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Tailoring desolvation strategies for aqueous zinc-ion batteries
Aqueous zinc-ion batteries (AZIBs) are recognized as promising power supplies for energy
storage devices due to their high theoretical capacity, inherent safety, suitable redox …
storage devices due to their high theoretical capacity, inherent safety, suitable redox …
Gel polymer electrolytes for rechargeable batteries toward wide-temperature applications
Rechargeable batteries, typically represented by lithium-ion batteries, have taken a huge
leap in energy density over the last two decades. However, they still face material/chemical …
leap in energy density over the last two decades. However, they still face material/chemical …
PDOL-based solid electrolyte toward practical application: opportunities and challenges
Polymer solid-state lithium batteries (SSLB) are regarded as a promising energy storage
technology to meet growing demand due to their high energy density and safety. Ion …
technology to meet growing demand due to their high energy density and safety. Ion …
Low‐Temperature Sodium‐Ion Batteries: Challenges and Progress
As an ideal candidate for the next generation of large‐scale energy storage devices, sodium‐
ion batteries (SIBs) have received great attention due to their low cost. However, the …
ion batteries (SIBs) have received great attention due to their low cost. However, the …
40 Years of Low‐Temperature Electrolytes for Rechargeable Lithium Batteries
Rechargeable lithium batteries are one of the most appropriate energy storage systems in
our electrified society, as virtually all portable electronic devices and electric vehicles today …
our electrified society, as virtually all portable electronic devices and electric vehicles today …
Toward low‐temperature zinc‐ion batteries: strategy, progress, and prospect in vanadium‐based cathodes
Low‐temperature vanadium‐based zinc ion batteries (LT‐VZIBs) have attracted much
attention in recent years due to their excellent theoretical specific capacities, low cost, and …
attention in recent years due to their excellent theoretical specific capacities, low cost, and …
Revealing the anion–solvent interaction for ultralow temperature lithium metal batteries
Anion solvation in electrolytes can largely change the electrochemical performance of the
electrolytes, yet has been rarely investigated. Herein, three anions of bis …
electrolytes, yet has been rarely investigated. Herein, three anions of bis …
Enabling Ultralow‐Temperature (− 70° C) Lithium‐Ion Batteries: Advanced Electrolytes Utilizing Weak‐Solvation and Low‐Viscosity Nitrile Cosolvent
L Luo, K Chen, H Chen, H Li, R Cao, X Feng… - Advanced …, 2024 - Wiley Online Library
Low‐temperature performance of lithium‐ion batteries (LIBs) has always posed a significant
challenge, limiting their wide application in cold environments. In this work, the high …
challenge, limiting their wide application in cold environments. In this work, the high …
Designing temperature-insensitive solvated electrolytes for low-temperature lithium metal batteries
Lithium metal batteries face problems from sluggish charge transfer at interfaces, as well as
parasitic reactions between lithium metal anodes and electrolytes, due to the strong …
parasitic reactions between lithium metal anodes and electrolytes, due to the strong …
Rejuvenating propylene carbonate-based electrolytes by regulating the coordinated structure toward all-climate potassium-ion batteries
Potassium-ion batteries (PIBs) suffer from a restricted desolvation process, unstable
interfaces and severe capacity deterioration at extreme temperatures, which hinders their …
interfaces and severe capacity deterioration at extreme temperatures, which hinders their …