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PDOL-Based Solid Electrolyte Toward Practical Application: Opportunities and Challenges
by
Yan, Xiaohong
, Xu, Hong
, Wang, Li
, He, Xiangming
, Yang, Hua
, Jing, Maoxiang
in
Assembly
/ Commercialization
/ Electrolytes
/ Energy storage
/ Interface stability
/ Ion currents
/ Lithium batteries
/ Molten salt electrolytes
/ Polydioxolanes
/ Polymerization
/ Polymers
/ Room temperature
/ Solid electrolytes
/ Solid state
2024
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PDOL-Based Solid Electrolyte Toward Practical Application: Opportunities and Challenges
by
Yan, Xiaohong
, Xu, Hong
, Wang, Li
, He, Xiangming
, Yang, Hua
, Jing, Maoxiang
in
Assembly
/ Commercialization
/ Electrolytes
/ Energy storage
/ Interface stability
/ Ion currents
/ Lithium batteries
/ Molten salt electrolytes
/ Polydioxolanes
/ Polymerization
/ Polymers
/ Room temperature
/ Solid electrolytes
/ Solid state
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
PDOL-Based Solid Electrolyte Toward Practical Application: Opportunities and Challenges
by
Yan, Xiaohong
, Xu, Hong
, Wang, Li
, He, Xiangming
, Yang, Hua
, Jing, Maoxiang
in
Assembly
/ Commercialization
/ Electrolytes
/ Energy storage
/ Interface stability
/ Ion currents
/ Lithium batteries
/ Molten salt electrolytes
/ Polydioxolanes
/ Polymerization
/ Polymers
/ Room temperature
/ Solid electrolytes
/ Solid state
2024
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PDOL-Based Solid Electrolyte Toward Practical Application: Opportunities and Challenges
Journal Article
PDOL-Based Solid Electrolyte Toward Practical Application: Opportunities and Challenges
2024
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Overview
HighlightsThe poly(1,3-dioxolane) (PDOL) electrolyte demonstrates promising potential for practical application due to its advantages in in-situ polymerization process, high ionic conductivity, and long cycle life.This review focuses on the polymerization mechanism, composite innovation, and application of PDOL electrolytes.This review provides a comprehensive summary of the challenges associated with the PDOL electrolyte and makes forward-looking recommendations.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 conductivity, interface stability and battery assembly process are still the main challenges to hurdle the commercialization of SSLB. As the main component of SSLB, poly(1,3-dioxolane) (PDOL)-based solid polymer electrolytes polymerized in-situ are becoming a promising candidate solid electrolyte, for their high ion conductivity at room temperature, good battery electrochemical performances, and simple assembly process. This review analyzes opportunities and challenges of PDOL electrolytes toward practical application for polymer SSLB. The focuses include exploring the polymerization mechanism of DOL, the performance of PDOL composite electrolytes, and the application of PDOL. Furthermore, we provide a perspective on future research directions that need to be emphasized for commercialization of PDOL-based electrolytes in SSLB. The exploration of these schemes facilitates a comprehensive and profound understanding of PDOL-based polymer electrolyte and provides new research ideas to boost them toward practical application in solid-state batteries.
Publisher
Springer Nature B.V
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