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Nitrogen-doped carbon nanotubes and graphene composite structures for energy and catalytic applications

Title
Nitrogen-doped carbon nanotubes and graphene composite structures for energy and catalytic applications
Author
한태희
Issue Date
2014-06
Publisher
Royal Society of Chemistry
Citation
In: Chemical Communications. (Chemical Communications, 4 July 2014, 50(52):6818-6830)
Abstract
Substitutional heteroatom doping is a promising route to modulate the outstanding material properties of carbon nanotubes and graphene for customized applications. Recently, (nitrogen-) N-doping has been introduced to ensure tunable work-function, enhanced n-type carrier concentration, diminished surface energy, and manageable polarization. Along with the promising assessment of N-doping effects, research on the N-doped carbon based composite structures is emerging for the synergistic integration with various functional materials. This invited feature article reviews the current research progress, emerging trends, and opening opportunities in N-doped carbon based composite structures. Underlying basic principles are introduced for the effective modulation of material properties of graphitic carbons by N-doping. Composite structures of N-doped graphitic carbons with various functional materials, including (i) polymers, (ii) transition metals, (iii) metal oxides, nitrides, sulphides, and (iv) semiconducting quantum dots are highlighted. Practical benefits of the synergistic composite structures are investigated in energy and catalytic applications, such as organic photovoltaics, photo/electro-catalysts, lithium ion batteries and supercapacitors, with a particular emphasis on the optimized interfacial structures and properties.
URI
http://pubs.rsc.org/en/Content/ArticleLanding/2014/CC/c4cc00146j#!divAbstracthttp://hdl.handle.net/20.500.11754/47570
ISSN
1364548X; 13597345
DOI
10.1039/c4cc00146j
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > ORGANIC AND NANO ENGINEERING(유기나노공학과) > Articles
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