Despite the poor screening of the Coulomb potential in organic semiconductors, excitons can dissociate efficiently into free charges at a donor–acceptor heterojunction, leading to application in organic solar cells. A kinetic Monte Carlo model that explains this high efficiency as a two-step process is presented. Driven by the band offset between donor and acceptor, one of the carriers first hops across the interface, forming a charge transfer (CT) complex. Since the electron and hole forming the CT complex have typically not relaxed within the disorder-broadened density of states (DOS), their remaining binding energy can be overcome by further relaxation in the DOS. The model only contains parameters that are determined from independent me...
Energy transfer has been identified as an important process in ternary organic solar cells. Here, we...
We study incoherent charge separation in a lattice model of an all-organic bilayer. Charge delocaliz...
The electron-hole pair created via photon absorption in organic photoconversion systems must overcom...
Despite the poor screening of the Coulomb potential in organic semiconductors, excitons can dissocia...
Organic Photovoltaic devices (OPVs) are becoming adequately cost and energy efficient to be consider...
Efficient organic solar cells are based on (electron) donor–acceptor heterojunctions. An optically g...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
We introduced a minimal model of the donor-acceptor interface encountered in organic solar cells to ...
A general dynamic Monte Carlo model for exciton dissociation at a donor-acceptor interface that incl...
Using high-precision simulation calculations and a semianalytical theory, we finally resolve the con...
The ever-increasing demand for cleaner sources of energy calls for inexpensive and highly efficient ...
Understanding the sources of energy loss in bulk heterojunction (BHJ) solar cells is of outstanding ...
In organic materials, exciton dissociation into free charges requires overcoming an electron-hole Co...
Energy transfer has been identified as an important process in ternary organic solar cells. Here, we...
Energy transfer has been identified as an important process in ternary organic solar cells. Here, we...
We study incoherent charge separation in a lattice model of an all-organic bilayer. Charge delocaliz...
The electron-hole pair created via photon absorption in organic photoconversion systems must overcom...
Despite the poor screening of the Coulomb potential in organic semiconductors, excitons can dissocia...
Organic Photovoltaic devices (OPVs) are becoming adequately cost and energy efficient to be consider...
Efficient organic solar cells are based on (electron) donor–acceptor heterojunctions. An optically g...
Efficient organic solar cells are based on (electron) donor-acceptor heterojunctions. An optically g...
We demonstrate that efficient and nearly field-independent charge separation of electron hole pairs ...
We introduced a minimal model of the donor-acceptor interface encountered in organic solar cells to ...
A general dynamic Monte Carlo model for exciton dissociation at a donor-acceptor interface that incl...
Using high-precision simulation calculations and a semianalytical theory, we finally resolve the con...
The ever-increasing demand for cleaner sources of energy calls for inexpensive and highly efficient ...
Understanding the sources of energy loss in bulk heterojunction (BHJ) solar cells is of outstanding ...
In organic materials, exciton dissociation into free charges requires overcoming an electron-hole Co...
Energy transfer has been identified as an important process in ternary organic solar cells. Here, we...
Energy transfer has been identified as an important process in ternary organic solar cells. Here, we...
We study incoherent charge separation in a lattice model of an all-organic bilayer. Charge delocaliz...
The electron-hole pair created via photon absorption in organic photoconversion systems must overcom...