Molecular ordering and charge transport have been studied computationally for 22 conjugated oligomers fabricated as crystal or thin-film semiconductors. Molecular dynamics (MD) simulations are employed to equilibrate crystal morphologies at 300 K. The paracrystalline order parameter, <i>g</i>, is calculated to characterize structural order in the materials. Charge-transport dynamics are predicted using kinetic Monte Carlo methods based on a charge-hopping mechanism described by the Marcus theory of electron transfer to calculate charge-transfer rates using the VOTCA package. We introduce an error function to assess the reliability of our computed values to reproduce experimental hole mobilities in both crystalline and thin-film morphologies...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
\u3cp\u3eAccurate charge-carrier mobility models of amorphous organic molecular semiconductors are e...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals ...
The molecular-level origins of the effects of annealing temperature and molecular weight on hole mob...
The mesoscale ordering and charge-transport of crystalline spiro-OMeTAD, a hole-transporting materia...
Understanding charge transports in organic films is important for both fundamental science and pract...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
We analyze the relationship among the molecular structure, morphology, percolation network, and char...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
A central challenge of organic semiconductor research is to make cheap, disordered materials that ex...
We estimate the hole mobility for oligoacene crystals using quantum mechanics (QM) to calculate the ...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
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...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
\u3cp\u3eAccurate charge-carrier mobility models of amorphous organic molecular semiconductors are e...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals ...
The molecular-level origins of the effects of annealing temperature and molecular weight on hole mob...
The mesoscale ordering and charge-transport of crystalline spiro-OMeTAD, a hole-transporting materia...
Understanding charge transports in organic films is important for both fundamental science and pract...
The charge transport in organic materials, from molecular crystals to polymers, is determined by the...
We analyze the relationship among the molecular structure, morphology, percolation network, and char...
The field of organic electronics has developed tremendously over the last twenty years. The key advan...
A central challenge of organic semiconductor research is to make cheap, disordered materials that ex...
We estimate the hole mobility for oligoacene crystals using quantum mechanics (QM) to calculate the ...
The theories developed since the fifties to describe charge transport in molecular crystals proved t...
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...
International audienceThe charge mobility of molecular semiconductors is limited by the large fluctu...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
\u3cp\u3eAccurate charge-carrier mobility models of amorphous organic molecular semiconductors are e...
Modelling of the charge transport in different types of organic semiconductors (molecular crystals ...