High-performance carbon-based optoelectronic nanodevices / Yanjie Su.
2022
TK7874.84 .S8 2022
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Details
Title
High-performance carbon-based optoelectronic nanodevices / Yanjie Su.
Author
Su, Yanjie, author.
ISBN
9789811654978 (electronic bk.)
9811654972 (electronic bk.)
9789811654961
9811654964
9811654972 (electronic bk.)
9789811654961
9811654964
Published
Singapore : Springer, [2022]
Copyright
©2022
Language
English
Description
1 online resource : illustrations (chiefly color)
Item Number
10.1007/978-981-16-5497-8 doi
Call Number
TK7874.84 .S8 2022
Dewey Decimal Classification
621.381/045
Summary
This book focuses on the photoelectric nanodevices based on carbon nanostructures, such as carbon nanotubes, graphene and related heterojunctions. The synthesis of carbon nanostructures and device fabrication are simply given. The interface charge transfer and the performance enhancement in the photodetectors and solar cells are comprehensively introduced. Importantly, carbon allotropes behave as high-mobility conductors or bandgap-tunable semiconductors depending on the atomic arrangements, the direct motivation is to fabricate all-carbon nanodevices using these carbon nanomaterials as building blocks. The photoelectric nanodevices based on all-carbon nanostructures have increasingly attracted attention in the future. The book offers a valuable reference guide to carbon-based photoelectric devices for researchers and graduate school students in the field. It will also benefit all researchers who investigate photoelectric nanodevices and photoelectric conversion with relevant frontier theories and concepts.
Bibliography, etc. Note
Includes bibliographical references and index.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed September 22, 2021).
Series
Springer series in materials science ; v. 319. 2196-2812
Available in Other Form
High-performance carbon-based optoelectronic nanodevices.
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Table of Contents
Introduction of carbon nanostructures
Chapter 1. Basic physics of carbon nanotubes and graphene
Chapter 2. Controlled growth of carbon nanotubes and graphene
Chapter 3. Characterization of carbon nanostructures
Chapter 4. Carbon-based high-performance broadband photodetectors
Chapter 5. All-carbon van der Waals junction photodetectors
Chapter 6. Carbon-based van der Waals heterojunction solar cells
Chapter 7. All-carbon hybrid solar cells.
Chapter 1. Basic physics of carbon nanotubes and graphene
Chapter 2. Controlled growth of carbon nanotubes and graphene
Chapter 3. Characterization of carbon nanostructures
Chapter 4. Carbon-based high-performance broadband photodetectors
Chapter 5. All-carbon van der Waals junction photodetectors
Chapter 6. Carbon-based van der Waals heterojunction solar cells
Chapter 7. All-carbon hybrid solar cells.