Group V element analogues of graphene have attracted a lot of attention recently due to their semiconducting band structures and several other interesting properties predicted by theoretical investigations in the literature. In this study, we present atomic and electronic structure data of an arsenic (As) layer on Ag(1 1 1). Low-energy electron diffraction and scanning tunneling microscopy data provide evidence for an ordered layer with a lattice constant of 3.6 angstrom. This value fits with the theoretical range of 3.54-3.64 degrees for buckled arsenene, which is the structure consistently predicted by various theoretical studies. The electronic structure obtained by angle-resolved photoelectron spectroscopy shows the existence of three 2...
Contains fulltext : 195548.pdf (preprint version ) (Open Access) ...
In this thesis we study the electronic structure of different two-dimensional (2D) electron systems ...
Various elements (Ge, Sn, Pb, Sb, and Bi) form well-ordered two-dimensional surface alloys on Ag(111...
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...
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...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
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...
We present a detailed first-principle study of few-layer arsenic and antimony electronic structures....
Arsenene and antimonene, i.e. two-dimensional (2D) As and Sb monolayers, are the recently proposed c...
Considering the rapid development of experimental techniques for fabricating 2D materials in recent ...
Recent theoretical research has demonstrated that a new two-dimensional material, the monolayer of g...
Contains fulltext : 195548.pdf (preprint version ) (Open Access) ...
In this thesis we study the electronic structure of different two-dimensional (2D) electron systems ...
Various elements (Ge, Sn, Pb, Sb, and Bi) form well-ordered two-dimensional surface alloys on Ag(111...
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...
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...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
Layered materials exhibit intriguing electronic characteristics and the search for new types of two-...
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...
We present a detailed first-principle study of few-layer arsenic and antimony electronic structures....
Arsenene and antimonene, i.e. two-dimensional (2D) As and Sb monolayers, are the recently proposed c...
Considering the rapid development of experimental techniques for fabricating 2D materials in recent ...
Recent theoretical research has demonstrated that a new two-dimensional material, the monolayer of g...
Contains fulltext : 195548.pdf (preprint version ) (Open Access) ...
In this thesis we study the electronic structure of different two-dimensional (2D) electron systems ...
Various elements (Ge, Sn, Pb, Sb, and Bi) form well-ordered two-dimensional surface alloys on Ag(111...