Fundamental prerequisites required to understand the physics inside organic light-emitting diodes and solar cells, and improve their performance, are the reliable extraction of material parameters and having a good device model to investigate the impact of the physical parameters on the device operation and performance.
We characterize pip devices using steady-state and impedance techniques and determine parameters using the drift-diffusion model implemented in SETFOS.
To further improve our device model, the physics of organic/organic interfaces was investigated and a comprehensive model based on the hopping transport theory was derived. It is able to capture the mechanisms happening in charge generation or recombination units in tandem devices.
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