The film morphology and device performance of planar heterojunction solar cells based on the molecular donor material α-sexithiophene (6T) are investigated. Planar heterojunctions of 6T with two different acceptor molecules, the C<sub>60</sub> fullerene and diindenoperylene (DIP), have been prepared. The growth temperature of the 6T bottom layer has been varied between room temperature and 100 °C for each acceptor. By means of X-ray diffraction and X-ray absorption, we show that the crystallinity and the molecular orientation of 6T is influenced by the preparation conditions and that the 6T film templates the growth of the subsequent acceptor layer. These structural changes are accompanied by changes in the characteristic parameters of the ...
Atomistic nonequilibrium molecular dynamics simulations have been used to model the morphology of sm...
Understanding the electronic structures of organic donor-acceptor heterojunction is of pronounced im...
In recent years organic photovoltaics, OPVs, have gained an increasing amount of attention for their...
Organic solar cells are a promising technology in the emerging field of renewable energies and enabl...
The performance of organic photovoltaic cells (OPVCs) shows a critical dependence on morphology and ...
We study the morphology and optical properties of vacuum deposited films of the α-ω-bis-(dicyanoviny...
Efficient organic electronic devices require a detailed understanding of the relation between molecu...
Small-molecule organic photovoltaic cells often employ a planar heterojunction (PHJ) geometry where ...
The aim of this article is to investigate the origin of the open circuit voltage (Voc) in organic he...
We present the material α-ω -bis-(dicyanovinylen)-sexithiophen (DCV6T) as donor material in organic ...
DoctorThe morphology of the active layer of organic solar cells has significant impacts on the curre...
Designing donor/acceptor (D/A) interfaces that can efficiently generate free carriers is an attracti...
We investigate the end-capped oligothiophene derivative α,ω -bis-(dicyanovinylene)-sexithiophene wit...
We investigate the structural influences on the device performance, especially on open-circuit volta...
The anisotropy inherent to many planar organic molecules leads to a high sensitivity of various fund...
Atomistic nonequilibrium molecular dynamics simulations have been used to model the morphology of sm...
Understanding the electronic structures of organic donor-acceptor heterojunction is of pronounced im...
In recent years organic photovoltaics, OPVs, have gained an increasing amount of attention for their...
Organic solar cells are a promising technology in the emerging field of renewable energies and enabl...
The performance of organic photovoltaic cells (OPVCs) shows a critical dependence on morphology and ...
We study the morphology and optical properties of vacuum deposited films of the α-ω-bis-(dicyanoviny...
Efficient organic electronic devices require a detailed understanding of the relation between molecu...
Small-molecule organic photovoltaic cells often employ a planar heterojunction (PHJ) geometry where ...
The aim of this article is to investigate the origin of the open circuit voltage (Voc) in organic he...
We present the material α-ω -bis-(dicyanovinylen)-sexithiophen (DCV6T) as donor material in organic ...
DoctorThe morphology of the active layer of organic solar cells has significant impacts on the curre...
Designing donor/acceptor (D/A) interfaces that can efficiently generate free carriers is an attracti...
We investigate the end-capped oligothiophene derivative α,ω -bis-(dicyanovinylene)-sexithiophene wit...
We investigate the structural influences on the device performance, especially on open-circuit volta...
The anisotropy inherent to many planar organic molecules leads to a high sensitivity of various fund...
Atomistic nonequilibrium molecular dynamics simulations have been used to model the morphology of sm...
Understanding the electronic structures of organic donor-acceptor heterojunction is of pronounced im...
In recent years organic photovoltaics, OPVs, have gained an increasing amount of attention for their...