We discuss drift–diffusion models for charge carrier transport in organic semiconductor devices. The crucial feature in organic materials is the energetic disorder due to random alignment of molecules and the hopping transport of carriers between adjacent energetic sites. The former leads to statistical relations with Gauss–Fermi integrals, which describe the occupation of energy levels by electrons and holes. The latter gives rise to complicated mobility models with a strongly nonlinear dependence on temperature, density of carriers, and electric field strength. We present the state-of-the-art modeling of the transport processes and provide a first existence result for the stationary drift–diffusion model taking all of the peculiarities of...
The charge-carrier mobility in organic semiconductors is often studied using non-steady-state experi...
A one-dimensional numerical model for the simulation of organic semiconductor devices such as organi...
Charge transport in disordered organic semiconductors occurs by hopping of charge carriers between l...
We discuss drift-diffusion models for charge-carrier transport in organic semiconductor devices. ...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
This paper deals with the analysis of an instationary drift-diffusion model for organic semiconducto...
This paper deals with the analysis of an instationary drift-diffusion model for organic semiconducto...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
The concept of transport energy is the most transparent theoretical approach to describe hopping tra...
In spite of a large amount of work having been done on the description of charge-carrier transport i...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
The description of the current-voltage relationship in disordered organic-semiconductor diodes is co...
We investigate charge transport in disordered organic host–guest systems with a bimodal Gaussian den...
For the design of organic semiconductor devices such as organic light-emitting devices and solar cel...
The charge-carrier mobility in organic semiconductors is often studied using non-steady-state experi...
A one-dimensional numerical model for the simulation of organic semiconductor devices such as organi...
Charge transport in disordered organic semiconductors occurs by hopping of charge carriers between l...
We discuss drift-diffusion models for charge-carrier transport in organic semiconductor devices. ...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
This paper deals with the analysis of an instationary drift-diffusion model for organic semiconducto...
This paper deals with the analysis of an instationary drift-diffusion model for organic semiconducto...
This work is concerned with the analysis of a drift-diffusion model for the electrothermal behavior ...
The concept of transport energy is the most transparent theoretical approach to describe hopping tra...
In spite of a large amount of work having been done on the description of charge-carrier transport i...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
An extended theory of carrier hopping transport in organic transistors is proposed. According to man...
The description of the current-voltage relationship in disordered organic-semiconductor diodes is co...
We investigate charge transport in disordered organic host–guest systems with a bimodal Gaussian den...
For the design of organic semiconductor devices such as organic light-emitting devices and solar cel...
The charge-carrier mobility in organic semiconductors is often studied using non-steady-state experi...
A one-dimensional numerical model for the simulation of organic semiconductor devices such as organi...
Charge transport in disordered organic semiconductors occurs by hopping of charge carriers between l...