Electric Transport Properties in the 2D-MoS2

Fuente: arXiv
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Main Authors: Vainberg, V. V., Pylypchuk, O. S., Poroshin, V. N., Olenchuk, M. V., Dovbeshko, G. I.
Format: Preprint
Published: 2021
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author Vainberg, V. V.
Pylypchuk, O. S.
Poroshin, V. N.
Olenchuk, M. V.
Dovbeshko, G. I.
author_facet Vainberg, V. V.
Pylypchuk, O. S.
Poroshin, V. N.
Olenchuk, M. V.
Dovbeshko, G. I.
contents The features of electric transport in the powder samples consisting of the nanosize 2D-MoS2 flakes with different number of layers have been studied under the conditions of uniaxial pressure. There have been measured current-voltage characteristics at the room temperature in the voltage range of 0 through 1.5 V at 3 magnitudes of the uniaxial pressure from 5 through 25 bars. The current-voltage characteristics are shown to be non-linear and to form a loop during successive increasing and decreasing voltage. The long-term decays of the current on applying voltage to the sample and of the voltage on the sample in the no-load mode on switching off have been observed. The observed results are explained by the model of the surface charge accumulation causing polarization.
format Preprint
id arxiv_https___arxiv_org_abs_2110_15281
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Electric Transport Properties in the 2D-MoS2
Vainberg, V. V.
Pylypchuk, O. S.
Poroshin, V. N.
Olenchuk, M. V.
Dovbeshko, G. I.
Mesoscale and Nanoscale Physics
Materials Science
The features of electric transport in the powder samples consisting of the nanosize 2D-MoS2 flakes with different number of layers have been studied under the conditions of uniaxial pressure. There have been measured current-voltage characteristics at the room temperature in the voltage range of 0 through 1.5 V at 3 magnitudes of the uniaxial pressure from 5 through 25 bars. The current-voltage characteristics are shown to be non-linear and to form a loop during successive increasing and decreasing voltage. The long-term decays of the current on applying voltage to the sample and of the voltage on the sample in the no-load mode on switching off have been observed. The observed results are explained by the model of the surface charge accumulation causing polarization.
title Electric Transport Properties in the 2D-MoS2
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2110.15281