Organic materials are currently being examined for their potential use as active conducting media in electronic devices. Computational methods were used to study the transport characteristics across single organic molecules and through organic molecular crystals as well as the possibility of chemical impurities in crystals. In particular, the dependence of conductance on the central dihedral angle of single molecule junctions containing 4,4'-diaminobipenyl derivatives was probed by combining electronic structure calculations with a tunneling model and comparing to experimental results from literature. The calculations and model were adequate in reproducing the trend observed in experiment, implying that the differences in conductance across...
Understanding charge transports in organic films is important for both fundamental science and pract...
We estimate the hole mobility for oligoacene crystals using quantum mechanics (QM) to calculate the ...
In this thesis, we model electronic states, charge transfer and charge transport in organic semicond...
Organic materials are currently being examined for their potential use as active conducting media in...
Organic materials are currently being examined for their potential use as active conducting media in...
Charge transport properties of organic single crystals as materials for organic electronic devices a...
The research field of organic electronics experiences tremendous developments since the discovery of...
The booming field of molecular electronics has fostered a surge of computational research on electro...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals a...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
Charge transport plays a key role in defining the performance of organic-based devices such as light...
Organic field-effect transistor characteristics were improved in the past years by implementation of...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals ...
This thesis studies the intrinsic properties of organic, inorganic and hybrid materials that are pot...
Understanding charge transports in organic films is important for both fundamental science and pract...
We estimate the hole mobility for oligoacene crystals using quantum mechanics (QM) to calculate the ...
In this thesis, we model electronic states, charge transfer and charge transport in organic semicond...
Organic materials are currently being examined for their potential use as active conducting media in...
Organic materials are currently being examined for their potential use as active conducting media in...
Charge transport properties of organic single crystals as materials for organic electronic devices a...
The research field of organic electronics experiences tremendous developments since the discovery of...
The booming field of molecular electronics has fostered a surge of computational research on electro...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals a...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
Charge transport plays a key role in defining the performance of organic-based devices such as light...
Organic field-effect transistor characteristics were improved in the past years by implementation of...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals ...
This thesis studies the intrinsic properties of organic, inorganic and hybrid materials that are pot...
Understanding charge transports in organic films is important for both fundamental science and pract...
We estimate the hole mobility for oligoacene crystals using quantum mechanics (QM) to calculate the ...
In this thesis, we model electronic states, charge transfer and charge transport in organic semicond...