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نمایش تعداد 1-5 از 5
first principle study of inducing supercunductivity in alpha-graphyne by hole -doping and biaxial tensile strain
First-principle calculations within Eliashberg theory framework have been utilized to investigate theoretically
the effect of hole-doping along with applying strain on superconductivity in a-graphyne and graphene
as a benchmark. We...
Electronic properties of α -graphyne nanoribbons under the electric field effect
In this paper, we investigate the electronic structure of both armchair and zigzag α -graphyne nanor-
ibbons. We use a simple tight binding model to study the variation of the electronic band gap in
α -graphyne nanoribbon. The effects...
Hydrogen adsorption on the α-graphyne using ab initio calculations
In this study, we use the Siesta ab initio code based on Density Functional Theory (DFT) to determine the feasibility of hydrogen storage on the a-graphyne. We examined the effect of hydrogen
adsorption on the structural properties...
Ab-initio Investigation of Spin-dependent Transport properties in Fe-doped Armchair Graphyne Nanoribbons
An ab-initio study on the spin-polarized transport properties of H-passivated Fe-doped
graphyne nanoribbons is presented. All the calculations were based on density functional
theory (DFT). Doping single magnetic atom on graphyne...
Study of Transport Properties in Armchair Graphyne Nanoribbons: A Density Functional Approach
In present paper, the non-equilibrium Green function (NEGF) method along with the density functional
theory (DFT) are used to investigate the effect of width on transport and electronic properties of armchair graphyne-graphyne) nanoribbons...