We measured the rate of hole hopping between dye molecules on titanium dioxide nanocrystals using cyclic voltammetry. Dyes commonly used in the field of dye sensitized solar cells exhibited efficient intermolecular charge transport, showing apparent diffusion coefficient values between 10(-8) up to over 10(-7) cm(2) s(-1) at room temperature. From temperature dependent measurements, we observed that hole transport across dye monolayers is a thermally activated process with Arrhenius activation energies between about 170 and 370 meV depending on the dye. Analysis of the data in terms of non-adiabatic Marcus theory of charge transfer enabled the estimation of the reorganization energy (740-1540 meV) and of an effective electronic coupling for...
We present a combined experimental and theoretical investigation into the charge transport and recom...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
Measured hole diffusion coefficients in dye monolayers are larger than can be explained by a charge ...
Quantum chemistry based simulations allow us to explore the length and time scales which are experim...
This thesis reports the experimental investigation of intermolecular charge transport in dye monolay...
Charge recombination between oxidized dyes attached to mesoporous TiO2 and electrons in the TiO2 was...
Quantum chemical calculations have been used to model dye-sensitized nanostructured titanium dioxide...
Measured hole diffusion coefficients in dye monolayers are larger than can be explained by a charge ...
We investigate electron and hole dynamics upon photon excitation in dye-sensitized solar cells, usin...
In dye-sensitized solar cells (DSSCs) photogenerated positive charges are normally considered to be ...
We report a thorough theoretical and computational investigation of the effect of dye adsorption on t...
The charge recombination reaction from the semiconductor (TiO2) conduction band to electron acceptin...
Motions of molecules adsorbed to surfaces may control the rate of charge transport within monolayers...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
We present a method based on a time-dependent self-consistent density functional tight-binding (TD-D...
We present a combined experimental and theoretical investigation into the charge transport and recom...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
Measured hole diffusion coefficients in dye monolayers are larger than can be explained by a charge ...
Quantum chemistry based simulations allow us to explore the length and time scales which are experim...
This thesis reports the experimental investigation of intermolecular charge transport in dye monolay...
Charge recombination between oxidized dyes attached to mesoporous TiO2 and electrons in the TiO2 was...
Quantum chemical calculations have been used to model dye-sensitized nanostructured titanium dioxide...
Measured hole diffusion coefficients in dye monolayers are larger than can be explained by a charge ...
We investigate electron and hole dynamics upon photon excitation in dye-sensitized solar cells, usin...
In dye-sensitized solar cells (DSSCs) photogenerated positive charges are normally considered to be ...
We report a thorough theoretical and computational investigation of the effect of dye adsorption on t...
The charge recombination reaction from the semiconductor (TiO2) conduction band to electron acceptin...
Motions of molecules adsorbed to surfaces may control the rate of charge transport within monolayers...
Electron transfer kinetics between donor and acceptor molecules in electrolytes has been described b...
We present a method based on a time-dependent self-consistent density functional tight-binding (TD-D...
We present a combined experimental and theoretical investigation into the charge transport and recom...
Intentional variations of the driving force for back electron transfer from titanium dioxide to a su...
Measured hole diffusion coefficients in dye monolayers are larger than can be explained by a charge ...