Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes (X = Si, Ge, Sn) has recently been reported to show promising electronic, optical and mechanical properties. This paper investigates the elastic moduli and crack propagation behaviour of single layer and bilayer stanene based on molecular dynamics simulations, which have been performed using the Tersoff bond order potential (BOP). We have parameterized the interlayer van der Waals interactions for the bilayer Lennard-Jones potential in the case of bilayer stanene. Density functional calculations are performed to fit the Lennard-Jones parameters for the properties which are not available from the scientific literature. The effect of temperatu...
The electronic properties of stanene, the Sn counterpart of graphene, are theoretically studied usin...
Two dimensional (2D) materials are promising candidates for developing next-generation electronics. ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).-- et al.From density functi...
Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
In the current study, elastic properties of stanene, a hexagonal honeycomb allotrope of tin is inves...
Stanene, composed of tin atoms, is a member of 2D-Xenes, two-dimensional single element materials. T...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
In this paper, elastic properties of stanene under equiaxial or uniaxial tensions along armchair and...
The present work aims to provide an accurate description of the tensile behavior of the planar as we...
Recently, two-dimensional buckled honeycomb stanene has been fabricated by molecular beam epitaxy gr...
Stanene, the tin analogue of graphene, has been predicted to be a two-dimensional topological insula...
Yelgel, Celal/0000-0003-4164-477XWOS: 000465441200044We investigated the structural stability and el...
Propelled by the emergence of new fundamental physical phenomena in a new class of two-dimensional (...
Recently, two-dimensional buckled honeycomb stanene has been manufactured by molecular beam epitaxy ...
The electronic properties of stanene, the Sn counterpart of graphene, are theoretically studied usin...
Two dimensional (2D) materials are promising candidates for developing next-generation electronics. ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).-- et al.From density functi...
Stanene, a quasi-two-dimensional honeycomb-like structure of tin belonging to the family of 2D-Xenes...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
In the current study, elastic properties of stanene, a hexagonal honeycomb allotrope of tin is inves...
Stanene, composed of tin atoms, is a member of 2D-Xenes, two-dimensional single element materials. T...
Structural and electronic properties of two-dimensional stanene and graphene heterostructure (Sn/G) ...
In this paper, elastic properties of stanene under equiaxial or uniaxial tensions along armchair and...
The present work aims to provide an accurate description of the tensile behavior of the planar as we...
Recently, two-dimensional buckled honeycomb stanene has been fabricated by molecular beam epitaxy gr...
Stanene, the tin analogue of graphene, has been predicted to be a two-dimensional topological insula...
Yelgel, Celal/0000-0003-4164-477XWOS: 000465441200044We investigated the structural stability and el...
Propelled by the emergence of new fundamental physical phenomena in a new class of two-dimensional (...
Recently, two-dimensional buckled honeycomb stanene has been manufactured by molecular beam epitaxy ...
The electronic properties of stanene, the Sn counterpart of graphene, are theoretically studied usin...
Two dimensional (2D) materials are promising candidates for developing next-generation electronics. ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).-- et al.From density functi...