We present a multiscale model based on Many-Body Green’s Function Theory in the GW approximation and the Bethe-Salpeter Equation (GW-BSE) for the simulation singlet and triplet exciton transport in molecular materials. Dynamics of coupled electron-hole pairs is modeled as a sequence of incoherent tunneling and decay events in a disordered morphology obtained at room temperature from Molecular Dynamics. The ingredients of the rates associated to the events, i.e., reorganization energies, site energies, lifetimes, and coupling elements, are determined from a combination of GW-BSE and classical polarizable force field techniques. Kinetic Monte Carlo simulations were then employed to evaluate dynamical properties such as the excitonic diffusion...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
In this Letter, we investigate the role of correlated molecular disorder on the dynamics of excitons...
In this paper, we investigate the role of correlated molecular disorder on the dynamics of excitons ...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We present a multiscale model based on many-body Green's functions theory in the GW approximation an...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
In this Letter, we investigate the role of correlated molecular disorder on the dynamics of excitons...
In this paper, we investigate the role of correlated molecular disorder on the dynamics of excitons ...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
Excitons, or coupled electron-hole excitations, are important both for fundamental optical propertie...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...
We develop a temperature-dependent theory for singlet exciton hopping transport in disordered semico...