We present a multi-scale model for charge transport across grain boundaries in molecular electronic materials that incorporates packing disorder, electrostatic and polarisation effects. We choose quasi two-dimensional films of tri-isopropylsilylethynyl pentacene (TIPS-P) as a model system representative of technologically relevant crystalline organic semiconductors. We use atomistic molecular dynamics, with a force-field specific for TIPS-P, to generate and equilibrate polycrystalline two-dimensional thin films. The energy landscape is obtained by calculating contributions from electrostatic interactions and polarization. The variation in these contributions leads to energetic barriers between grains. Subsequently, charge transport is simul...
Charge transport properties of organic single crystals as materials for organic electronic devices a...
The extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
The research field of organic electronics experiences tremendous developments since the discovery of...
A grain boundary barrier model with an energy distribution of interfacial traps to describe charge t...
In this thesis, we develop aspects of a framework for the multi-scale modelling of charge transport ...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Semiconducting organic films that are at the heart of light-emitting diodes, solar cells and transis...
We have fabricated pentacene-based thin film transistors and analyzed their electrical properties wi...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Organic electronic devices offer cheaper solution processability than their inorganic counterparts a...
Force-field and quantum-chemical calculations have been combined to model at the atomistic level the...
Understanding charge transports in organic films is important for both fundamental science and pract...
open6siWe study the effects of molecular ordering on charge transport at the mesoscale level in a la...
We investigate the impact of electronic polarization, charge delocalization, and energetic disorder ...
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 extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
The research field of organic electronics experiences tremendous developments since the discovery of...
A grain boundary barrier model with an energy distribution of interfacial traps to describe charge t...
In this thesis, we develop aspects of a framework for the multi-scale modelling of charge transport ...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
Semiconducting organic films that are at the heart of light-emitting diodes, solar cells and transis...
We have fabricated pentacene-based thin film transistors and analyzed their electrical properties wi...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Organic electronic devices offer cheaper solution processability than their inorganic counterparts a...
Force-field and quantum-chemical calculations have been combined to model at the atomistic level the...
Understanding charge transports in organic films is important for both fundamental science and pract...
open6siWe study the effects of molecular ordering on charge transport at the mesoscale level in a la...
We investigate the impact of electronic polarization, charge delocalization, and energetic disorder ...
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 extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
The research field of organic electronics experiences tremendous developments since the discovery of...