Selected transport, vibrational, and mechanical properties of low-dimensional systems under strain

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Selected transport, vibrational, and mechanical properties of low-dimensional systems under strain. / Matkovic, Aleksandar; Pesic, Jelena; Gajic, Rados et al.
In: Journal of applied physics, 16.04.2019, p. 154301-1.

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@article{fe1fea84bd3940cc83edc2b66de588ea,
title = "Selected transport, vibrational, and mechanical properties of low-dimensional systems under strain",
abstract = "The aim of the present paper is to discuss some recent results concerning the behavior of low-dimensional materials under strain. This concerns the electrical conductivity calculations of 1D structures under strain, within the Hubbard model, as well as ab initio investigations of phonon, electron-phonon, and superconducting properties of doped graphene and MgB2 monolayer. Two different experimental approaches to strain engineering in graphene have been considered regarding local strain engineering on monolayer flakes of graphene using atomic force microscopy and dynamic plowing lithography technique as well as the effects of mechanical straining on liquid phase exfoliated graphene and change of sheet resistance of graphene films.",
author = "Aleksandar Matkovic and Jelena Pesic and Rados Gajic and Borislav Vasi{\'c} and Vladan Celebonovic",
year = "2019",
month = apr,
day = "16",
doi = "10.1063/1.5054120",
language = "English",
pages = "154301--1",
journal = "Journal of applied physics",
issn = "0021-8979",
publisher = "American Institute of Physics Publising LLC",

}

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TY - JOUR

T1 - Selected transport, vibrational, and mechanical properties of low-dimensional systems under strain

AU - Matkovic, Aleksandar

AU - Pesic, Jelena

AU - Gajic, Rados

AU - Vasić, Borislav

AU - Celebonovic, Vladan

PY - 2019/4/16

Y1 - 2019/4/16

N2 - The aim of the present paper is to discuss some recent results concerning the behavior of low-dimensional materials under strain. This concerns the electrical conductivity calculations of 1D structures under strain, within the Hubbard model, as well as ab initio investigations of phonon, electron-phonon, and superconducting properties of doped graphene and MgB2 monolayer. Two different experimental approaches to strain engineering in graphene have been considered regarding local strain engineering on monolayer flakes of graphene using atomic force microscopy and dynamic plowing lithography technique as well as the effects of mechanical straining on liquid phase exfoliated graphene and change of sheet resistance of graphene films.

AB - The aim of the present paper is to discuss some recent results concerning the behavior of low-dimensional materials under strain. This concerns the electrical conductivity calculations of 1D structures under strain, within the Hubbard model, as well as ab initio investigations of phonon, electron-phonon, and superconducting properties of doped graphene and MgB2 monolayer. Two different experimental approaches to strain engineering in graphene have been considered regarding local strain engineering on monolayer flakes of graphene using atomic force microscopy and dynamic plowing lithography technique as well as the effects of mechanical straining on liquid phase exfoliated graphene and change of sheet resistance of graphene films.

U2 - 10.1063/1.5054120

DO - 10.1063/1.5054120

M3 - Article

SP - 154301

EP - 154301

JO - Journal of applied physics

JF - Journal of applied physics

SN - 0021-8979

M1 - 154301

ER -