TY - JOUR
T1 - What Triggers the Voltage Hysteresis Variation beyond the First Cycle in Li-Rich 3d Layered Oxides with Reversible Cation Migration?
AU - Liu, Hui
AU - Zhao, Chong
AU - Qiu, Qing
AU - Hu, Bei
AU - Geng, Fushan
AU - Li, Jingxin
AU - Tong, Wei
AU - Hu, Bingwen
AU - Li, Chao
N1 - Publisher Copyright:
© 2021 American Chemical Society.
PY - 2021/9/16
Y1 - 2021/9/16
N2 - Herein, the structure-electrochemistry relationship of O2-Li5/6(Li0.2Ni0.2Mn0.6)O2 is deliberately studied by local-structure probes including site-sensitive 7Li pj-MATPASS NMR, quantitative 6Li magic-angle spinning NMR, and electron paramagnetic resonance (EPR). The extraction and reinsertion of LiTM (Li in the transition metal layer) during the first cycle are only partially reversible, bringing about the formation of tetrahedral LiLi (Li in the Li layer) that can be reversibly (de)intercalated after the activation cycle. The high-voltage oxygen redox process is preserved beyond the first cycle, further manifesting the structural superiority of O2 stacking over O3 stacking in bolstering oxygen redox. Moreover, the (de)lithiation process is highly reversible without pronounced structural hysteresis after the rearrangement of Li and transition metal upon the activation cycle, which can explain well the variation of voltage hysteresis from the first cycle to second cycle.
AB - Herein, the structure-electrochemistry relationship of O2-Li5/6(Li0.2Ni0.2Mn0.6)O2 is deliberately studied by local-structure probes including site-sensitive 7Li pj-MATPASS NMR, quantitative 6Li magic-angle spinning NMR, and electron paramagnetic resonance (EPR). The extraction and reinsertion of LiTM (Li in the transition metal layer) during the first cycle are only partially reversible, bringing about the formation of tetrahedral LiLi (Li in the Li layer) that can be reversibly (de)intercalated after the activation cycle. The high-voltage oxygen redox process is preserved beyond the first cycle, further manifesting the structural superiority of O2 stacking over O3 stacking in bolstering oxygen redox. Moreover, the (de)lithiation process is highly reversible without pronounced structural hysteresis after the rearrangement of Li and transition metal upon the activation cycle, which can explain well the variation of voltage hysteresis from the first cycle to second cycle.
UR - https://www.scopus.com/pages/publications/85115340915
U2 - 10.1021/acs.jpclett.1c02185
DO - 10.1021/acs.jpclett.1c02185
M3 - 文章
C2 - 34478306
AN - SCOPUS:85115340915
SN - 1948-7185
VL - 12
SP - 8740
EP - 8748
JO - Journal of Physical Chemistry Letters
JF - Journal of Physical Chemistry Letters
IS - 36
ER -