AbstractThe roles of interfaces in either blocking or enhancing ionic conduction in various types of solid electrolytes, including lithium, sodium, oxygen and other types of ion conductors as well as proton conductors, are critically reviewed. Two important fundamental interfacial phenomena, namely the formation of space charges and two-dimensional interfacial phases (complexions), can markedly alter ion transport along or across various types of interfaces, including grain and phase boundaries as well as free surfaces. Since the experiments and models of space charges have been well documented in literature, a new focus of this short review and viewpoint article is to propose and discuss an emerging opportunity of utilizing the formation a...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
High-performance solid-state energy storage and conversion devices are a vital technology component ...
Nanocomposites of a lithium ion conductor Li1.3Al 0.3Ti1.7(PO4)3 and electrode materials (TiO2 and F...
This book shares essential insights into the formation and properties of ionic interfaces based on t...
Solid state lithium batteries are widely accepted as promising candidates for next generation of var...
All-solid-state Li-ion battery based on solid electrolyte is a promising next-generation battery tec...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
The development of solid composite electrolytes or solid composite electrolytes (SCEs) consisting of...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
High-performance solid-state energy storage and conversion devices are a vital technology component ...
Nanocomposites of a lithium ion conductor Li1.3Al 0.3Ti1.7(PO4)3 and electrode materials (TiO2 and F...
This book shares essential insights into the formation and properties of ionic interfaces based on t...
Solid state lithium batteries are widely accepted as promising candidates for next generation of var...
All-solid-state Li-ion battery based on solid electrolyte is a promising next-generation battery tec...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
The development of solid composite electrolytes or solid composite electrolytes (SCEs) consisting of...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Benefiting from extremely high shear modulus and high ionic transference number, solid electrolytes ...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...