From laboratory innovations to materials manufacturing for lithium-based batteries

J Xiao, F Shi, T Glossmann, C Burnett, Z Liu - Nature Energy, 2023 - nature.com
While great progress has been witnessed in unlocking the potential of new battery materials
in the laboratory, further stepping into materials and components manufacturing requires us …

Fundamentals, status and challenges of direct recycling technologies for lithium ion batteries

H Ji, J Wang, J Ma, HM Cheng, G Zhou - Chemical Society Reviews, 2023 - pubs.rsc.org
Advancement in energy storage technologies is closely related to social development.
However, a significant conflict has arisen between the explosive growth in battery demand …

A LaCl3-based lithium superionic conductor compatible with lithium metal

YC Yin, JT Yang, JD Luo, GX Lu, Z Huang, JP Wang… - Nature, 2023 - nature.com
Inorganic superionic conductors possess high ionic conductivity and excellent thermal
stability but their poor interfacial compatibility with lithium metal electrodes precludes …

Recent progress and future perspective on practical silicon anode-based lithium ion batteries

L Sun, Y Liu, R Shao, J Wu, R Jiang, Z Jin - Energy Storage Materials, 2022 - Elsevier
Silicon anode lithium-ion batteries (LIBs) have received tremendous attention because of
their merits, which include a high theoretical specific capacity, low working potential, and …

Interfacial issues and modification of solid electrolyte interphase for Li metal anode in liquid and solid electrolytes

OB Chae, BL Lucht - Advanced Energy Materials, 2023 - Wiley Online Library
The high energy density required for the next generation of lithium batteries will likely be
enabled by a shift toward lithium metal anode from the conventional intercalation‐based …

Tailoring inorganic–polymer composites for the mass production of solid-state batteries

LZ Fan, H He, CW Nan - Nature Reviews Materials, 2021 - nature.com
Solid-state batteries (SSBs) have recently been revived to increase the energy density and
eliminate safety concerns associated with conventional Li-ion batteries with flammable liquid …

Li-S batteries: challenges, achievements and opportunities

H Raza, S Bai, J Cheng, S Majumder, H Zhu… - Electrochemical Energy …, 2023 - Springer
To realize a low-carbon economy and sustainable energy supply, the development of
energy storage devices has aroused intensive attention. Lithium-sulfur (Li-S) batteries are …

Solid‐state Li–metal batteries: challenges and horizons of oxide and sulfide solid electrolytes and their interfaces

KJ Kim, M Balaish, M Wadaguchi… - Advanced Energy …, 2021 - Wiley Online Library
The introduction of new, safe, and reliable solid‐electrolyte chemistries and technologies
can potentially overcome the challenges facing their liquid counterparts while widening the …

Progress and prospects of inorganic solid‐state electrolyte‐based all‐solid‐state pouch cells

C Wang, JT Kim, C Wang, X Sun - Advanced Materials, 2023 - Wiley Online Library
All‐solid‐state batteries have piqued global research interest because of their
unprecedented safety and high energy density. Significant advances have been made in …

Promoting favorable interfacial properties in lithium-based batteries using chlorine-rich sulfide inorganic solid-state electrolytes

D Zeng, J Yao, L Zhang, R Xu, S Wang, X Yan… - Nature …, 2022 - nature.com
The use of inorganic solid-state electrolytes is considered a viable strategy for developing
high-energy Li-based metal batteries. However, suppression of parasitic interfacial reactions …