Polymer nanocomposites in supercapacitors / edited by Soney C. George, Sam John, Sreelakshmi Rajeevan.

Other author George, Soney C.
Other author John, Sam (Professor of Chemistry)
Other author Rajeevan, Sreelakshmi.
Format Electronic
EditionFirst edition.
Publication InfoBoca Raton : CRC Press, 2023.
Descriptionpages cm.
Supplemental ContentFull text available from Taylor & Francis eBooks
Subjects

SeriesEmerging materials and technologies
Contents Polymers for supercapacitors : an overview -- Graphene-based polymeric supercapacitors -- CNT based polymeric supercapacitors -- Flexible and stretchable supercapacitors -- Halloysite filled fluoropolymer nanocomposites -- Carbon-based supercapacitors -- Bio-nanocomposites systems for supercapacitor applications -- Nanocellulose based supercapacitors -- MOF based nanocomposites for supercapacitor applications -- Theory, modelling, and simulation in supercapacitors -- Future perspectives in polymeric supercapacitors.
Abstract "Supercapacitors are energy storing devices, gaining great scientific attention due to their excellent cycling life, charge-discharge stability, energy and power density. The central theme of this book is to review the multiple applications of polymer nanocomposites in supercapacitor, in a comprehensive manner including discussions pertaining to various unresolved issues and new challenges in the subject area. It collectively illustrates polymer nanocomposite preparation and working mechanism as an electrode, binder, separator and electrolyte. This edited volume also explains different components of supercapacitors including theory, modelling and simulation aspects. Features: Covers the synthesis and properties of polymer nanocomposites for varied usage. Explains role of different types of nanofillers in polymeric systems for developing supercapacitor. Highlights theory, modelling and simulation of polymeric supercapacitors. Gives an illustrative overview of the multiple applications of polymers and their nanocomposites. Includes graphene, CNT, nanoparticle, carbon and nano-cellulose based supercapacitors. This book aims at Graduate students and researchers in Materials Science, Polymer Science, Polymer Physics, Electrochemistry, Electronic Materials, Energy Management, Electronic Engineering, Polymer Engineers, and Chemical Engineering"-- Provided by publisher.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Genre/formElectronic books.
LCCN 2022017071
ISBN9781032005454 (hardback)
ISBN9781032005492 (paperback)
ISBN(ebook)

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