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Thickness-Insensitive Properties of α-MoO3Nanosheets by Weak Interlayer Coupling

Authors :
Kim, Jong Hun
Hyun, Changbae
Kim, Hangyel
Dash, Jatis Kumar
Ihm, Kyuwook
Lee, Gwan-Hyoung
Source :
Nano Letters; December 2019, Vol. 19 Issue: 12 p8868-8876, 9p
Publication Year :
2019

Abstract

van der Waals (vdW) materials have shown unique electrical and optical properties depending on the thickness due to strong interlayer interaction and symmetry breaking at the monolayer level. In contrast, the study of electrical and tribological properties and their thickness-insensitivity of van der Waals oxides are lacking due to difficulties in the fabrication of high quality two-dimensional oxides and the investigation of nanoscale properties. Here we investigated various tribological and electrical properties, such as, friction, adhesion, work function, tunnel current, and dielectric constant, of the single-crystal α-MoO3nanosheets epitaxially grown on graphite by using atomic force microscopy. The friction of atomically smooth MoO3is rapidly saturated within a few layers. The thickness insensitivity of friction is due to very weak mechanical interlayer interaction. Similarly, work function (4.73 eV for 2 layers (hereafter denoted as L)) and dielectric constant (6 for 2L and 10.5–11 for >3L) of MoO3in MoO3showed thickness insensitivity due to weak interlayer coupling. Tunnel current measurements by conductive atomic force microscopy showed that even 2L MoO3of 1.4 nm is resistant to tunneling with a high dielectric strength of 14 MV/cm. The thickness-indifferent electrical properties of high dielectric constant and tunnel resistance by weak interlayer coupling and high crystallinity show a promise in the use of MoO3nanosheets for nanodevice applications.

Details

Language :
English
ISSN :
15306984 and 15306992
Volume :
19
Issue :
12
Database :
Supplemental Index
Journal :
Nano Letters
Publication Type :
Periodical
Accession number :
ejs51493637
Full Text :
https://doi.org/10.1021/acs.nanolett.9b03701