We employ a semi-classical Langevin approach to study current-induced atomic dynamics in a partially dehydrogenated armchair graphene nanoribbon. All parameters are obtained from density functional theory. The dehydrogenated carbon dimers behave as effective impurities, whose motion decouples from the rest of carbon atoms. The electrical current can couple the dimer motion in a coherent fashion. The coupling, which is mediated by nonconservative and pseudo-magnetic current-induced forces, change the atomic dynamics, and thereby show their signature in this simple system. We study the atomic dynamics and current-induced vibrational instabilities using a simplified eigen-mode analysis. Our study illustrates how armchair nanoribbons can serve ...
Graphene is a truly two-dimensional atomic crystal with exceptional electronic and mechanical proper...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
The effects of tensile strain on the current-voltage (I-V) characteristics of hydrogenated-edge armc...
In this contribution, we aim at investigating the mechanism of biosensing in graphene-based material...
We report how individual defects affect single graphene nanoribbons by scanning tunneling and atomic...
We investigate the effect of twisting on the electronic, magnetic and transport properties of zigzag...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Control of the edge topology...
Graphene has been identified as a promising material with numerous applications, particularly in spi...
Sensoy, Mehmet Gokhan/0000-0003-4815-8061WOS: 000456876500012We investigate the transport properties...
Long metallic nanowires combine crucial factors for nonconservative current-driven atomic motion. Th...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We have compared results of electronic transport using two different approaches: Dirac vs tight-bind...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The systemic study of the electronic transport (ET) properties of transition metal (TM) functionaliz...
Graphene is a truly two-dimensional atomic crystal with exceptional electronic and mechanical proper...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...
The effects of tensile strain on the current-voltage (I-V) characteristics of hydrogenated-edge armc...
In this contribution, we aim at investigating the mechanism of biosensing in graphene-based material...
We report how individual defects affect single graphene nanoribbons by scanning tunneling and atomic...
We investigate the effect of twisting on the electronic, magnetic and transport properties of zigzag...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Control of the edge topology...
Graphene has been identified as a promising material with numerous applications, particularly in spi...
Sensoy, Mehmet Gokhan/0000-0003-4815-8061WOS: 000456876500012We investigate the transport properties...
Long metallic nanowires combine crucial factors for nonconservative current-driven atomic motion. Th...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
We have compared results of electronic transport using two different approaches: Dirac vs tight-bind...
The edge reconstructions of zigzag graphene nanoribbons with one and two lines of alternating fused ...
The systemic study of the electronic transport (ET) properties of transition metal (TM) functionaliz...
Graphene is a truly two-dimensional atomic crystal with exceptional electronic and mechanical proper...
Car-Parronello molecular dynamics simulations of twelve nanosized graphene sheets with a dozen to a ...
Abstract Understanding the roles of disorder and metal/graphene interface on the electronic and tran...