Engineering strategies for suppressing the shuttle effect in lithium–sulfur batteries

J Li, L Gao, F Pan, C Gong, L Sun, H Gao, J Zhang… - Nano-Micro Letters, 2024‏ - Springer
Abstract Lithium–sulfur (Li–S) batteries are supposed to be one of the most potential next-
generation batteries owing to their high theoretical capacity and low cost. Nevertheless, the …

Recycling of lithium‐ion batteries—current state of the art, circular economy, and next generation recycling

J Neumann, M Petranikova, M Meeus… - Advanced energy …, 2022‏ - Wiley Online Library
Being successfully introduced into the market only 30 years ago, lithium‐ion batteries have
become state‐of‐the‐art power sources for portable electronic devices and the most …

Flexible Hierarchical Co‐Doped NiS2@CNF‐CNT Electron Deficient Interlayer with Grass‐Roots Structure for Li–S Batteries

X Dai, G Lv, Z Wu, X Wang, Y Liu, J Sun… - Advanced Energy …, 2023‏ - Wiley Online Library
The key means to improve the performance of lithium–sulfur batteries (LSBs) is to reduce the
internal resistance by building an electronic/ionic pathway and to accelerate the conversion …

Achievements, challenges, and perspectives in the design of polymer binders for advanced lithium-ion batteries

Q He, J Ning, H Chen, Z Jiang, J Wang… - Chemical Society …, 2024‏ - pubs.rsc.org
Energy storage devices with high power and energy density are in demand owing to the
rapidly growing population, and lithium-ion batteries (LIBs) are promising rechargeable …

Current status and future prospects of metal–sulfur batteries

SH Chung, A Manthiram - Advanced Materials, 2019‏ - Wiley Online Library
Lithium–sulfur batteries are a major focus of academic and industrial energy‐storage
research due to their high theoretical energy density and the use of low‐cost materials. The …

A comprehensive understanding of lithium–sulfur battery technology

T Li, X Bai, U Gulzar, YJ Bai, C Capiglia… - Advanced Functional …, 2019‏ - Wiley Online Library
Lithium–sulfur batteries (LSBs) are regarded as a new kind of energy storage device due to
their remarkable theoretical energy density. However, some issues, such as the low …

Alternative binders for sustainable electrochemical energy storage–the transition to aqueous electrode processing and bio-derived polymers

D Bresser, D Buchholz, A Moretti, A Varzi… - Energy & …, 2018‏ - pubs.rsc.org
In this review, we discuss the most recent developments in the field of green binders for
batteries and supercapacitors and explain how they could decrease cost and environmental …

Lithium battery chemistries enabled by solid-state electrolytes

A Manthiram, X Yu, S Wang - Nature Reviews Materials, 2017‏ - nature.com
Solid-state electrolytes are attracting increasing interest for electrochemical energy storage
technologies. In this Review, we provide a background overview and discuss the state of the …

Lithium ion, lithium metal, and alternative rechargeable battery technologies: the odyssey for high energy density

T Placke, R Kloepsch, S Dühnen, M Winter - Journal of Solid State …, 2017‏ - Springer
Since their market introduction in 1991, lithium ion batteries (LIBs) have developed
evolutionary in terms of their specific energies (Wh/kg) and energy densities (Wh/L) …

Twinborn TiO 2–TiN heterostructures enabling smooth trap**–diffusion–conversion of polysulfides towards ultralong life lithium–sulfur batteries

T Zhou, W Lv, J Li, G Zhou, Y Zhao, S Fan… - Energy & …, 2017‏ - pubs.rsc.org
The practical use of lithium–sulfur (Li–S) batteries is largely hindered by their poor cycling
stability because of the shuttling of soluble lithium polysulfides (LiPSs) in a slow redox …