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Nanotechnology in Advanced Electrochemical Power Sources

Book

Nanotechnology in Advanced Electrochemical Power Sources

DOI link for Nanotechnology in Advanced Electrochemical Power Sources

Nanotechnology in Advanced Electrochemical Power Sources book

Nanotechnology in Advanced Electrochemical Power Sources

DOI link for Nanotechnology in Advanced Electrochemical Power Sources

Nanotechnology in Advanced Electrochemical Power Sources book

Edited ByS. R. S. Prabaharan, M. Siluvai Michael
Edition 1st Edition
First Published 2013
eBook Published 23 October 2014
Pub. Location New York
Imprint Jenny Stanford Publishing
DOI https://doi.org/10.1201/b15492
Pages 380
eBook ISBN 9780429071652
Subjects Engineering & Technology, Physical Sciences
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Prabaharan, S.R.S., & Michael, M.S. (Eds.). (2013). Nanotechnology in Advanced Electrochemical Power Sources (1st ed.). Pan Stanford. https://doi.org/10.1201/b15492

ABSTRACT

The challenge of providing adequate power on an indefinite basis without causing long-term damage to the environment requires a versatile means of energy conversion and storage. As such, electrical energy storage is becoming more vital today than at any time in human history. Electrochemical systems, such as batteries, supercapacitors, fuel cells,

TABLE OF CONTENTS

chapter 1|22 pages

Redox Reaction in Size-Controlled LixFePO4

ByAtsuo Yamada

chapter 2|28 pages

Orthosilicate-Based Cathode Materials for Lithium-Ion Batteries Robert Dominko

chapter 3|38 pages

Nanoscale Conversion Materials for Electrochemical Energy Storage

ByMaximilian Fichtner

chapter 4|38 pages

Nanoengineered Lithium–Air Secondary Batteries: Fundamental Understanding and the Current Status of Development

ByDevelopment M. S. Michael, Junichi Kawamura, Naoaki Kuwata, S. R. S. Prabaharan

chapter 5|50 pages

Nano Anode Materials for Lithium-Ion Batteries

ByLijun Fu, Yi Shi, Shu Tian, Yuping Wu, Teunis van Ree

chapter 6|22 pages

Interface between Transition Metal Oxides–Based Electrodes and Lithium Salts Electrolytes: A Physicochemical Approach

BySylvain Franger

chapter 7|22 pages

Electron Spin Resonance Studies of Lithium-Ion Battery Materials

ByMaterials Nail Suleimanov, S. R. S. Prabaharan, Dinar Abdullin, M. S. Michael

chapter 8|28 pages

Graphene and Graphene-Based Nanocomposites for Electrochemical Energy Storage

ByMarappan Sathish, Itaru Honma

chapter 9|32 pages

Carbon Nanotubes for Energy Storage Application

ByElzbieta Frackowiak, Grzegorz Lota, Krzysztof Fic

chapter 10|36 pages

Manganese Oxide/Carbon Nanotube Nanocomposites for Electrochemical Energy Storage Applications

BySang-Bok Ma, Kwang-Bum Kim

chapter 11|22 pages

Manganese Oxides for Supercapacitors

ByShinichi Komaba, Naoaki Yabuuchi, Tomoya Tsuchikawa

chapter 12|14 pages

High-Voltage Electrode/Electrolyte Interface in ECs and Hybrid Capacitors

ByKatsuhiko Naoi, Kazumi Chiba
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