非阻塞I/O
空位缺陷
镍
材料科学
阴极
相(物质)
电荷(物理)
充电顺序
钠
结晶学
化学
物理化学
冶金
物理
催化作用
有机化学
量子力学
生物化学
作者
J. Steele,Annalena R. Genreith‐Schriever,Joshua D. Bocarsly,Liam A. V. Nagle‐Cocco,Farheen N. Sayed,Marie Juramy,Christopher A. O’Keefe,Fabio Orlandi,Pascal Manuel,Siân E. Dutton,Clare P. Grey
标识
DOI:10.1021/acs.chemmater.5c00084
摘要
NaNiO2 (NNO) has been investigated as a promising sodium-ion battery cathode material, but it is limited by degradation-induced capacity fade. On desodiation, NNO forms multiple phases with large superstructures due in part to Na+-ion vacancy ordering; however, their structures are unknown. Here, we report a structural solution to the Na2/3NiO2 (P'3) desodiated phase using combined Rietveld refinement of high-resolution synchrotron X-ray (SXRD) and neutron powder diffraction (NPD) data, magnetic susceptibility, and 23Na solid-state nuclear magnetic resonance (ssNMR) spectroscopy. Our experimental results are compared to ab initio molecular dynamics (AIMD) simulations, which indicate multiple low-energy structures that are dynamically populated. We observe a combination of competing effects that contribute to the resultant dynamic nature of the structure, including honeycomb ordering of mixed-valence Ni, orbital ordering of Jahn-Teller (JT) distorted Ni3+, and zigzag Na+/vacancy ordering. Our work provides evidence of multiple contributions to the structures of desodiated Na2/3NiO2, along with a framework for investigating the other unsolved desodiated structures. This work may also inform our understanding of the Jahn-Teller evolution in other nickel-rich lithium- and sodium-ion cathodes, such as LiNiO2.
科研通智能强力驱动
Strongly Powered by AbleSci AI