We investigate the electronic properties of zigzag-terminated graphene nanoribbons in the presence of a staggered sublattice potential. We show that due to the edge ferromagnetism, spin-polarized dispersive edge modes with well-defined valley indices can appear inside the bulk band gap opened by the inversion symmetry breaking. These edge modes are helical with respect to their valley indices, hence are robust against scattering from smooth disorder potentials. We further propose a concrete system with a zigzag graphene nanoribbon grown on top of a hexagonal boron-nitride substrate to realize such edge modes. These edge states could be utilized as perfect spin filters or analyzers in spintronics applications.Physics, Condensed MatterSCI(E)1...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Zigzag graphene nanoribbons ...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Exact positioning of sublattice imbalanced nanostructures in graphene nanomaterials offers a route t...
We study graphene nanoribbons theoretically in the presence of spatially varying magnetic fields pro...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
We provide a systematic quantitative description of spin polarization in armchair and zigzag graphen...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Electronic and magnetic properties of Li-intercalated bilayer zigzag graphene nanoribbons (ZGNRs) ar...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Zigzag graphene nanoribbons ...
We investigate the electron transport through a graphene nanoribbon (GNR) junction with zigzag edges...
Exact positioning of sublattice imbalanced nanostructures in graphene nanomaterials offers a route t...
We study graphene nanoribbons theoretically in the presence of spatially varying magnetic fields pro...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
Spin-ordered electronic states in hydrogen-terminated zigzag nanographene give rise to magnetic quan...
The effects of ribbon size on the spin properties of zigzag graphene nanoribbon (ZGNR) with and with...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
We provide a systematic quantitative description of spin polarization in armchair and zigzag graphen...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Electronic and magnetic properties of Li-intercalated bilayer zigzag graphene nanoribbons (ZGNRs) ar...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Zigzag graphene nanoribbons ...