Charge carrier mobilities of organic semiconductors are often characterized using steady-state measurements of space charge limited diodes. These measurements assume that charge carriers are in a steady-state equilibrium. In reality, however, energetically hot carriers are introduces by photo-excitation and injection into highly energetic sites from the electrodes. These carriers perturb the equilibrium density of occupied states, and therefore change the overall charge transport properties. In this paper, we look into the effect of energetically hot carriers on the charge transport in organic semiconductors using steady state kinetic Monte Carlo simulations. For injected hot carriers in a typical organic semiconductor, rapid energetic rela...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
The research field of organic electronics experiences tremendous developments since the discovery of...
In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal ...
Charge carrier mobilities of organic semiconductors are often characterized using steady-state measu...
A typical signature of charge extraction in disordered organic systems is dispersive transport, whic...
Improvement of the performance of organic disordered semiconductors (OSC) is driven by the understan...
Charge transport in organic photovoltaic (OPV) devices is often characterized by steady-state mobili...
Understanding of stationary charge transport in disordered organic semiconductors has matured during...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Charge transport models developed for disordered organic semiconductors predict a non-Arrhenius temp...
Charge transport in organic photovoltaic (OPV) devices is often characterized by space-charge limite...
Organic photovoltaics (OPVs) is a promising low-cost and environmental-friendly technology currently...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
The research field of organic electronics experiences tremendous developments since the discovery of...
In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal ...
Charge carrier mobilities of organic semiconductors are often characterized using steady-state measu...
A typical signature of charge extraction in disordered organic systems is dispersive transport, whic...
Improvement of the performance of organic disordered semiconductors (OSC) is driven by the understan...
Charge transport in organic photovoltaic (OPV) devices is often characterized by steady-state mobili...
Understanding of stationary charge transport in disordered organic semiconductors has matured during...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Charge transport models developed for disordered organic semiconductors predict a non-Arrhenius temp...
Charge transport in organic photovoltaic (OPV) devices is often characterized by space-charge limite...
Organic photovoltaics (OPVs) is a promising low-cost and environmental-friendly technology currently...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
The research field of organic electronics experiences tremendous developments since the discovery of...
In photovoltaic devices, the photo-generated charge carriers are typically assumed to be in thermal ...