Publication | Closed Access
Thermopower of Benzenedithiol and C<sub>60</sub> Molecular Junctions with Ni and Au Electrodes
73
Citations
24
References
2014
Year
EngineeringChemistryCharge TransportTunneling MicroscopyOrganic ElectrochemistryNanoelectronicsCharge Carrier TransportElectrochemical InterfaceNi ElectrodePhysicsMolecular ElectrochemistryNanotechnologyPhysical ChemistryQuantum ChemistryElectrochemistryC60 MoleculesNatural SciencesApplied PhysicsMolecular SwitchThermoelectric MaterialAu Electrodes
We have performed thermoelectric measurements of benzenedithiol (BDT) and C60 molecules with Ni and Au electrodes using a home-built scanning tunneling microscope. The thermopower of C60 was negative for both Ni and Au electrodes, indicating the transport of carriers through the lowest unoccupied molecular orbital in both cases, as was expected from the work functions. On the other hand, the Ni-BDT-Ni junctions exhibited a negative thermopower, whereas the Au-BDT-Au junctions exhibited a positive thermopower. First-principle calculations revealed that the negative thermopower of Ni-BDT-Ni junctions is due to the spin-split hybridized states generated by the highest occupied molecular orbital of BDT coupled with s- and d-states of the Ni electrode.
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