AbstractWe have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photovoltaic (OPV) device, and compare different multilayer electrodes as the device anode. Two oxide/metal/oxide structures were investigated that consisted of MoO3/Ag/MoO3 (MAM) and TeO2/Ag/MoO3 (TAM) multilayers. Using scanning electron microscopy measurements, we find that the electrode utilising a TeO2 seed layer encouraged the growth of a more continuous silver layer at low film thickness relative to an MoO3 seed layer, and thus combines enhanced optical transmission (by around 7%) with low sheet resistance (14Ω/□). This enhanced optical transmittance results in an increased short-circuit current in photovoltaic cells, with TAM-based ...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
We report the fabrication of efficient indium tin oxide-free organic solar cells based on poly(3-hex...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
Realization of performing large area flexible organic photovoltaic cells needs highly conductive and...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
MoO3/Ag/MoO3 (MAM) multilayer structures were deposited by vacuum evaporation on polyethylene tereph...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
We report the fabrication of efficient indium tin oxide-free organic solar cells based on poly(3-hex...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
We have explored the fabrication of indium-free electrodes for use in a PCDTBT:PC70BM organic photov...
Realization of performing large area flexible organic photovoltaic cells needs highly conductive and...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
MoO3/Ag/MoO3 (MAM) multilayer structures were deposited by vacuum evaporation on polyethylene tereph...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Organic solar cells offer attractive properties for novel applications and continuous advances in ma...
We report the fabrication of efficient indium tin oxide-free organic solar cells based on poly(3-hex...
As an alternative to indium-tin oxide (ITO), MTO/Ag/MTO (MAM) multilayer transparent electrodes with...