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Interfaces in lithium-ion batteries
~
Paolella, Andrea.
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Interfaces in lithium-ion batteries
Record Type:
Electronic resources : Monograph/item
Title/Author:
Interfaces in lithium-ion batteries/ by Andrea Paolella.
Author:
Paolella, Andrea.
Published:
Cham :Springer Nature Switzerland : : 2024.,
Description:
x, 112 p. :ill. (chiefly col.), digital ;24 cm.
[NT 15003449]:
Introduction to Lithium ion batteries -- Electrolyte: the operational window -- Interface at the negative electrode: the Solid Electrolyte Interface-SEI -- Interface at the positive electrolyte: the Cathode Electrolyte Interface-CEI -- Lithium Metal and beyond: when lithium metal dies -- Interfaces in polymer electrolytes -- Interfaces in ceramic electrolytes -- Lithium-Sulfur batteries: interfacial reactions -- Li-air batteries -- Characterization methods to analyze interfaces -- Conclusions and Perspectives.
Contained By:
Springer Nature eBook
Subject:
Lithium ion batteries. -
Online resource:
https://doi.org/10.1007/978-3-031-63713-1
ISBN:
9783031637131
Interfaces in lithium-ion batteries
Paolella, Andrea.
Interfaces in lithium-ion batteries
[electronic resource] /by Andrea Paolella. - Cham :Springer Nature Switzerland :2024. - x, 112 p. :ill. (chiefly col.), digital ;24 cm. - Green energy and technology,1865-3537. - Green energy and technology..
Introduction to Lithium ion batteries -- Electrolyte: the operational window -- Interface at the negative electrode: the Solid Electrolyte Interface-SEI -- Interface at the positive electrolyte: the Cathode Electrolyte Interface-CEI -- Lithium Metal and beyond: when lithium metal dies -- Interfaces in polymer electrolytes -- Interfaces in ceramic electrolytes -- Lithium-Sulfur batteries: interfacial reactions -- Li-air batteries -- Characterization methods to analyze interfaces -- Conclusions and Perspectives.
This book explores the critical role of interfaces in lithium-ion batteries, focusing on the challenges and solutions for enhancing battery performance and safety. It sheds light on the formation and impact of interfaces between electrolytes and electrodes, revealing how side reactions can diminish battery capacity. The book examines the nanochemistry of these reactions, emphasizing their profound influence on overall battery properties. It highlights the urgent need for battery material scientists to develop new additives and chemistries to addressthese interface-related issues, which have significant industrial implications. After providing a fundamental understanding of Li-ion batteries, the book analyses the evolution of the solid electrolyte interface (SEI) by considering various negative electrode materials such as graphite, silicon, lithium metal, and anode-less configurations. It also explores the chemistries of cathode materials, including their decomposition andmethods to mitigate unwanted oxidation. Furthermore, the book discusses the growing interest in solid-state batteries as a future technology, focusing on the reactivity of polymeric and ceramic solid electrolytes with anodes and cathodes, whichpresents additional challenges at the interface level. Finally, it addresses the specific challenges associated with emerging chemistries like Li-S and Li-air batteries, providing insights into polysulfide formation and LiOH conversion.
ISBN: 9783031637131
Standard No.: 10.1007/978-3-031-63713-1doiSubjects--Topical Terms:
1619081
Lithium ion batteries.
LC Class. No.: TK2945.L58
Dewey Class. No.: 621.312424
Interfaces in lithium-ion batteries
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Introduction to Lithium ion batteries -- Electrolyte: the operational window -- Interface at the negative electrode: the Solid Electrolyte Interface-SEI -- Interface at the positive electrolyte: the Cathode Electrolyte Interface-CEI -- Lithium Metal and beyond: when lithium metal dies -- Interfaces in polymer electrolytes -- Interfaces in ceramic electrolytes -- Lithium-Sulfur batteries: interfacial reactions -- Li-air batteries -- Characterization methods to analyze interfaces -- Conclusions and Perspectives.
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This book explores the critical role of interfaces in lithium-ion batteries, focusing on the challenges and solutions for enhancing battery performance and safety. It sheds light on the formation and impact of interfaces between electrolytes and electrodes, revealing how side reactions can diminish battery capacity. The book examines the nanochemistry of these reactions, emphasizing their profound influence on overall battery properties. It highlights the urgent need for battery material scientists to develop new additives and chemistries to addressthese interface-related issues, which have significant industrial implications. After providing a fundamental understanding of Li-ion batteries, the book analyses the evolution of the solid electrolyte interface (SEI) by considering various negative electrode materials such as graphite, silicon, lithium metal, and anode-less configurations. It also explores the chemistries of cathode materials, including their decomposition andmethods to mitigate unwanted oxidation. Furthermore, the book discusses the growing interest in solid-state batteries as a future technology, focusing on the reactivity of polymeric and ceramic solid electrolytes with anodes and cathodes, whichpresents additional challenges at the interface level. Finally, it addresses the specific challenges associated with emerging chemistries like Li-S and Li-air batteries, providing insights into polysulfide formation and LiOH conversion.
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