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Solid-state electrolytes: Advances and perspectives

Functional Materials Letters, 2020
All-solid-state Li batteries (ASSLiBs) that use solid-state electrolytes (SSEs) to replace liquid organic electrolytes are considered as promising next-generation energy storage devices because of their wide electrochemical potential windows, high safety, and high energy density. Therefore, ASSLiBs have attracted a lot of attention in recent years. In
Linchun He   +3 more
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Solid-State Electrolytes: Structural Approach

2019
The chapter systematically describes how the structural framework dictates the pathways for ion mobility (e.g., 1D, 2D and 3D) in solid-state electrolytes. In lithium-stuffed garnets, for example, Li+-ion shows three-dimensional nature of ion transport; whereas, the motion of same Li+-ion occurs in one- and two-dimensions in β-eucryptite (LiAlSiO4) and
Suresh Mulmi, Venkataraman Thangadurai
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Solid State Electrolytes

2022
Qaisar Abbas   +3 more
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Solid‐State Batteries with Polymer Electrolytes

2020
Expectations on solid-state lithium batteries are at their highest as they are seen as a “next-generation” technology, although solid polymer electrolytes have already enabled the commercialization of electrical vehicles for almost 10 years. These are powered by lithium metal batteries and use a polyethylene oxide (PEO)-based electrolyte. Thus, after a
Iojoiu, Cristina, Paillard, Elie
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Hydroborates as novel solid-state electrolytes

2021
Hydroborates are a promising class of superionic conductors for lithium and sodium all-solid-state batteries. They combine high ionic conductivity with (electro-) chemical and thermal stability and favorable mechanical properties. In this chapter, we elucidate their conductivity mechanism based on their structural chemistry and their crystal lattice ...
Remhof, Arndt, Cerny, Radovan
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Development of Sodium Solid-State Electrolytes for Solid-State batteries

Sodium-based batteries are emerging as one of the most promising alternatives in the realm of post-lithium electrochemical energy storage systems. The abundance and global availability of sodium make it both a sustainable and economically viable option for large-scale energy storage.
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Cationic Solid-State Electrolytes

2022
Zhengkun Xie   +4 more
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Chloride solid-state electrolytes for all-solid-state lithium batteries

Journal of Solid State Electrochemistry, 2022
Hao Wu   +4 more
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Innovative Research on Solid-State Electrolyte Materials for Solid-State Batteries

Applied and Computational Engineering
Solid-state batteries, utilizing solid electrolytes, are emerging as a promising next-generation energy storage technology due to their superior safety, energy density, and lifespan. This study investigates key performance bottlenecks in solid-state electrolytes, with a focus on enhancing ionic conductivity, interfacial stability, and maneuverability ...
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Laser Spectroscopy of Solid State Electrolytes

1981
Abstract : Optical spectroscopy and electrical and thermal measurements are described on the solid state electrolytes ('superionic conductors') such as silver tungstate and related compounds. (Author)
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