Tunable electronic, optical, and thermal properties of two-dimensional germanene via an external electric field R Chegel, S Behzad Scientific Reports 10 (1), 704, 2020 | 96 | 2020 |
Ab initio density functional theory investigation of structural and electronic properties of silicon carbide nanotube bundles R Moradian, S Behzad, R Chegel Physica B: Condensed Matter 403 (19-20), 3623-3626, 2008 | 33 | 2008 |
Effects of an electric field on the electronic and optical properties of zigzag boron nitride nanotubes R Chegel, S Behzad Solid state communications 151 (3), 259-263, 2011 | 29 | 2011 |
Effects of carbon doping on the electronic properties of boron nitride nanotubes: Tight binding calculation R Chegel Physica E: Low-dimensional Systems and Nanostructures 84, 223-234, 2016 | 28 | 2016 |
The effects of electric field on electronic and thermal properties of bilayer boron phosphide: Beyond nearest neighbor approximation R Chegel, S Behzad Synthetic Metals 266, 116476, 2020 | 27 | 2020 |
Heat capacity, electrical and thermal conductivity of silicene A Feyzi, R Chegel The European Physical Journal B 89 (9), 193, 2016 | 27 | 2016 |
Theoretical exploration of structural, electro-optical and magnetic properties of gallium-doped silicon carbide nanotubes S Behzad, R Chegel, R Moradian, M Shahrokhi Superlattices and Microstructures 73, 185-192, 2014 | 27 | 2014 |
Ab initio density functional theory investigation of Li-intercalated silicon carbide nanotube bundles R Moradian, S Behzad, R Chegel Physics Letters A 373 (26), 2260-2266, 2009 | 26 | 2009 |
Investigation of effects of interlayer interaction and biaxial strain on the phonon dispersion and dielectric response of hexagonal boron arsenide S Behzad, R Chegel Scientific Reports 13 (1), 21339, 2023 | 24 | 2023 |
Engineering the electronic structure and band gap of boron nitride nanoribbon via external electric field R Chegel Applied Physics A 122, 1-8, 2016 | 24 | 2016 |
Electro-optical properties of zigzag and armchair boron nitride nanotubes under a transverse electric field: Tight binding calculations R Chegel, S Behzad Journal of Physics and Chemistry of Solids 73 (2), 154-161, 2012 | 23 | 2012 |
Engineering thermal and electrical properties of B/N doped carbon nanotubes: Tight binding approximation S Behzad, R Chegel Journal of Alloys and Compounds 792, 721-731, 2019 | 22 | 2019 |
Influence of bias on the electronic structure and electrical conductivity and heat capacity of graphene and boron nitride multilayers R Chegel Synthetic Metals 223, 172-183, 2017 | 22 | 2017 |
Tuning electronic properties of carbon nanotubes by Boron and Nitrogen doping R Chegel Physica B: Condensed Matter 499, 1-16, 2016 | 21 | 2016 |
Theoretical study of the influence of the electric field on the electronic properties of armchair boron nitride nanoribbon R Chegel, S Behzad Physica E: Low-dimensional Systems and Nanostructures 64, 158-164, 2014 | 20 | 2014 |
Controlling electrical and thermoelectric properties of bilayer SiC by bias voltage R Chegel, S Behzad, Y Wang, J Xu Solid State Sciences 121, 106737, 2021 | 19 | 2021 |
Effects of electric and magnetic fields on the electronic properties of zigzag carbon and boron nitride nanotubes R Chegel, S Behzad, E Ahmadi Solid state sciences 14 (4), 456-464, 2012 | 18 | 2012 |
Ab initio density functional theory investigation of structural and electronic properties of double-walled silicon carbide nanotubes R Moradian, S Behzad, R Chegel Physica E: Low-dimensional Systems and Nanostructures 42 (2), 172-175, 2009 | 18 | 2009 |
Engineering the light absorption spectrum and electronic properties of black and blue phases of a SiSe monolayer via biaxial straining S Behzad, R Chegel Journal of Computational Electronics 22 (4), 971-981, 2023 | 17 | 2023 |
Bandstructure modulation for Si-h and Si-g nanotubes in a transverse electric field: Tight binding approach R Chegel, S Behzad Superlattices and Microstructures 63, 79-90, 2013 | 16 | 2013 |