By using first-principles calculation based on density functional theory and non-equilibrium Green's function method, we investigate the transport properties of zigzag phosphorene nanoribbons (ZPNRs). The edges of the ZPNRs can be passivated in three ways named W1, W2, W3. These calculated results show that the electronic transport properties of the ZPNRs can be seriously influenced by the edge passivation ways, and the transport is determined by both the two edges and the interaction between them. Moreover, we find the width of the ZPNR can switch on or switch off the transport channel of the W3-type ZPNR. Furthermore, we present the transmission spectra, the band structures of both left and right electrodes, the molecular energy levels, a...
We present a density functional theory study of the thermodynamic and electronic properties of phosp...
As a result of the computing power provided by the current technology, computational methods now pla...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...
By using first-principles calculation based on density functional theory and non-equilibrium Green's...
By using first-principles calculations and the non-equilibrium Green's function, we theoretically st...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
Transport of the edge-state electrons along zigzag phosphorene nanoribbons in the presence of two im...
We have investigated the magnetic properties of phosphorene nanoribbons (PNRs) using the first-princ...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
Density-functional theory in combination with the non-equilibrium Green's function formalism is used...
Electron transport in bilayer phosphorene is studied using the first-principles and nonequilibrium G...
Nanodevices based on monolayer black phosphorus or phosphorene are promising for future electron dev...
We present a density functional theory study of the thermodynamic and electronic properties of phosp...
As a result of the computing power provided by the current technology, computational methods now pla...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...
By using first-principles calculation based on density functional theory and non-equilibrium Green's...
By using first-principles calculations and the non-equilibrium Green's function, we theoretically st...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
Recently, a phosphorus isomer named green phosphorus was theoretically predicted with a similar inte...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
Transport of the edge-state electrons along zigzag phosphorene nanoribbons in the presence of two im...
We have investigated the magnetic properties of phosphorene nanoribbons (PNRs) using the first-princ...
We perform a comprehensive first-principles study of the electronic properties of phosphorene nanori...
Density-functional theory in combination with the non-equilibrium Green's function formalism is used...
Electron transport in bilayer phosphorene is studied using the first-principles and nonequilibrium G...
Nanodevices based on monolayer black phosphorus or phosphorene are promising for future electron dev...
We present a density functional theory study of the thermodynamic and electronic properties of phosp...
As a result of the computing power provided by the current technology, computational methods now pla...
Passivated phosphorene nanoribbons, armchair (a-PNR), diagonal (d-PNR), and zigzag (z-PNR), were inv...