Magnesium ion-doped layered oxide cathodes for alkali-metal ion batteries: Recent research progress and outlook

H Tang, L Duan, J Liao, X Sheng, J Xu, X Zhou - Energy Storage Materials, 2023 - Elsevier
With the widespread application of electrical energy storage technology, it is particularly
essential to develop a new generation of rechargeable batteries with low cost, high capacity …

Recent advances in battery characterization using in situ XAFS, SAXS, XRD, and their combining techniques: From single scale to multiscale structure detection

W Cheng, M Zhao, Y Lai, X Wang, H Liu, P Xiao… - …, 2024 - Wiley Online Library
Revealing and clarifying the chemical reaction processes and mechanisms inside the
batteries will bring a great help to the controllable preparation and performance modulation …

The insight of micro-short circuits caused by electrochemo-mechanical stress crosstalk in all-solid-state Li metal batteries

J Gu, X Chen, R Ma, Z He, Z Liang, H Zhong, Y Su… - Energy Storage …, 2023 - Elsevier
Puzzling micro-short circuit behaviors have been widely observed when utilizing Li metal
anodes (LMAs) in all-solid-state batteries (ASSBs). Previous studies on Li/Li symmetrical …

Comprehensive Review of Li‐Rich Mn‐Based Layered Oxide Cathode Materials for Lithium‐Ion Batteries: Theories, Challenges, Strategies and Perspectives

H Chen, X Xia, J Ma - ChemSusChem, 2024 - Wiley Online Library
Lithium‐rich manganese‐based layered oxide cathode materials (LLOs) have always been
considered as the most promising cathode materials for achieving high energy density …

Progress and Perspective of Doping Strategies for Lithium Cobalt Oxide Materials in Lithium-Ion Batteries

Y Yao, Z Xue, C Li, J Li, J He, X Zhang, Y Xiang - Energy Storage Materials, 2024 - Elsevier
Abstract LiCoO 2 (LCO), because of its easy synthesis and high theoretical specific capacity,
has been widely applied as the cathode materials in lithium-ion batteries (LIBs). However …

Trace-amount triple-doping of Ti, Mg, and B for improving the stability of lattice structure and discharge capacity of LiCoO2 at 4.6 V

W Shi, H Dong, X Feng, J Yin, W Sun, Y Cheng, X Xu - Electrochimica Acta, 2023 - Elsevier
Lithium cobaltate (LiCoO 2) is the favored cathode material due to its exceptional volumetric
energy density. An effective approach to enhancing the energy density of lithium-ion …

Ultra‐thin and Mechanically Stable LiCoO2‐Electrolyte Interphase Enabled by Mg2+ Involved Electrolyte

P Liu, T Huang, B Xiao, L Zou, K Wang, K Wang… - Small, 2024 - Wiley Online Library
LiCoO2 (LCO) cathode materials have attracted significant attention for its potential to
provide higher energy density in current Lithium‐ion batteries (LIBs). However, the structure …

Spinel-stabilized layered LiCoO2 cathode by surface reconstruction strategy

M Wang, B Li, Y Zhang, S Wang, M Fu, RN Tian… - Ceramics …, 2024 - Elsevier
Layered LiCoO 2 (LCO) is one of the most successful cathode materials for lithium ion
battery due to its high theoretical capacity and high compacted density. Nevertheless …

Unveiling the tailorable electrochemical properties of zeolitic imidazolate framework-derived Ni-doped LiCoO2 for lithium-ion batteries in half/full cells

JE Zhou, Y Liu, Z Peng, Q Ye, H Zhong, X Lin… - Journal of Energy …, 2024 - Elsevier
As a prevailing cathode material of lithium-ion batteries (LIBs), LiCoO 2 (LCO) still
encounters the tricky problems of structural collapse, whose morphological engineering and …

Eutectogel Electrolyte Constructs Robust Interfaces for High‐Voltage Safe Lithium Metal Battery

W Wu, D Li, C Gao, H Wu, Y Bo, J Zhang, L Ci… - Advanced …, 2024 - Wiley Online Library
Dramatic growth of lithium dendrite, structural deterioration of LiCoO2 (LCO) cathode at high
voltages, and unstable electrode/electrolyte interfaces pose significant obstacles to the …