DFT calculations predict that 1D carbon nanoobjects with alternating polycyclic regions and double carbon chains can act as magnetic semiconductors or show magnetic-state-dependent band gaps, depending on chain parity and edge structure.
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Magnetic and electronic properties of 1D hybrid nanoobjects composed of alternating polycyclic hydrocarbon regions and double carbon chains
DFT calculations predict that 1D carbon nanoobjects with alternating polycyclic regions and double carbon chains can act as magnetic semiconductors or show magnetic-state-dependent band gaps, depending on chain parity and edge structure.