Layered materials exhibit intriguing electronic characteristics and the search for new types of two-dimensional (2D) structures is of importance for future device fabrication. Using state-of-art first principle calculations, we identify and characterize the structural and electronic properties of two 2D layered arsenic materials, namely, arsenic and its alloy AsSb. The stable 2D structural configuration of arsenic is confirmed to be the low-buckled two-dimensional hexagonal structure by phonon and binding energy calculations. The monolayer exhibits indirect semiconducting properties with gap around 1.5 eV (corrected to 2.2 eV by hybrid function), which can be modulated into a direct semiconductor within a small amount of tensile strain. The...
ABSTRACT: As a way to further improve the electronic properties of group V layered semiconductors, w...
Using first-principles calculations, we investigate electronic structures of α arsenic phosphide und...
2D layered materials have emerged in recent years as a new platform to host novel electronic, optica...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
We present a detailed first-principle study of few-layer arsenic and antimony electronic structures....
Arsenic has been predicted to present significantly more diverse 2D phases than other elementalcompo...
Using first-principles spin-polarized density functional theory, we carried out an analysis on the a...
Novel monolayer allotropes of As and Sb monolayers are predicted to be energetically and dynamically...
Two-dimensional (2D) materials, in the form of a single atomic layer with a crystalline structure, a...
Two-dimensional (2D) materials, in the form of a single atomic layer with a crystalline structure, a...
Arsenene and antimonene, i.e. two-dimensional (2D) As and Sb monolayers, are the recently proposed c...
Structural, mechanical and electronic properties of two-dimensional single-layer hexagonal structure...
ABSTRACT: As a way to further improve the electronic properties of group V layered semiconductors, w...
Using first-principles calculations, we investigate electronic structures of α arsenic phosphide und...
2D layered materials have emerged in recent years as a new platform to host novel electronic, optica...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
Group V element analogues of graphene have attracted a lot of attention recently due to their semico...
We present a detailed first-principle study of few-layer arsenic and antimony electronic structures....
Arsenic has been predicted to present significantly more diverse 2D phases than other elementalcompo...
Using first-principles spin-polarized density functional theory, we carried out an analysis on the a...
Novel monolayer allotropes of As and Sb monolayers are predicted to be energetically and dynamically...
Two-dimensional (2D) materials, in the form of a single atomic layer with a crystalline structure, a...
Two-dimensional (2D) materials, in the form of a single atomic layer with a crystalline structure, a...
Arsenene and antimonene, i.e. two-dimensional (2D) As and Sb monolayers, are the recently proposed c...
Structural, mechanical and electronic properties of two-dimensional single-layer hexagonal structure...
ABSTRACT: As a way to further improve the electronic properties of group V layered semiconductors, w...
Using first-principles calculations, we investigate electronic structures of α arsenic phosphide und...
2D layered materials have emerged in recent years as a new platform to host novel electronic, optica...