In Situ Transmission Electron Microscopy Studies of Carbon Nanotube Nucleation Mechanism and Carbon Nanotube-Clamped Metal Atomic Chains

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December 29, 2021 | History

In Situ Transmission Electron Microscopy Studies of Carbon Nanotube Nucleation Mechanism and Carbon Nanotube-Clamped Metal Atomic Chains

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Using an in situ transmission electron microscopy (TEM) approach to investigate the growth mechanism of carbon nanotubes (CNTs) as well as the fabrication and properties of CNT-clamped metal atomic chains (MACs) is the focus of the research summarized in this thesis. The application of an in situ TEM approach in the above-mentioned research provides not only real-time observation but also monitored machining and structural evolvement at the atomic level. In this thesis, the author introduces a CNT tubular nano furnace that can be operated under TEM for investigation of the CNT nucleation mechanism. By studying the nucleation process of CNTs in the presence of various catalysts, including iron-based metallic catalysts and silicon oxide-based non-metallic catalysts, the physical states of the catalysts as well as the nucleation and growth process of CNTs are revealed. Based on the understanding of the nucleation mechanism, the author proposes a hetero-epitaxial growth strategy of CNTs from boron nitride, which provides a new route for the controllable growth of CNTs. In addition, the author presents an electron beam-assisted nanomachining technique and the fabrication of a CNT-clamped MAC prototype device based on this technique. The formation process of CNT-clamped Fe atomic chains (ACs) can be monitored with atomic resolution. The demonstrated quantized conductance and uninfluenced half-metallic properties of Fe ACs indicate that CNTs can be promising nanoscale electrodes or interconnectors for the linking and assembly of nano and subnano structures.

Publish Date
Language
English
Pages
74

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Book Details


Table of Contents

Introduction
In Situ TEM Method and Materials
Studying Nucleation Mechanism of Carbon Nanotubes by Using In Situ TEM
Fabrication and Property Investigation of Carbon Nanotube-Clamped Metal Atomic Chains
Conclusions and Perspectives.

Edition Notes

Published in
Berlin, Heidelberg
Series
Springer Theses, Recognizing Outstanding Ph.D. Research

Classifications

Dewey Decimal Class
620.115
Library of Congress
T174.7, TA418.9.N35

The Physical Object

Format
[electronic resource] /
Pagination
XV, 74 p. 44 illus., 17 illus. in color.
Number of pages
74

ID Numbers

Open Library
OL27087781M
Internet Archive
situtransmission00tang
ISBN 13
9783642372599

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December 29, 2021 Edited by ImportBot import existing book
December 29, 2021 Edited by ImportBot import existing book
July 7, 2019 Created by MARC Bot import new book