A symmetry-adapted quasi-band method computes Landau levels and magneto-optical conductivity in 30° quasi-periodic twisted bilayer graphene, classifying levels by Landau index and angular momentum while revealing weak field dependence in flat bands.
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Bilayer NbOX2 (X=Cl, Br, I) prefer specific stackings, are stable, show decreasing band gaps from Cl to I, high anisotropic carrier mobility, and strong absorption suitable for visible and UV photocatalytic water splitting.
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Landau levels and magneto-optics in 30$^\circ$ quasi-periodic twisted bilayer graphene
A symmetry-adapted quasi-band method computes Landau levels and magneto-optical conductivity in 30° quasi-periodic twisted bilayer graphene, classifying levels by Landau index and angular momentum while revealing weak field dependence in flat bands.
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A comparative first-principles investigation of bilayer NbOX2 (X=Cl, Br, I) for Photocatalytic water splitting applications
Bilayer NbOX2 (X=Cl, Br, I) prefer specific stackings, are stable, show decreasing band gaps from Cl to I, high anisotropic carrier mobility, and strong absorption suitable for visible and UV photocatalytic water splitting.