的催化剂可以选择性地去除具有相反磁矩的电子,并在OER过程中保持整体自旋,从而增强三重态氧分子的析出。在此,发现反铁磁反尖晶石氧化物LiCoVO含有可以在活性八面体位置稳定的d钴离子,具有高自旋态S = 3/2(t e )。具有高自旋构型,每个钴离子具有3 µ 的理想磁矩,使得尖晶石中边缘共享的钴八面体能够被磁极化。密度泛函理论模拟结果表明,所研究的层状反铁磁LiCoVO含有磁极化通道。自旋传导通道中每个过渡金属原子的平均磁矩(µ )约为2.66 µ 。这种通道能够在OER过程中增强从反应物中选择性去除自旋取向电子的能力,这有利于为三重态氧分子析出积累适当的磁矩。此外,所报道的LiCoVO已被确定为一种具有优异OER活性的氧化物催化剂。

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