Addressing voltage decay in Li-rich cathodes by broadening the gap between metallic and anionic bands

Author:

Zhang JichengORCID,Zhang Qinghua,Wong Deniz,Zhang NianORCID,Ren Guoxi,Gu Lin,Schulz Christian,He Lunhua,Yu YangORCID,Liu XiangfengORCID

Abstract

AbstractOxygen release and irreversible cation migration are the main causes of voltage fade in Li-rich transition metal oxide cathode. But their correlation is not very clear and voltage decay is still a bottleneck. Herein, we modulate the oxygen anionic redox chemistry by constructing Li2ZrO3 slabs into Li2MnO3 domain in Li1.21Ni0.28Mn0.51O2, which induces the lattice strain, tunes the chemical environment for redox-active oxygen and enlarges the gap between metallic and anionic bands. This modulation expands the region in which lattice oxygen contributes capacity by oxidation to oxygen holes and relieves the charge transfer from anionic band to antibonding metal–oxygen band under a deep delithiation. This restrains cation reduction, metal–oxygen bond fracture, and the formation of localized O2 molecule, which fundamentally inhibits lattice oxygen escape and cation migration. The modulated cathode demonstrates a low voltage decay rate (0.45 millivolt per cycle) and a long cyclic stability.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Beijing Municipality

China Postdoctoral Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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