Inherent thermal-responsive strategies for safe lithium batteries

JX Guo, C Gao, H Liu, F Jiang, Z Liu, T Wang… - Journal of Energy …, 2024 - Elsevier
Safe batteries are the basis for next-generation application scenarios such as portable
energy storage devices and electric vehicles, which are crucial to achieving carbon …

Safer solid‐state lithium metal batteries: Mechanisms and strategies

SJ Yang, JK Hu, FN Jiang, H Yuan, HS Park… - InfoMat, 2024 - Wiley Online Library
Solid‐state batteries that employ solid‐state electrolytes (SSEs) to replace routine liquid
electrolytes are considered to be one of the most promising solutions for achieving high …

In situ polymerization of 1, 3-dioxolane and formation of fluorine/boron-rich interfaces enabled by film-forming additives for long-life lithium metal batteries

T Li, K Chen, B Yang, K Li, B Li, M He, L Yang… - Chemical …, 2024 - pubs.rsc.org
In situ polymerized 1, 3-dioxolane (PDOL) is widely utilized to construct solid polymer
electrolytes because of its high room-temperature ionic conductivity and good compatibility …

A temperature-dependent solvating electrolyte for wide-temperature and fast-charging lithium metal batteries

M Fang, X Yue, Y Dong, Y Chen, Z Liang - Joule, 2024 - cell.com
High safety and stable wide-temperature operation are essential for lithium metal batteries
(LMBs). Herein, we designed an amide-based eutectic electrolyte composed of N-methyl-2 …

Building Stable Solid‐State Potassium Metal Batteries

W Lyu, X Yu, Y Lv, AM Rao, J Zhou, B Lu - Advanced Materials, 2024 - Wiley Online Library
Solid‐state potassium metal batteries (SPMBs) are promising candidates for the next
generation of energy storage systems for their low cost, safety, and high energy density …

Eutectic‐based polymer electrolyte with the enhanced lithium salt dissociation for high‐performance lithium metal batteries

D Zhang, Y Liu, Z Sun, Z Liu, X Xu, L Xi… - Angewandte Chemie …, 2023 - Wiley Online Library
The deployment of lithium metal anode in solid‐state batteries with polymer electrolytes has
been recognized as a promising approach to achieving high‐energy‐density technologies …

Tandem design of functional separators for Li metal batteries with long‐term stability and high‐rate capability

L Ding, X Yue, Y Chen, Z Wang, J Liu… - Advanced Functional …, 2023 - Wiley Online Library
The lithium (Li) dendrite growth seriously hinders the applications of lithium metal batteries
(LMBs). Numerous methods have been proposed to restrict the formation of Li dendrites by …

High‐Performance Solid Lithium Metal Batteries Enabled by LiF/LiCl/LiIn Hybrid SEI via InCl3‐Driven In Situ Polymerization of 1,3‐Dioxolane

T Yang, W Zhang, Y Liu, J Zheng, Y Xia, X Tao, Y Wang… - Small, 2023 - Wiley Online Library
Abstract The use of poly (1, 3‐dioxolane)(PDOL) electrolyte for lithium batteries has gained
attention due to its high ionic conductivity, low cost, and potential for large‐scale …

Temperature-Responsive Solvation of Deep Eutectic Electrolyte Enabling Mesocarbon Microbead Anode for High-Temperature Li-Ion Batteries

Q Hou, P Li, Y Qi, Y Wang, M Huang, C Shen… - ACS Energy …, 2023 - ACS Publications
Deep eutectic electrolytes (DEEs) provide a safe solution for high-temperature batteries.
While promising, the DEEs/electrode interphase chemistry and the underlying temperature …

Recent advances in deep eutectic solvents for next-generation lithium batteries: Safer and greener

K Zhou, X Dai, P Li, L Zhang, X Zhang, C Wang… - Progress in Materials …, 2024 - Elsevier
Deep eutectic solvents (DESs), renowned for their cost-effectiveness and eco-friendliness,
have attracted widespread attention in the field of energy storage, especially for lithium-ion …