Using evolutionary algorithm for crystal structure prediction, we present a new stable two-dimensional (2D) carbon allotrope composed of polymerized as-indacenes (PAI) in a zigzag pattern, namely PAI-graphene whose energy is lower than most of the reported 2D allotropes of graphene. Crucially, the crystal structure realizes a nonsymmorphic layer group that enforces a nontrivial global topology of the band structure with two Dirac cones lying perfectly at the Fermi level. The absence of electron/hole pockets makes PAI-graphene a pristine crystalline topological semimetal having anisotropic Fermi velocities with a high value of 7.0×105" role="presentation"> m/s. We show that while the semimetallic property of the allotrope is robu...
Topological semimetals are a fascinating class of quantum materials that possess extraordinary elect...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
Two two-dimensional carbon allotropes comprised of octagons and pentagons are proposed based on the ...
Using evolutionary algorithm for crystal structure prediction, we present a new stable two-dimension...
A potentially new, single-atom thick semiconducting 2D-graphene-like material, called Anisotropic-cy...
A potentially new, single-atom thick semiconducting 2D-graphene-like material, called Anisotropic-cy...
6,6,12-graphyne, one of the two-dimensional carbon allotropes with the rectangular lattice structure...
Graphene is known as a two-dimensional Dirac semimetal, in which electron states are described by th...
Using systematic evolutionary structure searching we propose a new carbon allotrope, phagraphene [<b...
In the present investigation, we have proposed a novel form of two-dimensional (2D) carbon allotrope...
ABSTRACT: We predict a family of 2D carbon (C) allotropes, square graphynes (S-graphynes) that exhib...
We predict a family of 2D carbon (C) allotropes, square graphynes (S-graphynes) that exhibit highly ...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
Topological semimetals are a fascinating class of quantum materials that possess extraordinary elect...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
Two two-dimensional carbon allotropes comprised of octagons and pentagons are proposed based on the ...
Using evolutionary algorithm for crystal structure prediction, we present a new stable two-dimension...
A potentially new, single-atom thick semiconducting 2D-graphene-like material, called Anisotropic-cy...
A potentially new, single-atom thick semiconducting 2D-graphene-like material, called Anisotropic-cy...
6,6,12-graphyne, one of the two-dimensional carbon allotropes with the rectangular lattice structure...
Graphene is known as a two-dimensional Dirac semimetal, in which electron states are described by th...
Using systematic evolutionary structure searching we propose a new carbon allotrope, phagraphene [<b...
In the present investigation, we have proposed a novel form of two-dimensional (2D) carbon allotrope...
ABSTRACT: We predict a family of 2D carbon (C) allotropes, square graphynes (S-graphynes) that exhib...
We predict a family of 2D carbon (C) allotropes, square graphynes (S-graphynes) that exhibit highly ...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
Topological semimetals are a fascinating class of quantum materials that possess extraordinary elect...
The introduction of lattice anisotropy causes Dirac cones to shift in response to the applied strain...
Two two-dimensional carbon allotropes comprised of octagons and pentagons are proposed based on the ...