Emerging electrolytes with fluorinated solvents for rechargeable lithium-based batteries

Y Wang, Z Li, Y Hou, Z Hao, Q Zhang, Y Ni… - Chemical Society …, 2023 - pubs.rsc.org
Electrolytes that can ensure the movement of ions and regulate interfacial chemistries for
fast mass and charge transfer are essential in many types of electrochemical energy storage …

Health prognostics for lithium-ion batteries: mechanisms, methods, and prospects

Y Che, X Hu, X Lin, J Guo, R Teodorescu - Energy & Environmental …, 2023 - pubs.rsc.org
Lithium-ion battery aging mechanism analysis and health prognostics are of great
significance for a smart battery management system to ensure safe and optimal use of the …

Reversible adsorption with oriented arrangement of a zwitterionic additive stabilizes electrodes for ultralong-life Zn-ion batteries

H Yu, D Chen, X Ni, P Qing, C Yan, W Wei… - Energy & …, 2023 - pubs.rsc.org
The unstable electrode/electrolyte interface with inhomogeneous Zn deposition and side
reactions plagues the practical application of aqueous Zn-ion batteries. Herein, L-carnitine …

In situ construction of anode–molecule interface via lone‐pair electrons in trace organic molecules additives to achieve stable zinc metal anodes

H Yu, D Chen, Q Li, C Yan, Z Jiang… - Advanced Energy …, 2023 - Wiley Online Library
The practical application of aqueous zinc batteries (AZBs) is significantly limited by the poor
reversibility of the zinc anodes, including rampant dendrite growth and severe interfacial …

Research Progresses of Liquid Electrolytes in Lithium‐Ion Batteries

YK Liu, CZ Zhao, J Du, XQ Zhang, AB Chen, Q Zhang - Small, 2023 - Wiley Online Library
In recent years, the rapid development of modern society is calling for advanced energy
storage to meet the growing demands of energy supply and generation. As one of the most …

Taming Solvent–Solute Interaction Accelerates Interfacial Kinetics in Low‐Temperature Lithium‐Metal Batteries

CB **, N Yao, Y **ao, J **e, Z Li, X Chen… - Advanced …, 2023 - Wiley Online Library
Lithium (Li)‐metal batteries promise energy density beyond 400 Wh kg− 1, while their
practical operation at an extreme temperature below− 30° C suffers severe capacity …

Electrostatic potential as solvent descriptor to enable rational electrolyte design for lithium batteries

Y Wu, Q Hu, H Liang, A Wang, H Xu… - Advanced Energy …, 2023 - Wiley Online Library
Artificial intelligence/machine learning (AI/ML) applied to battery research is considered to
be a powerful tool for accelerating the research cycle. However, the development of …

Thermally stable polymer‐rich solid electrolyte interphase for safe lithium metal pouch cells

SJ Yang, N Yao, FN Jiang, J **e, SY Sun… - Angewandte …, 2022 - Wiley Online Library
Serious safety risks caused by the high reactivity of lithium metal against electrolytes
severely hamper the practicability of lithium metal batteries. By introducing unique …

40 Years of Low‐Temperature Electrolytes for Rechargeable Lithium Batteries

Z Li, YX Yao, S Sun, CB **, N Yao, C Yan… - Angewandte …, 2023 - Wiley Online Library
Rechargeable lithium batteries are one of the most appropriate energy storage systems in
our electrified society, as virtually all portable electronic devices and electric vehicles today …

Unity of opposites between soluble and insoluble lithium polysulfides in lithium–sulfur batteries

Z Wang, Y Li, H Ji, J Zhou, T Qian, C Yan - Advanced Materials, 2022 - Wiley Online Library
Rechargeable batteries based on Li–S chemistry show promise as being possible for next‐
generation energy storage devices because of their ultrahigh capacities and energy …