Optical transmittance and conductivity for thin metallic films, such as Au, are two inversely related and extremely important parameters for its application in organic photovoltaics as the front electrode. We report our findings on how these parameters have been optimized to attain maximum possible efficiencies by fabricating organic solar cells with thin Au film anodes of differing optical transmittances and consequently due to scaling at the nanolevel, varying electrical conductivities. There was an extraordinary improvement in the overall solar cell efficiency (to the order of 49%) when the Au thin film transmittance was increased from 38% to 54%. Surface morphologies of these thin films also have an effect on the critical parameters inc...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
Optical transmittance and conductivity for thin metallic films, such as Au, are two inversely relate...
International audienceThe energy conversion efficiency of organic solar cells based on simple electr...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
International audiencePreviously, we have shown that a gold thin film of only 0.5 nm introduced at t...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
The power conversion efficiency of organic thin film solar cells must be improved before they can be...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
Optical transmittance and conductivity for thin metallic films, such as Au, are two inversely relate...
International audienceThe energy conversion efficiency of organic solar cells based on simple electr...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
International audiencePreviously, we have shown that a gold thin film of only 0.5 nm introduced at t...
Electrodes and the nature of their contact with organic materials play a crucial role in the realiza...
AbstractThe development of electrodes on polymeric substrates for organic electronics requires depos...
The power conversion efficiency of organic thin film solar cells must be improved before they can be...
Organic photovoltaic cells based on the multilayers structure, indium tin oxide (ITO)/copper-phtha...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...
International audienceThe electromagnetic field distribution inside multilayer organic solar cells i...