AbstractThe development of electrodes on polymeric substrates for organic electronics requires deposition at low temperatures, with a limited or no thermal treatment; a process which results in high resistivity materials. To achieve low resistivity films, we tested tri-layer anodes in organic solar cells. A significant improvement of the sheet resistance was obtained without compromising the optical properties. The sheet resistance depends on the gold layer thickness that must be ∼20 nm because of Au absorption. The use of an ITO(30nm)/Au(20nm)/ITO(30nm) anode in CuPc/C60-based photovoltaic cells yielded a clear enhancement of the fill factor leading to an improvement of efficiency
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
AbstractWe have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organi...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
We investigated the influence of different indium tin oxide (ITO) surface treatments on the performa...
Realization of performing large area flexible organic photovoltaic cells needs highly conductive and...
Indium Tin Oxide (ITO) is the most commonly used anode as a transparent electrode and more recently ...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
The devices studied in this work consist of copper phthalocyanine (CuPc) and fullerene (C60) films b...
Flexible multilayer electrodes that combine high transparency, high conductivity, and efficient char...
The characteristics of transparent ITO/Ag-Pd-Cu (APC)/ITO multilayer cathodes were investigated for ...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
Optical transmittance and conductivity for thin metallic films, such as Au, are two inversely relate...
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
AbstractWe have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organi...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
We investigated the influence of different indium tin oxide (ITO) surface treatments on the performa...
Realization of performing large area flexible organic photovoltaic cells needs highly conductive and...
Indium Tin Oxide (ITO) is the most commonly used anode as a transparent electrode and more recently ...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
The devices studied in this work consist of copper phthalocyanine (CuPc) and fullerene (C60) films b...
Flexible multilayer electrodes that combine high transparency, high conductivity, and efficient char...
The characteristics of transparent ITO/Ag-Pd-Cu (APC)/ITO multilayer cathodes were investigated for ...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
The presence of a transparent conductive electrode such as indium tin oxide (ITO) limits the reliabi...
Optical transmittance and conductivity for thin metallic films, such as Au, are two inversely relate...
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
The electrical performance of indium tin oxide (ITO) coated glass was improved by including a contro...
AbstractWe have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organi...