Transport and noise in organic field effect devices


Transport and noise in organic field effect devices

Morawetz, K.; Gemming, S.; Luschtinetz, R.; Kunze, T.; Lipavský, P.; Eng, L. M.; Seifert, G.; Milde, P.; Pankoke, V.

The transport and fluctuation properties of organic molecules ordered parallel between two Au contact leads are investigated by the method of surface Green function. From first-principles simulation the relevant hopping parameters are extracted and used to calculate nonlinear transport coefficients with respect to an external bias voltage. A staggering of conductance is found in dependence on the number of molecules squeezed in-between the contacts. The thermal properties show an anomalous behavior whenever the voltage reaches the values of the molecular energy levels active for transport. The thermoelectric figure of merit shows a resonance allowing to reach values even larger than one.

  • Physical Review B 79(2009)085405, 1-12

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