The main electronic feature of many nanocrystalline semiconductors and I organic materials is the presence of a distribution of localized states in the system with a broad energy dispersion. Carrier transport and recombination in these energetically disordered systems have raised increasing attention, in relation to applications in novel optoelectronic devices. We provide a general view of the physical interpretation of carrier transport coefficients (diffusion coefficient and mobility) and recombination lifetime in the presence of the localized states. We aim to carefully distinguish between the quantities that appear in the continuity equation for a small perturbation of the charge carriers (collective diffusion coefficient and lifetime) ...
Monte Carlo simulations are used to examine charge-transfer (CT) state recombination dynamics consid...
Many recent advances in novel solar cell technologies are based on charge separation in disordered s...
Electronic carriers in disordered organic and inorganic semiconductor materials, used in electronic,...
The main electronic feature of many nanocrystalline semiconductors and I organic materials is the pr...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Electron transfer between nanostructured semiconductor oxides and redox active electrolytes is a fun...
We make use of the numerical simulation random walk (RWNS) method to compute the ‘‘jump’’ diffusion...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
The dynamics of charge carriers after their creation at, or near, an interface play a critical role ...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
The properties and physical interpretation of the electron diffusion coefficient, Dn, observed in na...
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...
Many recent advances in novel solar cell technologies are based on charge separation in disordered s...
Electronic carriers in disordered organic and inorganic semiconductor materials, used in electronic,...
The main electronic feature of many nanocrystalline semiconductors and I organic materials is the pr...
The carrier transport properties in nanocrystalline semiconductors and organic materials play a key...
Electronic devices made of organic molecules are starting to show their transfomative power in vario...
Electron transfer between nanostructured semiconductor oxides and redox active electrolytes is a fun...
We make use of the numerical simulation random walk (RWNS) method to compute the ‘‘jump’’ diffusion...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
The dynamics of charge carriers after their creation at, or near, an interface play a critical role ...
Using Monte Carlo simulations, we revisited charge transport in degenerate disordered organic semico...
The diffusion–recombination model is a key tool in understanding the photovoltaic operation of solar...
We employed bias-assisted charge extraction techniques to investigate the transient and steady-state...
The properties and physical interpretation of the electron diffusion coefficient, Dn, observed in na...
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...
Many recent advances in novel solar cell technologies are based on charge separation in disordered s...
Electronic carriers in disordered organic and inorganic semiconductor materials, used in electronic,...