We determine and analyze the photocurrent Jph in polymer solar cells under conditions where, no, one, or two different charge carriers can be injected by choosing appropriate electrodes and compare the experimental results to simulations based on a drift-diffusion device model that accounts for photogeneration and Langevin recombination of electrons and holes. We demonstrate that accounting for the series resistance of the device is essential to determine Jph. Without such correction, the results are, even qualitatively, incorrect. We show that in solar cells with forward bias applied Jph is reduced by recombination of photogenerated charge carriers with injected charge carriers. Self-selective contacts or band bending are not necessary to ...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
Harvesting energy directly from the Sun is a very attractive, but not an easy way of providing manki...
We determine and analyze the photocurrent Jph in polymer solar cells under conditions where, no, one...
We address the claim that the dependence of the “corrected photocurrent” (defined as the difference ...
Introduction to organic photovoltaics with more detailed outlook on efficiency and carrier dynamics ...
A typical feature of polymer/fullerene based solar cells is that the current density under short-cir...
The ac admittance of solar cells under illumination is investigated under open-circuit conditions. O...
The role of drift and diffusion as driving forces for charge carrier extraction in flat heterojuncti...
We report on the effects of screening of the electric field by doping-induced mobile charges on phot...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
The competition between charge extraction and nongeminate recombination critically determines the cu...
A key factor in solar cell efficiency is the dependence of the photocurrent on applied bias. With re...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
Harvesting energy directly from the Sun is a very attractive, but not an easy way of providing manki...
We determine and analyze the photocurrent Jph in polymer solar cells under conditions where, no, one...
We address the claim that the dependence of the “corrected photocurrent” (defined as the difference ...
Introduction to organic photovoltaics with more detailed outlook on efficiency and carrier dynamics ...
A typical feature of polymer/fullerene based solar cells is that the current density under short-cir...
The ac admittance of solar cells under illumination is investigated under open-circuit conditions. O...
The role of drift and diffusion as driving forces for charge carrier extraction in flat heterojuncti...
We report on the effects of screening of the electric field by doping-induced mobile charges on phot...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
The competition between charge extraction and nongeminate recombination critically determines the cu...
A key factor in solar cell efficiency is the dependence of the photocurrent on applied bias. With re...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
In this thesis, we observe the charge transport and recombination dynamics in thin film bulk heteroj...
Harvesting energy directly from the Sun is a very attractive, but not an easy way of providing manki...