In this thesis we studied the conductance of single molecule junctions. We focused on the
consequences of nuclear motion on the transport characteristics of the junction and investigated
the switching behavior of tautomeric molecules.
Two different theoretical methods were used: scattering and density matrix theory.
Scattering theory was applied to to two classes of molecules. In the benzene-thiolate systems we
demonstrated the importance of respective time/energy scales, comprising the lifetime of the hole
on the molecule, the size of the vibronic coupling, and the vibrational frequency, which determine
vibrational effects.
For the tautomers switching behavior depended significantly on the chemical nature of
the hydrogen carrying unit.
Density matrix theory was used to compute the current-voltage curve of a 'two electronic
states'-'one mode' system, which we compared to similar results, obtained from scattering theory.
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In this thesis we studied the conductance of single molecule junctions. We focused on the
consequences of nuclear motion on the transport characteristics of the junction and investigated
the switching behavior of tautomeric molecules.
Two different theoretical methods were used: scattering and density matrix theory.
Scattering theory was applied to to two classes of molecules. In the benzene-thiolate systems we
demonstrated the importance of respective time/energy scales, comprising the...
»