Publication | Closed Access
Designing of spin-filtering devices in zigzag graphene nanoribbons heterojunctions by asymmetric hydrogenation and B-N doping
61
Citations
45
References
2015
Year
EngineeringSpin-filtering DevicesGraphene NanomeshesHexagonal Boron NitrideNanoelectronicsPhysicsDouble Edge-saturated HydrogenNonequilibrium GreenQuantum ChemistryAsymmetric HydrogenationSpintronicsGraphene Quantum DotZgnrs-based SystemsNatural SciencesGraphene FiberApplied PhysicsGrapheneB-n DopingGraphene Nanoribbon
Using nonequilibrium Green's function in combination with the spin-polarized density functional theory, the spin-dependent transport properties of boron and nitrogen doped zigzag graphene nanoribbons (ZGNRs) heterojunctions with single or double edge-saturated hydrogen have been investigated. Our results show that the perfect spin-filtering effect (100%), rectifying behavior and negative differential resistance can be realized in the ZGNRs-based systems. And the corresponding physical analysis has been given.
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