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High-Entropy Na-Deficient Layered Oxides for Sodium-Ion Batteries

Authors :
Wang, Haoji
Gao, Xu
Zhang, Shu
Mei, Yu
Ni, Lianshan
Gao, Jinqiang
Liu, Huanqing
Hong, Ningyun
Zhang, Baichao
Zhu, Fangjun
Deng, Wentao
Zou, Guoqiang
Hou, Hongshuai
Cao, Xiao-Yu
Chen, Hongyi
Ji, Xiaobo
Source :
ACS Nano; July 2023, Vol. 17 Issue: 13 p12530-12543, 14p
Publication Year :
2023

Abstract

Sodium layered oxides always suffer from sluggish kinetics and deleterious phase transformations at deep-desodiation state (i.e., >4.0 V) in O3 structure, incurring inferior rate capability and grievous capacity degradation. To tackle these handicaps, here, a configurational entropy tuning protocol through manipulating the stoichiometric ratios of inactive cations is proposed to elaborately design Na-deficient, O3-type NaxTmO2cathodes. It is found that the electrons surrounding the oxygen of the TmO6octahedron are rearranged by the introduction of MnO6and TiO6octahedra in Na-deficient O3-type Na0.83Li0.1Ni0.25Co0.2Mn0.15Ti0.15Sn0.15O2−δ(MTS15) with expanded O–Na–O slab spacing, giving enhanced Na+diffusion kinetics and structural stability, as disclosed by theoretical calculations and electrochemical measurements. Concomitantly, the entropy effect contributes to the improved reversibility of Co redox and phase-transition behaviors between O3 and P3, as clearly revealed by ex situsynchrotron X-ray absorption spectra and in situX-ray diffraction. Notably, the prepared entropy-tuned MTS15 cathode exhibits impressive rate capability (76.7% capacity retention at 10 C), cycling stability (87.2% capacity retention after 200 cycles) with a reversible capacity of 109.4 mAh g–1, good full-cell performance (84.3% capacity retention after 100 cycles), and exceptional air stability. This work provides an idea for how to design high-entropy sodium layered oxides for high-power density storage systems.

Details

Language :
English
ISSN :
19360851 and 1936086X
Volume :
17
Issue :
13
Database :
Supplemental Index
Journal :
ACS Nano
Publication Type :
Periodical
Accession number :
ejs63410521
Full Text :
https://doi.org/10.1021/acsnano.3c02290