Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage
This PhD thesis presents the latest findings on the tunable surface chemistry of graphene/graphene oxide by systematically investigating the tuning of oxygen and nitrogen containing functional groups using an innovative carbonization and ammonia treatment. In addition, novel macroscopic assemblies or hybrids of graphene were produced, laying the theoretical foundation for developing graphene-based energy storage devices. This work will be of interest to university researchers, R&D engineers and graduate students working with carbon materials, energy storage and nanotechnology.

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Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage
This PhD thesis presents the latest findings on the tunable surface chemistry of graphene/graphene oxide by systematically investigating the tuning of oxygen and nitrogen containing functional groups using an innovative carbonization and ammonia treatment. In addition, novel macroscopic assemblies or hybrids of graphene were produced, laying the theoretical foundation for developing graphene-based energy storage devices. This work will be of interest to university researchers, R&D engineers and graduate students working with carbon materials, energy storage and nanotechnology.

54.99 In Stock
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage

Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage

by Cheng-Meng Chen
Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage

Surface Chemistry and Macroscopic Assembly of Graphene for Application in Energy Storage

by Cheng-Meng Chen

Paperback(Softcover reprint of the original 1st ed. 2016)

$54.99 
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Overview

This PhD thesis presents the latest findings on the tunable surface chemistry of graphene/graphene oxide by systematically investigating the tuning of oxygen and nitrogen containing functional groups using an innovative carbonization and ammonia treatment. In addition, novel macroscopic assemblies or hybrids of graphene were produced, laying the theoretical foundation for developing graphene-based energy storage devices. This work will be of interest to university researchers, R&D engineers and graduate students working with carbon materials, energy storage and nanotechnology.


Product Details

ISBN-13: 9783662517246
Publisher: Springer Berlin Heidelberg
Publication date: 08/23/2016
Series: Springer Theses
Edition description: Softcover reprint of the original 1st ed. 2016
Pages: 146
Product dimensions: 6.10(w) x 9.25(h) x (d)

Table of Contents

Literature review and research background.- Structural evolution of the thermally reduced graphene nanosheets during annealing.- Hierarchical amination of graphene for electrochemical energy storage.- Free standing graphene film with high conductivity by thermal reduction of self-assembled graphene oxide film.- Template-directed macroporous ‘bubble’ graphene film for the application in supercapacitors.- SnO2@graphene composite electrodes for the application in electrochemical energy storage.- Main conclusions and plan of further work.

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