A family of crystal structures of carbon composed of alternating sp2 and sp3 bonds is investigated. Graphitic strips are connected by sp3 bonds to form an array of hexagonal pillars exhibiting a honeycomb lattice in the perpendicular plane. The electronic structure and elastic properties of this family of structures are calculated using an ab initio pseudopotential as well as the environment-dependent tight-binding method. Their electronic structure has a similar size dependence to zigzag nanotubes; they are metallic if twice the strip width is a multiple of three hexagonal units, and otherwise semiconducting with a wider range of the band gap than for carbon nanotubes. The structural stability is studied and compared with other carbon stru...
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This paper presents an extensive study of various string and tubular structures formed by carbon ato...
Among the exciting recent advances in the field of carbon-based nanomaterials, the successful realiz...
A new family of carbon crystals in which graphitic strips are interconnected to form tetrahedral bon...
In this article, we present the electronic properties of various carbon honeycombs (C-honeycombs) wi...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
Modeling in the framework of density functional theory has been conducted on carbon nanotubes and gr...
This is the final version of the article. Available from AIP via the DOI in this record.Ab initio c...
Low-dimensional carbon allotropes, from fullerenes, carbon nanotubes, to graphene, have been broadly...
The physical and chemical properties of decorated graphene and graphene ribbons, single-layer III-V ...
This study of elastic and plastic deformation of graphene, silicene, and boron nitride (BN) honeycom...
The general objective of the research project is to study the electronic properties of graphene nan...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
Honeycomb structures have already fascinated mankind since ancient times. They were observed in vari...
We present a systematic density functional theory study of the electronic properties, optical spectr...
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This paper presents an extensive study of various string and tubular structures formed by carbon ato...
Among the exciting recent advances in the field of carbon-based nanomaterials, the successful realiz...
A new family of carbon crystals in which graphitic strips are interconnected to form tetrahedral bon...
In this article, we present the electronic properties of various carbon honeycombs (C-honeycombs) wi...
Using first-principles plane-wave calculations, we investigate two-dimensional (2D) honeycomb struct...
Modeling in the framework of density functional theory has been conducted on carbon nanotubes and gr...
This is the final version of the article. Available from AIP via the DOI in this record.Ab initio c...
Low-dimensional carbon allotropes, from fullerenes, carbon nanotubes, to graphene, have been broadly...
The physical and chemical properties of decorated graphene and graphene ribbons, single-layer III-V ...
This study of elastic and plastic deformation of graphene, silicene, and boron nitride (BN) honeycom...
The general objective of the research project is to study the electronic properties of graphene nan...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
Honeycomb structures have already fascinated mankind since ancient times. They were observed in vari...
We present a systematic density functional theory study of the electronic properties, optical spectr...
Using density functional theory and generalized gradient approximation for exchange and correlation,...
This paper presents an extensive study of various string and tubular structures formed by carbon ato...
Among the exciting recent advances in the field of carbon-based nanomaterials, the successful realiz...