Advances in lithium–sulfur batteries: from academic research to commercial viability

Y Chen, T Wang, H Tian, D Su, Q Zhang… - Advanced …, 2021 - Wiley Online Library
Lithium‐ion batteries, which have revolutionized portable electronics over the past three
decades, were eventually recognized with the 2019 Nobel Prize in chemistry. As the energy …

Review on the binders for sustainable high‐energy‐density lithium ion batteries: status, solutions, and prospects

W Dou, M Zheng, W Zhang, T Liu… - Advanced Functional …, 2023 - Wiley Online Library
The upsurging demand for electric vehicles and the rapid consumption of lithium‐ion
batteries (LIBs) calls for LIBs to possess high energy density and resource sustainability …

P‐Doped NiTe2 with Te‐Vacancies in Lithium–Sulfur Batteries Prevents Shuttling and Promotes Polysulfide Conversion

W Yao, C Tian, C Yang, J Xu, Y Meng… - Advanced …, 2022 - Wiley Online Library
Abstract Lithium–sulfur (Li–S) batteries have been hindered by the shuttle effect and
sluggish polysulfide conversion kinetics. Here, a P‐doped nickel tellurium electrocatalyst …

ZnS-SnS@ NC heterostructure as robust lithiophilicity and sulfiphilicity mediator toward high-rate and long-life lithium–sulfur batteries

W Yao, W Zheng, J Xu, C Tian, K Han, W Sun, S Xiao - ACS nano, 2021 - ACS Publications
Lithium–sulfur (Li–S) batteries are severely hindered by the low sulfur utilization and short
cycling life, especially at high rates. One of the effective solutions to address these problems …

Establishing reaction networks in the 16-electron sulfur reduction reaction

R Liu, Z Wei, L Peng, L Zhang, A Zohar, R Schoeppner… - Nature, 2024 - nature.com
The sulfur reduction reaction (SRR) plays a central role in high-capacity lithium sulfur (Li-S)
batteries. The SRR involves an intricate, 16-electron conversion process featuring multiple …

Engineering cooperative catalysis in Li–S batteries

J Qin, R Wang, P Xiao, D Wang - Advanced Energy Materials, 2023 - Wiley Online Library
Abstract Lithium–sulfur (Li–S) batteries are regarded to be one of the most promising next‐
generation batteries owing to the merits of high theoretical capacity and low cost. However …

Selective catalysis remedies polysulfide shuttling in lithium‐sulfur batteries

W Hua, H Li, C Pei, J Xia, Y Sun, C Zhang… - Advanced …, 2021 - Wiley Online Library
The shuttling of soluble lithium polysulfides between the electrodes leads to serious capacity
fading and excess use of electrolyte, which severely bottlenecks practical use of Li‐S …

Facile Synthesis of Heterostructured MoS2–MoO3 Nanosheets with Active Electrocatalytic Sites for High-Performance Lithium–Sulfur Batteries

D Lei, W Shang, X Zhang, Y Li, S Qiao, Y Zhong… - ACS …, 2021 - ACS Publications
In order to overcome the shuttling effect of soluble polysulfides in lithium–sulfur (Li–S)
batteries, we have designed and synthesized a creative MoS2–MoO3/carbon shell (MoS2 …

A review of the design of advanced binders for high‐performance batteries

F Zou, A Manthiram - Advanced Energy Materials, 2020 - Wiley Online Library
Polymer binders as a critical component in rechargeable batteries provide the electrodes
with interconnected structures and mechanical strength to maintain the electronic/ionic …

Fundamental, application and opportunities of single atom catalysts for Li-S batteries

T Zhou, J Liang, S Ye, Q Zhang, J Liu - Energy Storage Materials, 2023 - Elsevier
Li-S batteries are regarded as promising energy storage devices for future electric vehicles
(EVs) due to the advantages of high energy density and low cost. However, their practical …