Strain-mediated magnetism in 2D materials and dilute magnetic semiconductors hold multifunctional applications for future nano-electronics. Herein, First principles calculations are employed to study the influence of biaxial strain on the magnetic properties of Co-doped monolayer WS2. The non-magnetic WS2 shows ferromagnetic signature upon Co doping due to spin polarization, which is further improved at low compressive (-2 %) and tensile (+2 %) strains. From the PDOS and spin density analysis, the opposite magnetic ordering is found to be favourable under the application of compressive and tensile strains. The double exchange interaction and p-d hybridization mechanisms make Co-doped WS2 a potential host for magnetism. More importantly, the...
Transition metal dichalcogenides (TMDs) possess intrinsic spin–orbit interaction (SOI) with high pot...
Understanding the magnetic properties of the various Mn doping configurations that can be encountere...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...
Strain-mediated magnetism in 2D materials and dilute magnetic semiconductors hold multifunctional ap...
In view of important role of inducing and manipulating the magnetism in two-dimensional materials fo...
In this article, a systematic study on the magnetic properties and strain tunability of 3d transitio...
Electronic and magnetic properties of WSe2 monolayer with different nonmagnetic metal and nonmetal d...
We study the strain tuning of magnetism in Mn doped MoS2 monolayer system. With the increase of the ...
Half-metallic behavior and ferromagnetism are predicted in strained MoS2 with different light elemen...
Abstract Lateral heterostructures of two-dimensional (2D) materials, integrating different phases o...
Introducing ferromagnetism in transition metal dichalcogenides has attracted lots of attention due t...
Using the Density Functional Theory (DFT) calculations, we determined the electronic and magnetic pr...
Atomically thin two-dimensional (2D) magnets have given rise to emergent phenomena due to magnetic e...
Mechanical deformations and ensuing strain are routinely exploited to tune the band gap energy and t...
In this research, the potential of transition metal doped 2D WSe2 as a 2D dilute magnetic semiconduc...
Transition metal dichalcogenides (TMDs) possess intrinsic spin–orbit interaction (SOI) with high pot...
Understanding the magnetic properties of the various Mn doping configurations that can be encountere...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...
Strain-mediated magnetism in 2D materials and dilute magnetic semiconductors hold multifunctional ap...
In view of important role of inducing and manipulating the magnetism in two-dimensional materials fo...
In this article, a systematic study on the magnetic properties and strain tunability of 3d transitio...
Electronic and magnetic properties of WSe2 monolayer with different nonmagnetic metal and nonmetal d...
We study the strain tuning of magnetism in Mn doped MoS2 monolayer system. With the increase of the ...
Half-metallic behavior and ferromagnetism are predicted in strained MoS2 with different light elemen...
Abstract Lateral heterostructures of two-dimensional (2D) materials, integrating different phases o...
Introducing ferromagnetism in transition metal dichalcogenides has attracted lots of attention due t...
Using the Density Functional Theory (DFT) calculations, we determined the electronic and magnetic pr...
Atomically thin two-dimensional (2D) magnets have given rise to emergent phenomena due to magnetic e...
Mechanical deformations and ensuing strain are routinely exploited to tune the band gap energy and t...
In this research, the potential of transition metal doped 2D WSe2 as a 2D dilute magnetic semiconduc...
Transition metal dichalcogenides (TMDs) possess intrinsic spin–orbit interaction (SOI) with high pot...
Understanding the magnetic properties of the various Mn doping configurations that can be encountere...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...