We demonstrate that the degree of charge delocalization has a strong impact on polarization energy and thereby on the position of the transport band edge in organic semiconductors. This gives rise to long-range potential fluctuations, which govern the electronic transport through delocalized states in organic crystalline layers. This concept is employed to formulate an analytic model that explains a negative field dependence coupled with a positive temperature dependence of the charge mobility observed by a lateral time-of-flight technique in a high-mobility crystalline organic layer. This has important implications for the further understanding of the charge transport via delocalized states in organic semiconductors.status: publishe
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
The mechanism of charge transport (CT) in a 1D atomistic model of an organic semiconductor is invest...
We present a methodology to study the charge-transport properties of organic semiconductors by the t...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
© 2018, Institute of Chemistry, Slovak Academy of Sciences. Charge-carrier mobility has been invest...
A central challenge of organic semiconductor research is to make cheap, disordered materials that ex...
Charge-carrier mobility has been investigated by time-of-flight (TOF) transient photocurrent in a la...
We have extended an effective medium approximation theory [Fishchuk, Kadashchuk, Genoe, Ullah, Sitte...
ConspectusOrganic semiconductors (OSs) are an exciting class of materials that have enabled disrupti...
Temperature-activated charge transport in disordered organic semiconductors at large carrier concent...
Many applications of organic semiconductors require high electrical conductivities and hence high do...
Charge carrier transport in organic semiconductors is at the heart of many revolutionary technologi...
Charge transport models developed for disordered organic semiconductors predict a non-Arrhenius temp...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
Dynamic disorders, which possess a finite charge delocalization, play a critical role in the charge ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
The mechanism of charge transport (CT) in a 1D atomistic model of an organic semiconductor is invest...
We present a methodology to study the charge-transport properties of organic semiconductors by the t...
We demonstrate that the degree of charge delocalization has a strong impact on polarization energy a...
© 2018, Institute of Chemistry, Slovak Academy of Sciences. Charge-carrier mobility has been invest...
A central challenge of organic semiconductor research is to make cheap, disordered materials that ex...
Charge-carrier mobility has been investigated by time-of-flight (TOF) transient photocurrent in a la...
We have extended an effective medium approximation theory [Fishchuk, Kadashchuk, Genoe, Ullah, Sitte...
ConspectusOrganic semiconductors (OSs) are an exciting class of materials that have enabled disrupti...
Temperature-activated charge transport in disordered organic semiconductors at large carrier concent...
Many applications of organic semiconductors require high electrical conductivities and hence high do...
Charge carrier transport in organic semiconductors is at the heart of many revolutionary technologi...
Charge transport models developed for disordered organic semiconductors predict a non-Arrhenius temp...
We propose that the electron transport in crystalline organic semiconductors at room temperature (RT...
Dynamic disorders, which possess a finite charge delocalization, play a critical role in the charge ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
The mechanism of charge transport (CT) in a 1D atomistic model of an organic semiconductor is invest...
We present a methodology to study the charge-transport properties of organic semiconductors by the t...