We have developed a mathematical model able to predict the dependence of the current density, j0, in the dc limit, on the thickness of a photoactive semiconductor layer, d, in contact with an electrolyte. The model considers the application of an external bias. The theoretical analysis has been done by means of a diffusive model, where the excess of charges moves by diffusion in the presence of a generation term, due to the incident light, and a recombination term, proportional to the excess of charge carriers. We show that a non-monotonic dependence of j0 vs. d is expected. For small d, the photocurrent density is proportional to d and the proportionality constant is related to both the attenuation of the light in the photoactive semicondu...
A method for resolving the diffusion length of excitons and the extraction yield of charge carriers ...
It has been established that diffusion of photogenerated carriers into the electrode can be an impor...
In the past 50 years, the high gain in quantum efficiency of photoconductors is often explained by a...
A closed-form analytical model is developed to describe the steady-state current density−potential (...
Photoelectrochemical (PEC) water splitting is one of the most promising technologies able to exploit...
We present an analytical and experimental investigation into the origin of the open-circuit voltage ...
This paper investigates how nonuniform generation and inefficient collection of electrons influence ...
The current voltage characteristics of an organic semiconductor diode made by placing together two m...
Weanalyseorganic solar cells with four differentphotoactive blends exhibiting differing dependencies...
Radiative and non-radiative charge carrier recombination in thin-film diodes plays a key role in det...
One of the pivotal challenges of the 21st century is to develop alternative energy sources to replac...
A numerical device-level model of dye-sensitized solar cells (DSCs) is presented, which self-consist...
Organic diodes and solar cells are constructed by placing together two organic semiconducting materi...
The impact of changes in various parameters on the steady-state current density−potential (J−E) char...
In this study, a drift-diffusion model is used to derive the current-voltage curves of an organic bi...
A method for resolving the diffusion length of excitons and the extraction yield of charge carriers ...
It has been established that diffusion of photogenerated carriers into the electrode can be an impor...
In the past 50 years, the high gain in quantum efficiency of photoconductors is often explained by a...
A closed-form analytical model is developed to describe the steady-state current density−potential (...
Photoelectrochemical (PEC) water splitting is one of the most promising technologies able to exploit...
We present an analytical and experimental investigation into the origin of the open-circuit voltage ...
This paper investigates how nonuniform generation and inefficient collection of electrons influence ...
The current voltage characteristics of an organic semiconductor diode made by placing together two m...
Weanalyseorganic solar cells with four differentphotoactive blends exhibiting differing dependencies...
Radiative and non-radiative charge carrier recombination in thin-film diodes plays a key role in det...
One of the pivotal challenges of the 21st century is to develop alternative energy sources to replac...
A numerical device-level model of dye-sensitized solar cells (DSCs) is presented, which self-consist...
Organic diodes and solar cells are constructed by placing together two organic semiconducting materi...
The impact of changes in various parameters on the steady-state current density−potential (J−E) char...
In this study, a drift-diffusion model is used to derive the current-voltage curves of an organic bi...
A method for resolving the diffusion length of excitons and the extraction yield of charge carriers ...
It has been established that diffusion of photogenerated carriers into the electrode can be an impor...
In the past 50 years, the high gain in quantum efficiency of photoconductors is often explained by a...