We have investigated the electronic structure and carrier mobility of monolayer black phosphorus nanoribbons (BPNRs) using density functional theory combined with Boltzmann transport method with relaxation time approximation. It is shown that the calculated ultrahigh electron mobility can even reach the order of 10<sup>3</sup> to 10<sup>7</sup> cm<sup>2</sup> V<sup>–1</sup> s<sup>–1</sup> at room temperature. Owing to the electron mobility being higher than the hole mobility, armchair and diagonal BPNRs behave like n-type semiconductors. Comparing with the bare BPNRs, the difference between the hole and electronic mobilities can be enhanced in ribbons with the edges terminated by H atoms. Moreover, because the hole mobility is about two ord...
Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast fu...
Rolling up two-dimensional (2D) materials into nanoscrolls could not only retain the excellent prope...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
Nanodevices based on monolayer black phosphorus or phosphorene are promising for future electron dev...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
We perform the first-principles computational study of the effect of number of stacking layers and s...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
High-mobility transport anisotropy and linear dichroism in few-layer black phosphorus Jingsi Qiao1,2...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
Few-layer black phosphorus is a semiconductor material, where its allotrope is called phosphorene; a...
Charge-carrier mobility is a determining factor of the transport properties of semiconductor materia...
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...
Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast fu...
Rolling up two-dimensional (2D) materials into nanoscrolls could not only retain the excellent prope...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...
Nanodevices based on monolayer black phosphorus or phosphorene are promising for future electron dev...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Few-layer black phosphorene has recently attracted significant interest in the scientific community....
We perform the first-principles computational study of the effect of number of stacking layers and s...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
High-mobility transport anisotropy and linear dichroism in few-layer black phosphorus Jingsi Qiao1,2...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
Few-layer black phosphorus is a semiconductor material, where its allotrope is called phosphorene; a...
Charge-carrier mobility is a determining factor of the transport properties of semiconductor materia...
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...
Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast fu...
Rolling up two-dimensional (2D) materials into nanoscrolls could not only retain the excellent prope...
The discovery of graphene has inspired great research interest in two-dimensional (2D) layered nanom...