Design principle, optimization strategies, and future perspectives of anode-free configurations for high-energy rechargeable metal batteries

W Yao, P Zou, M Wang, H Zhan, F Kang… - Electrochemical Energy …, 2021 - Springer
Metal anodes (eg, lithium, sodium and zinc metal anodes) based on a unique
plating/stripping mechanism have been well recognized as the most promising anodes for …

Electroanalytical methods and their hyphenated techniques for novel ion battery anode research

J Zhao, M Cano, JJ Giner-Casares, R Luque… - Energy & Environmental …, 2020 - pubs.rsc.org
The physicochemical properties of the metal-ion battery anodes display a key role in the full
behavior and electrochemical performance of energy storage devices. Novel ion battery …

Hollow spheres of Mo2C@ C as synergistically confining sulfur host for superior Li–S battery cathode

Z Wang, X Xu, Z Liu, S Ji, SOA Idris, J Liu - Electrochimica Acta, 2020 - Elsevier
Lithium–sulfur batteries (LSBs) have attracted much attention in the field of electrochemical
energy storage due to their high energy density and low cost. However, the 'shuttle effect'of …

Challenges and Approaches to Designing High‐Energy Density Lithium‐Sulfur Pouch Cells

S Badhrinathan, H Dai, GP Pandey - Batteries & Supercaps, 2024 - Wiley Online Library
Abstract Lithium‐sulfur (Li− S) batteries are of great interest as next‐generation energy
storage devices in a wide variety of applications, due to their high specific capacity and the …

基于Fe/Fe3O4 双相催化剂的高性能硫正极.

贾圣慧, 晁云峰 - Journal of Zhengzhou University (Natural …, 2024 - search.ebscohost.com
针对锂硫电池中硫正极所面临的导电性差, 体积膨胀, 多硫化物穿梭和制备成本高等问题,
利用绿色且低成本的重金属离子絮凝剂吸附金属离子来制备Fe/Fe3 O4-C 硫正极载体材料 …