Structural and physical properties of armchair MoSi2N4 nanoribbons substitutionally doped by 3d transition metals (TM) at Mo sites are investigated using the density functional theory combined with the non-equilibrium Green’s function method. TM doping can convert the nonmagnetic direct semiconductor into device materials of a broad variety, including indirect semiconductors, half semiconductors, metals, and half metals. Furthermore the 100% spin filtering behavior in spin-up and spin-down half metals, a negative differential resistance with peak-to-valley ratio over 140 and a rectification effect with ratio over 130 are predicted, as well as semiconductor behavior with high spin polarization
Spin filtering materials are of great current interest in part due to their applications in molecula...
The spin-dependent transmission properties of (0,8) graphene nanoribbons (GNRs) with two substitutio...
The nonlinear spin-dependent transport properties in zigzag molybdenum-disulfide nanoribbons (ZMNRs)...
The magnetic and electronic properties of transition metals (TM) (TM = Sc, Ti, V, Cr, Mn, Fe, Co, an...
Using density-functional theory within the generalized gradient approximation, we show that Si-based...
The electronic structure and spin polarization properties of transition-metal (TM) doped monolayer M...
Development of spin-polarized materials is important for the realization of spintronic devices. Two ...
We are attempting to study the properties of new materials based on Diamond-like semiconductors (DLS...
We are attempting to study the properties of new materials based on Diamond-like semiconductors (DLS...
Magnetic two-dimensional materials have great potential in the preparation of nanoelectronic and spi...
This study employed density functional theory calculations to investigate the structural, electronic...
By using ab initio electronic structure calculations within density functional theory, we study the ...
Spin filtering materials are of great current interest in part due to their applications in molecula...
We report ab-initio all electrons density- functional calculations for the electronic structure of t...
We report ab-initio all electrons density- functional calculations for the electronic structure of t...
Spin filtering materials are of great current interest in part due to their applications in molecula...
The spin-dependent transmission properties of (0,8) graphene nanoribbons (GNRs) with two substitutio...
The nonlinear spin-dependent transport properties in zigzag molybdenum-disulfide nanoribbons (ZMNRs)...
The magnetic and electronic properties of transition metals (TM) (TM = Sc, Ti, V, Cr, Mn, Fe, Co, an...
Using density-functional theory within the generalized gradient approximation, we show that Si-based...
The electronic structure and spin polarization properties of transition-metal (TM) doped monolayer M...
Development of spin-polarized materials is important for the realization of spintronic devices. Two ...
We are attempting to study the properties of new materials based on Diamond-like semiconductors (DLS...
We are attempting to study the properties of new materials based on Diamond-like semiconductors (DLS...
Magnetic two-dimensional materials have great potential in the preparation of nanoelectronic and spi...
This study employed density functional theory calculations to investigate the structural, electronic...
By using ab initio electronic structure calculations within density functional theory, we study the ...
Spin filtering materials are of great current interest in part due to their applications in molecula...
We report ab-initio all electrons density- functional calculations for the electronic structure of t...
We report ab-initio all electrons density- functional calculations for the electronic structure of t...
Spin filtering materials are of great current interest in part due to their applications in molecula...
The spin-dependent transmission properties of (0,8) graphene nanoribbons (GNRs) with two substitutio...
The nonlinear spin-dependent transport properties in zigzag molybdenum-disulfide nanoribbons (ZMNRs)...