C3-symmetric MOFs map via analytical downfolding to star- and honeycomb-lattice models whose gapped Dirac cones produce Berry-curvature hot spots that enable tunable nonlinear Hall transport through synthetic pathways.
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Bilayer ScI2 shows stacking-dependent interlayer exchange (FM in AA/BA, AFM in AB) with out-of-plane anisotropy and Curie temperatures of 360-375 K from DFT+U and Monte Carlo simulations.
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Nonlinear Hall Effect in Metal-Organic Frameworks
C3-symmetric MOFs map via analytical downfolding to star- and honeycomb-lattice models whose gapped Dirac cones produce Berry-curvature hot spots that enable tunable nonlinear Hall transport through synthetic pathways.
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Stacking-dependent magnetic ordering in bilayer ScI$_{2}$
Bilayer ScI2 shows stacking-dependent interlayer exchange (FM in AA/BA, AFM in AB) with out-of-plane anisotropy and Curie temperatures of 360-375 K from DFT+U and Monte Carlo simulations.