Anode‐free solid‐state lithium batteries: a review

WZ Huang, CZ Zhao, P Wu, H Yuan… - Advanced Energy …, 2022 - Wiley Online Library
Anode‐free solid‐state lithium batteries are promising for next‐generation energy storage
systems, especially the mobile sectors, due to their enhanced energy density, improved …

Li-growth and SEI engineering for anode-free Li-metal rechargeable batteries: A review of current advances

B Wu, C Chen, LHJ Raijmakers, J Liu, DL Danilov… - Energy Storage …, 2023 - Elsevier
Li-metal battery systems are attractive for next-generation high-energy batteries due to their
high theoretical specific capacity and Li-metal's low redox potential. Anode-free Li-metal …

A high-energy-density and long-life initial-anode-free lithium battery enabled by a Li2O sacrificial agent

Y Qiao, H Yang, Z Chang, H Deng, X Li, H Zhou - Nature Energy, 2021 - nature.com
Equipped with a fully lithiated cathode with a bare anode current collector, the anode-free
lithium cell architecture presents remarkable advantages in terms of both energy density and …

In‐Depth Understanding of Interfacial Na+ Behaviors in Sodium Metal Anode: Migration, Desolvation, and Deposition

F Huang, P Xu, G Fang, S Liang - Advanced Materials, 2024 - Wiley Online Library
Interfacial Na+ behaviors of sodium (Na) anode severely threaten the stability of sodium‐
metal batteries (SMBs). This review systematically and in‐depth discusses the current …

From lithium‐metal toward anode‐free solid‐state batteries: current developments, issues, and challenges

C Heubner, S Maletti, H Auer, J Hüttl… - Advanced Functional …, 2021 - Wiley Online Library
The development of rechargeable batteries with high‐energy density is critical for future
decarbonization of transportation. Anode‐free Li‐ion batteries, using a bare current collector …

Robust transport: an artificial solid electrolyte interphase design for anode‐free lithium‐metal batteries

J Sun, S Zhang, J Li, B **e, J Ma, S Dong… - Advanced …, 2023 - Wiley Online Library
One of the most challenging issues in the practical implementation of high‐energy‐density
anode‐free lithium‐metal batteries (AFLMBs) is the sharp capacity attenuation caused by …

A Nonflammable High‐Voltage 4.7 V Anode‐Free Lithium Battery

P Liang, H Sun, CL Huang, G Zhu, HC Tai… - Advanced …, 2022 - Wiley Online Library
Anode‐free lithium‐metal batteries employ in situ lithium‐plated current collectors as
negative electrodes to afford optimal mass and volumetric energy densities. The main …

Interface Engineering by Hydrophilic and Zincophilic Aluminum Hydroxide Fluoride for Anode‐Free Zinc Metal Batteries at Low Temperature

C Wang, D Wang, D Lv, H Peng, X Song… - Advanced Energy …, 2023 - Wiley Online Library
Anode‐free batteriesgreatly promote overall energy density, but they require an extremely
high Coulombic efficiency (CE,> 99.7%) to function normally. It becomes very challenging in …

Recent advances in application of ionic liquids in electrolyte of lithium ion batteries

H Niu, L Wang, P Guan, N Zhang, C Yan, M Ding… - Journal of energy …, 2021 - Elsevier
Abstract Lithium ion Batteries (LiBs), as one of the most widely and primarily battery, have
been playing an irreplaceable role in human life. They are not only essential for portable …

Long‐Life Quasi‐Solid‐State Anode‐Free Batteries Enabled by Li Compensation Coupled Interface Engineering

Y Liu, X Meng, Y Shi, J Qiu, Z Wang - Advanced Materials, 2023 - Wiley Online Library
Initially, anode‐free Li metal batteries present a promising power source that merges the
high production feasibility of Li‐ion batteries with the superb energy capabilities of Li‐metal …