Designing Air-Stable O3-Type Cathode Materials by Combined Structure Modulation for Na-Ion Batteries
Hurong Yao, Pengfei Wang, Yue Gong, Jienan Zhang, Xiqian Yu, Lin Gu, Chuying Ouyang, Ya‐Xia Yin 等 13 位
Chinese Academy of Sciences Beijing National Laboratory for Molecular Sciences University of Chinese Academy of Sciences Institute of Physics
内容与影响
As promising high-capacity cathode materials for Na-ion batteries, O3-type Na-based metal oxides always suffer from their poor air stability originating from the spontaneous extraction of Na and oxidation of transition metals when exposed to air. Herein, a combined structure modulation is proposed to tackle concurrently the two handicaps via reducing Na layers spacing and simultaneously increasing valence state of transition metals. Guided by density functional theory calculations, we demonstrate such a modulation can be subtly realized through cosubstitution of one kind of heteroatom with comparable electronegativity and another one with substantially different Fermi level, by adjusting the structure of NaNi 0.5 Mn 0.5 O 2 via Cu/Ti codoping. The as-obtained NaNi 0.45 Cu 0.05 Mn 0.4 Ti 0.1 O 2 exhibits an increase of 20 times in stable air-exposure period and 9 times in capacity retention after 500 cycles, and even retains its structure and capacity after being soaked in water. Such a simple and effective structure modulation reveals a new avenue for high-performance O3-type cathodes and pushes the large-scale industrialization of Na-ion batteries a decisive step forward.
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工程Advancements in Battery Materials
Advanced Battery Materials and Technologies · Supercapacitor Materials and Fabrication
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