Publication
Title
A first-principles study of nanostructures : control and engineering of the electronic and magnetic properties of nanosheets, tubes and ribbons
Author
Abstract
Using first-principles calculations we systematically investigate the atomic, electronic and magnetic properties of novel two-dimensional materials (2DM) with a stoichiometry C3N which has recently been synthesized. We investigate how the number of layers affect the electronic properties by considering monolayer, bilayer and trilayer structures, with different stacking of the layers. We find that a transition from semiconducting to metallic character occurs which could offer potential applications in future nanoelectronic devices. We also study the affect of width of C3N nanoribbons, as well as the radius and length of C3N nanotubes, on the atomic, electronic and magnetic properties. Our results show that these properties can be modified depending on these dimensions, and depend markedly on the nature of the edge states. Functionalization of the nanostructures by the adsorption of H adatoms is found induce metallic, half-metallic, semiconducting and ferromagnetic behavior, which offers an approach to tailor the properties, as can the application of strain. Our calculations give insight into this new family of C3N nanostructures, which reveal unusual electronic and magnetic properties, and may have great potential in applications such as sensors, electronics and optoelectronic at the nanoscale.
Language
English
Source (journal)
ChemPhysChem : a European journal of chemical physics and physical chemistry. - Weinheim, 2000 - 2015
Publication
Weinheim : Wiley-VCH , 2020
ISSN
1439-4235 [print]
1439-7641 [online]
DOI
10.1002/CPHC.201900852
Volume/pages
21 :2 (2020) , p. 164-174
ISI
000503453100001
Pubmed ID
31705615
Full text (Publisher's DOI)
Full text (open access)
Full text (publisher's version - intranet only)
UAntwerpen
Faculty/Department
Research group
Publication type
Subject
Affiliation
Publications with a UAntwerp address
External links
Web of Science
Record
Identifier
Creation 08.01.2020
Last edited 25.11.2024
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