The use of indium-free transparent conductive electrodes is of great interest for organic optoelectronic devices. Among the possible replacements for ITO, dielectric/metal/dielectric (D/M/D) multilayer structures have already proven to be quite efficient. One issue with organic devices is their lifetime, which depends not only on the organic molecules used but also on the electrodes. Therefore we study the variation, with elapsed time, of the electrical and optical properties of different D/M/D structures, with M = Ag or Cu/Ag. Six years after realization, it has been shown that if some structures retained an acceptable conductivity, some others became non-conductive. For a sample which remains conductive, in the case of a PET/MoO3/Ag/MoO...
Oxide/Metal/Oxide structures have been shown to be promising alternatives to ITO. In such structures...
Dielectric metal dielectric DMD transparent electrodes emerged as a compelling alternative to the ...
Organic photovoltaic (OPV) solar cells show great promise but suffer from short operating lifetimes....
MoO3/Ag/MoO3 (MAM) multilayer structures were deposited by vacuum evaporation on polyethylene tereph...
Among ITO alternative, dielectric/metal/dielectric multilayer structures are one of the most often s...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
The properties of molybdenum trioxide (20 nm)/silver (x nm)/molybdenum trioxide (35 nm) multilayer s...
Transparent conductive oxide/metal/oxide, where the oxide is MoO3 and the metal is Cu, is realized a...
Dielectric/Metal/Dielectric structures can be used as substituent to transparent conductive electrod...
Transparent electrodes are necessary in optoelectronic devices such as light-emitting diodes, liquid...
The present manuscript is dedicated to In free transparent conductive and flexible heterostructure e...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium tin oxide (ITO) is the most common transparent conductive material used in industrial process...
International audienceDepending on the resistivity and transmittance, transparent conductive oxides ...
The dielectric/Ag structures were fabricated on glass substrates using various metal oxides as diele...
Oxide/Metal/Oxide structures have been shown to be promising alternatives to ITO. In such structures...
Dielectric metal dielectric DMD transparent electrodes emerged as a compelling alternative to the ...
Organic photovoltaic (OPV) solar cells show great promise but suffer from short operating lifetimes....
MoO3/Ag/MoO3 (MAM) multilayer structures were deposited by vacuum evaporation on polyethylene tereph...
Among ITO alternative, dielectric/metal/dielectric multilayer structures are one of the most often s...
Depending on their resistivity and their transmittance, the thin films of transparent conductive oxi...
The properties of molybdenum trioxide (20 nm)/silver (x nm)/molybdenum trioxide (35 nm) multilayer s...
Transparent conductive oxide/metal/oxide, where the oxide is MoO3 and the metal is Cu, is realized a...
Dielectric/Metal/Dielectric structures can be used as substituent to transparent conductive electrod...
Transparent electrodes are necessary in optoelectronic devices such as light-emitting diodes, liquid...
The present manuscript is dedicated to In free transparent conductive and flexible heterostructure e...
Indium-doped tin oxide (ITO) is the transparent conductive material of choice for a wide range of op...
Indium tin oxide (ITO) is the most common transparent conductive material used in industrial process...
International audienceDepending on the resistivity and transmittance, transparent conductive oxides ...
The dielectric/Ag structures were fabricated on glass substrates using various metal oxides as diele...
Oxide/Metal/Oxide structures have been shown to be promising alternatives to ITO. In such structures...
Dielectric metal dielectric DMD transparent electrodes emerged as a compelling alternative to the ...
Organic photovoltaic (OPV) solar cells show great promise but suffer from short operating lifetimes....