The dynamics of charge carriers after their creation at, or near, an interface play a critical role in determining the efficiency of organic solar cells as they dictate, via mechanisms that are not yet fully understood, the pathways for charge separation and recombination. Here, a combination of ultrafast transient spectroscopy and kinetic Monte Carlo simulations based on a minimalistic model are used to examine various aspects of these charge dynamics in a typical donor-acceptor copolymer:methanofullerene blend. The observed rates of charge carrier energetic relaxation and recombination for a sequence of charge densities can be all consistently described in terms of the extended Gaussian disorder model. The physical picture that arises is ...
A blend of a low-optical-gap diketopyrrolopyrrole polymer and a fullerene derivative, with near-zero...
This thesis utilises computational simulations to investigate the relationship between morphological...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
The dynamics of charge carriers after their creation at, or near, an interface play a critical role ...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Monte Carlo simulations are used to examine charge-transfer (CT) state recombination dynamics consid...
Organic bulk heterojunction solar cells are often regarded as near-equilibrium devices, whose kineti...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
This paper discusses the mechanism of generation of free charges in organic photovoltaic cells (OPV)...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
A blend of a low-optical-gap diketopyrrolopyrrole polymer and a fullerene derivative, with near-zero...
This thesis utilises computational simulations to investigate the relationship between morphological...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
The dynamics of charge carriers after their creation at, or near, an interface play a critical role ...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
Monte Carlo simulations are used to examine charge-transfer (CT) state recombination dynamics consid...
Organic bulk heterojunction solar cells are often regarded as near-equilibrium devices, whose kineti...
Bulk-heterojunction polymer solar cells are promising alternatives for conventional energy sources. ...
Carrier recombination is a central process in bulk heterojunction organic solar cells. Based on the ...
This paper discusses the mechanism of generation of free charges in organic photovoltaic cells (OPV)...
The process of charge transport is fundamental to the operation of all electronic devices. In organi...
A blend of a low-optical-gap diketopyrrolopyrrole polymer and a fullerene derivative, with near-zero...
This thesis utilises computational simulations to investigate the relationship between morphological...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...