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Exploiting the paddle-wheel mechanism for the design of fast ion conductors
As an indispensable component in solid-state devices, superionic conductors can exhibit
liquid-like and exceptionally high alkali cation conductivity in their crystalline lattices. A …
liquid-like and exceptionally high alkali cation conductivity in their crystalline lattices. A …
A review on design considerations in polymer and polymer composite solid-state electrolytes for solid Li batteries
The current all-solid-state battery (ASSB) technology must stride through meticulous
research work to reap the much-sought benefits of high energy density, stable cycling life …
research work to reap the much-sought benefits of high energy density, stable cycling life …
A wide-temperature superior ionic conductive polymer electrolyte for lithium metal battery
Polymer electrolytes are one of promising candidates that can meet the demands of high
safety and stability of high-energy lithium metal batteries. However, the practical applications …
safety and stability of high-energy lithium metal batteries. However, the practical applications …
Paradigms of frustration in superionic solid electrolytes
Superionic solid electrolytes have widespread use in energy devices, but the fundamental
motivations for fast ion conduction are often elusive. In this Perspective, we draw upon …
motivations for fast ion conduction are often elusive. In this Perspective, we draw upon …
Establishing a unified framework for ion solvation and transport in liquid and solid electrolytes
Electrolytes used in rechargeable batteries must enable rapid translation of the working ion
between macroscopically separated electrodes. These electrolytes are, however, usually …
between macroscopically separated electrodes. These electrolytes are, however, usually …
Recent advances in the interface design of solid-state electrolytes for solid-state energy storage devices
High-ionic-conductivity solid-state electrolytes (SSEs) have been extensively explored for
electrochemical energy storage technologies because these materials can enhance the …
electrochemical energy storage technologies because these materials can enhance the …
Improving thermal stability and electrochemical performance of polymer solid electrolyte membranes with a novel TiO2@ PA-APP composite additive
M Li, N Zhao, C Wang, Y Zou, X Chen, Y Mei - Colloids and Surfaces A …, 2025 - Elsevier
Polymer solid electrolytes (PSEs) are still under the safety risk because of flammability and
low mechanical strength. Here a TiO 2 coated piperazine-modified ammonium …
low mechanical strength. Here a TiO 2 coated piperazine-modified ammonium …
Uniform zeolitic imidazolate framework coating via in situ recoordination for efficient polysulfide trap**
The “shuttle effect” in lithium sulfur battery system is the most prominent challenge
hampering its further development and application in the energy storage industry. Metal …
hampering its further development and application in the energy storage industry. Metal …
Understanding Ion Dynamics in Closoborate-Type Lithium-Ion Conductors on Different Time-Scales
The lithium-ion transport mechanism in 0.7 Li (CB9H10)–0.3 Li (CB11H12) complex hydride
solid electrolyte was studied over a wide time-scale (ns–ms) by choosing appropriate …
solid electrolyte was studied over a wide time-scale (ns–ms) by choosing appropriate …
Anion effects on the properties of OIPC/PVDF composites
Organic ionic plastic crystals (OIPCs) are promising solid electrolytes because of their
inherent advantages such as non-volatility, non-flammability, good thermal stability …
inherent advantages such as non-volatility, non-flammability, good thermal stability …