Phys. Rev. B 83, 155208 (2011) [14 pages]First-principles calculations of anisotropic charge-carrier mobilities in organic semiconductor crystalsReceived 22 December 2010; revised 18 February 2011; published 19 April 2011 The orientational dependence of charge-carrier mobilities in organic semiconductor crystals and the correlation with the crystal structure are investigated by means of quantum chemical first-principles calculations combined with a model using hopping rates from Marcus theory. A master equation approach is presented which is numerically more efficient than the Monte Carlo method frequently applied in this context. Furthermore, it is shown that the widely used approach to calculate the mobility via the diffusion constant along with rate equations is not appropriate in many important cases. The calculations are compared with experimental data, showing good qualitative agreement for pentacene and rubrene. In addition, charge-transport properties of core-fluorinated perylene bisimides are investigated. ©2011 American Physical Society URL:
http://link.aps.org/doi/10.1103/PhysRevB.83.155208
DOI:
10.1103/PhysRevB.83.155208
PACS:
72.80.Le, 72.20.Ee
|
