In conventional field-effect transistors, the extracted mobility does not take into account the distribution of charge carriers. However, in disordered organic field-effect transistors, the local charge carrier mobility decreases from the semiconductor/insulator interface into the bulk, due to its dependence on the charge carrier density. It is demonstrated that the conventional field-effect mobility is a good approximation for the local mobility of the charge carriers at the interface, (C) 2003 Elsevier Science B.V. All rights reserved.</p
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
Application of a gate bias to an organic field-effect transistor leads to accumulation of charges in...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
The transport properties of poly(2,5-thienylene vinylene) (PTV) field-effect transistors (FET) have ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
The transport properties of poly(2,5-thienylene vinylene) (PTV) field-effect transistors (FET) have ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
Application of a gate bias to an organic field-effect transistor leads to accumulation of charges in...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
In conventional field-effect transistors, the extracted mobility does not take into account the dist...
The transport properties of poly(2,5-thienylene vinylene) (PTV) field-effect transistors (FET) have ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
The transport properties of poly(2,5-thienylene vinylene) (PTV) field-effect transistors (FET) have ...
While it is known that the charge-carrier mobility in organic semiconductors is only weakly dependen...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
We analyze the effect of carrier confinement on the charge-transport properties of organic field-eff...
Application of a gate bias to an organic field-effect transistor leads to accumulation of charges in...