A perspective toward practical lithium–sulfur batteries

M Zhao, BQ Li, XQ Zhang, JQ Huang… - ACS Central …, 2020 - ACS Publications
Lithium–sulfur (Li–S) batteries have long been expected to be a promising high-energy-
density secondary battery system since their first prototype in the 1960s. During the past …

Review on Li deposition in working batteries: from nucleation to early growth

XR Chen, BC Zhao, C Yan, Q Zhang - Advanced Materials, 2021 - Wiley Online Library
Lithium (Li) metal is one of the most promising alternative anode materials of next‐
generation high‐energy‐density batteries demanded for advanced energy storage in the …

A robust all-organic protective layer towards ultrahigh-rate and large-capacity Li metal anodes

S Li, J Huang, Y Cui, S Liu, Z Chen, W Huang… - Nature …, 2022 - nature.com
The low cycling efficiency and uncontrolled dendrite growth resulting from an unstable and
heterogeneous lithium–electrolyte interface have largely hindered the practical application …

Li2CO3/LiF‐Rich Heterostructured Solid Electrolyte Interphase with Superior Lithiophilic and Li+‐Transferred Characteristics via Adjusting Electrolyte Additives

D Wu, J He, J Liu, M Wu, S Qi, H Wang… - Advanced Energy …, 2022 - Wiley Online Library
The structure and components of solid electrolyte interphase (SEI) is crucial to direct the
growth of lithium particles. However, it is hard to have control over them. Herein, an SEI that …

[HTML][HTML] Concentrated dual-cation electrolyte strategy for aqueous zinc-ion batteries

Y Zhu, J Yin, X Zheng, AH Emwas, Y Lei… - Energy & …, 2021 - pubs.rsc.org
Rechargeable Zn-ion batteries are highly promising for stationary energy storage because
of their low cost and intrinsic safety. However, due to the poor reversibility of Zn anodes and …

[PDF][PDF] Stabilizing metal battery anodes through the design of solid electrolyte interphases

Q Zhao, S Stalin, LA Archer - Joule, 2021 - cell.com
The solid electrolyte interphase (SEI) is a chemically distinct material phase formed by a
combination of electrochemical reduction and chemical reactions at both the explicit and …

[HTML][HTML] 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 …

Anion–diluent pairing for stable high-energy Li metal batteries

C Zhu, C Sun, R Li, S Weng, L Fan, X Wang… - ACS Energy …, 2022 - ACS Publications
Rechargeable Li metal batteries (LMBs) have attracted wide attention as promising
candidates for the next generation of energy-storage systems. However, limited Coulombic …

Surface engineering toward stable lithium metal anodes

G Lu, J Nai, D Luan, X Tao, XW Lou - Science Advances, 2023 - science.org
The lithium (Li) metal anode (LMA) is susceptible to failure due to the growth of Li dendrites
caused by an unsatisfied solid electrolyte interface (SEI). With this regard, the design of …

[HTML][HTML] Codoped porous carbon nanofibres as a potassium metal host for nonaqueous K-ion batteries

S Li, H Zhu, Y Liu, Z Han, L Peng, S Li, C Yu… - Nature …, 2022 - nature.com
Potassium metal is an appealing alternative to lithium as an alkali metal anode for future
electrochemical energy storage systems. However, the use of potassium metal is hindered …