Quantum confinement and interference often generate exotic properties in nanostructures. One recent highlight is the experimental indication of a magnetic phase transition in zigzag-edged graphene nanoribbons at the critical ribbon width of about 7 nm [Magda, G. Z. et al. Nature 2014, 514, 608]. Here we show theoretically that with further increase in the ribbon width, the magnetic correlation of the two edges can exhibit an intriguing oscillatory behavior between antiferromagnetic and ferromagnetic, driven by acquiring the positive coherence between the two edges to lower the free energy. The oscillation effect is readily tunable in applied magnetic fields. These novel properties suggest new experimental manifestation of the edge magnetic ...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Magnetic zigzag edges of graphene are considered as a basis for novel spintronics devices despite th...
[[abstract]]We study the electronic correlation effects in armchair graphene nanoribbons that have b...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We study the interaction energy between two graphene nanoribbons by first-principles calculations, i...
We study the magnetic structure of narrow graphene ribbons with patterned edges. Neglecting interact...
Since its first controlled fabrication in the laboratory in 2004, graphene has been raising much int...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
After its successful experimental realization,1 graphene nano-ribbon (GNR) becomes an important cand...
In this paper, we report on the interesting phenomenon of magnetic phase transitions (MPTs) observed...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Magnetic zigzag edges of graphene are considered as a basis for novel spintronics devices despite th...
[[abstract]]We study the electronic correlation effects in armchair graphene nanoribbons that have b...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We present an analytical effective theory for the magnetic phase diagram for zigzag-edge terminated ...
We study the interaction energy between two graphene nanoribbons by first-principles calculations, i...
We study the magnetic structure of narrow graphene ribbons with patterned edges. Neglecting interact...
Since its first controlled fabrication in the laboratory in 2004, graphene has been raising much int...
Zigzag-edged graphene nanoribbons are antiferromagnetic in cross-edge coupling and unsuitable for sp...
After its successful experimental realization,1 graphene nano-ribbon (GNR) becomes an important cand...
In this paper, we report on the interesting phenomenon of magnetic phase transitions (MPTs) observed...
Graphene, a single-layer network of carbon atoms, has outstanding electrical and mechanical properti...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Graphene, a single-layer network of carbon atoms, shows outstanding electrical and mechanical proper...
Magnetic zigzag edges of graphene are considered as a basis for novel spintronics devices despite th...
[[abstract]]We study the electronic correlation effects in armchair graphene nanoribbons that have b...