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A glimpse on all-solid-state Li-ion battery (ASSLIB) performance based on novel solid polymer electrolytes: a topical review
by
Arya Anil
, Sharma, A L
in
Digital electronics
/ Electric appliances
/ Electric bridges
/ Electric vehicles
/ Electrolytes
/ Flux density
/ Lithium
/ Lithium-ion batteries
/ Materials science
/ Molten salt electrolytes
/ Polymers
/ Rechargeable batteries
/ Solid electrolytes
/ Solid state
2020
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A glimpse on all-solid-state Li-ion battery (ASSLIB) performance based on novel solid polymer electrolytes: a topical review
by
Arya Anil
, Sharma, A L
in
Digital electronics
/ Electric appliances
/ Electric bridges
/ Electric vehicles
/ Electrolytes
/ Flux density
/ Lithium
/ Lithium-ion batteries
/ Materials science
/ Molten salt electrolytes
/ Polymers
/ Rechargeable batteries
/ Solid electrolytes
/ Solid state
2020
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Do you wish to request the book?
A glimpse on all-solid-state Li-ion battery (ASSLIB) performance based on novel solid polymer electrolytes: a topical review
by
Arya Anil
, Sharma, A L
in
Digital electronics
/ Electric appliances
/ Electric bridges
/ Electric vehicles
/ Electrolytes
/ Flux density
/ Lithium
/ Lithium-ion batteries
/ Materials science
/ Molten salt electrolytes
/ Polymers
/ Rechargeable batteries
/ Solid electrolytes
/ Solid state
2020
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A glimpse on all-solid-state Li-ion battery (ASSLIB) performance based on novel solid polymer electrolytes: a topical review
Journal Article
A glimpse on all-solid-state Li-ion battery (ASSLIB) performance based on novel solid polymer electrolytes: a topical review
2020
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Overview
All-solid-state batteries are swiftly gaining the attention of the research community owing to their widespread applications in electric vehicles, digital electronics, portable appliances, etc. A battery comprises three components: cathode, anode and electrolyte. An electrolyte is the heart of the battery and plays a crucial role in the overall performance of the battery. In order to make the review more focused, all-solid-state Li-ion batteries (ASSLIBs) have been considered. This review covers the architecture of ASSLIBs, advantages, and characteristics of the solid polymer electrolytes. The important preparation methods are summarized, followed by the characterizations for testing the suitability of electrolytes for solid-state batteries. The discussion is focused on the ‘state of the art’ in the field of solid-state batteries, device fabrication, and comparison in terms of capacity, energy density, and cyclic stability. In the last section, the ion conduction mechanism in different solid polymer electrolytes is discussed. Finally, it is tried to give a possible outlook for developing future hybrid and multifunctional electrolytes which can act as a bridge for developing solid-state batteries covering a broad range of applications.
Publisher
Springer Nature B.V
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