We present a computational approach to model hole transport in an amorphous semiconducting fluorene-triphenylamine copolymer (TFB), which is based on the combination of molecular dynamics to predict the morphology of the oligomeric system and Kinetic Monte Carlo (KMC), parameterized with quantum chemistry calculations, to simulate hole transport. Carrying out a systematic comparison with available experimental results, we discuss the role that different transport parameters play in the KMC simulation and in particular the dynamic nature of positional and energetic disorder on the temperature and electric field dependence of charge mobility. It emerges that a semi-quantitative agreement with experiments is found only when the dynamic nature ...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Charge transport in -conjugated polymers is characterised by a strong degree of disorder in both the...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
From a numerical solution of the master equation for hopping transport in a disordered energy landsc...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Charge transport in -conjugated polymers is characterised by a strong degree of disorder in both the...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...
We model charge transport in disordered semiconducting polymers by hopping of charges on a regular c...