Rational Design of High‐Loading Electrodes with Superior Performances Toward Practical Application for Energy Storage Devices

B Tang, Y Wei, R Jia, F Zhang, Y Tang - Small, 2024 - Wiley Online Library
High‐loading electrodes play a crucial role in designing practical high‐energy batteries as
they reduce the proportion of non‐active materials, such as current separators, collectors …

Cracking‐Controlled Slurry Coating of Mosaic Electrode for Flexible and High‐Performance Lithium–Sulfur Battery

Y Luo, L Wang, Z Wei, Q Huang… - Advanced Energy …, 2023 - Wiley Online Library
The realization of high‐performance thick S cathodes is a critical step to achieve high
energy density lithium–sulfur (Li–S) batteries. However, it normally requires a complicated …

Unraveling the dual functionality of high‐donor‐number anion in lean‐electrolyte lithium‐sulfur batteries

H Chu, J Jung, H Noh, S Yuk, J Lee… - Advanced Energy …, 2020 - Wiley Online Library
Minimizing electrolyte use is essential to achieve high practical energy density of lithium–
sulfur (Li–S) batteries. However, the sulfur cathode is more readily passivated under a lean …

Low tortuosity thick cathode design in high loading lithium sulfur batteries enabled by magnetic hollow carbon fibers

J Ma, Y Qiao, M Huang, H Shang, H Zhou, T Li… - Applied Surface …, 2021 - Elsevier
The sluggish kinetic is the key factor to restrain electrochemical performance of high sulfur
loading thick electrode. With thickness increase, the high tortuosity and long ion-path way …

Polyhedral TiO2 particle-based cathode for Li-S batteries with high volumetric capacity and high performance in lean electrolyte

J Lee, JH Moon - Chemical Engineering Journal, 2020 - Elsevier
Achieving high volumetric capacity in Li-S batteries featuring light weight opens up unique
applications. To address this, we demonstrate a high tap-density cathode based on …

Microreactor Strategy to Capture Sulfur for Lithium–Sulfur Batteries

Y You, J Ni, Y Cai, Q Xiong, X Chen, S Hu… - ACS Sustainable …, 2024 - ACS Publications
The limited conductivity and shuttle effect tie the sulfur cathode down. Carbon nanofibers
(CNFs) offer long-range conductivity with cost effectiveness but fail for the wanted backing …

锂电池百篇论文点评(2019.06. 01-2019.07. 31)

田丰, 起文斌, 张华, 金周, 季洪祥, 田孟羽… - 储能科学与 …, 2019 - esst.cip.com.cn
该文是一篇近两个月的锂电池文献评述, 以" lithium" 和" batter*" 为关键词检索了Web of
Science 从2019 年6 月1 日至2019 年7 月31 日上线的锂电池研究论文, 共有3486 篇 …

A Stress-Tolerant Sulfur Cathode with Super-Stretchable Polymer Coating Via Initiated Chemical Vapor Deposition

J Lee, MS Oh, KN Jung, MH Ryu, G Doo, J Jung, SG Im… - papers.ssrn.com
The mechanical deterioration of sulfur cathode during cycling due to a repeated voltage
change is one of the factors limiting the cycling stability of lithium sulfur batteries. Herein, we …

Ditch‐Structured Sulfur Cathode: Enhancing the Uniformity of Sulfur Redox Reaction in a Thick Sulfur Electrode

J Lee, H Kwack, M Kyung Kim, W Jo, H Noh… - …, 2021 - Wiley Online Library
Increasing of sulfur loading in a sulfur cathode is a direct approach to improve the energy
density of lithium sulfur (Li− S) batteries. However, the inhomogeneous redox reaction in …