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Ceramic and Specialty Electrolytes for Energy Storage Devices

Ceramic and Specialty Electrolytes for Energy Storage Devices

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  • More about Ceramic and Specialty Electrolytes for Energy Storage Devices

Ceramic and Specialty Electrolytes for Energy Storage Devices,Volume II, investigates recent progress and challenges in ceramic solid and quasi-solid electrolytes and specialty electrolytes for energy storage devices. It covers solid-state electrolytes based on oxides, sulfide-type ion conductor electrolytes, NASICON, and garnet-type ionic conductors, as well as sodium-ion batteries, transparent electrolytes, non-platinum-based cathode electrocatalysts, non-platinum-based anode electrocatalysts, and ionic liquid-based electrolytes.

Format: Hardback
Length: 309 pages
Publication date: 05 April 2021
Publisher: Taylor & Francis Ltd


Ceramic and Specialty Electrolytes for Energy Storage Devices,Volume II, delves into the latest advancements and complexities in a diverse array of ceramic solid and quasi-solid electrolytes and specialty electrolytes for energy storage devices. It provides a comprehensive analysis of how these electrolyte properties impact the performance of various energy storage systems.

Key Features:

• Offers a comprehensive perspective on the performance criteria and ion transport mechanisms in solid polymer electrolytes.
• Discusses solid-state electrolytes based on oxides (such as perovskite and anti-perovskite) and sulfide-type ion conductor electrolytes for lithium-ion batteries, followed by solid-state electrolytes based on NASICON and garnet-type ionic conductors.
• Examines electrolytes used for high-temperature lithium-ion batteries, low-temperature lithium-ion batteries, and magnesium-ion batteries.
• Describes sodium-ion batteries, transparent electrolytes for energy storage devices, non-platinum-based cathode electrocatalysts for direct methanol fuel cells, non-platinum-based anode electrocatalysts for direct methanol fuel cells, and ionic liquid-based electrolytes for supercapacitor applications.
• Suitable for readers with a background in batteries as well as newcomers to the field, this book serves as a valuable resource for researchers and engineers engaged in the development of next-generation energy storage devices, including materials and chemical engineers, as well as those in related fields.

Weight: 650g
Dimension: 241 x 217 x 26 (mm)
ISBN-13: 9780367701444

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