AbstractWe report about a systematic study of nanocrystalline ZnO which exhibits intensive blue-green defect luminescence after annealing in reducing atmosphere. The ZnO has been dispersed in a polymer and tested with a commercial Si solar cell. A quantitative model including photoluminescent quantum efficiency, absorption and backscattering has been developed and compared with measurements of the ZnO-coated cell. We find that strong backscattering from the ZnO layer leads a reduced efficiency of the system except for a small enhancement in the UV region. Necessary conditions for achieving overall improvements in cell efficiency are derived
Zinc oxide (ZnO) is a wide band-gap semiconductor that is of interest for application in dye sensiti...
AbstractDye-sensitized solar cells based on vertically-aligned ZnO nanorod, were analyzed at differe...
Efficiency improvement of the industrial scale solar cells to capture sunlight as an important renew...
AbstractWe report about a systematic study of nanocrystalline ZnO which exhibits intensive blue-gree...
8th-10th May 2014International audienceMost of the existing solar conversion plants are equipped wit...
International audienceA down-shifting material can generate one low-energy photon for every one inci...
International audienceIn the present communication, we propose the application of the wide bandgap s...
International audienceMost of the existing photovoltaic (PV) solar cells are already optimized in te...
International audienceThird generation solar cells are based on low cost fabrication concepts which ...
International audienceIn the present communication, we propose the application of ZnO nanoparticles ...
National audienceIn the past years the application of ZnO in the domain of solar energy conversion h...
The mismatch between solar cell response and solar spectrum is one of the biggest challenges to achi...
International audienceMost of the existing photovoltaic (PV) solar cells are already optimized in te...
International audienceA great economic progress in white LEDs and photovoltaic (PV) markets is possi...
Dye-sensitized solar cells based on vertically-aligned ZnO nanorod, were analyzed at different condi...
Zinc oxide (ZnO) is a wide band-gap semiconductor that is of interest for application in dye sensiti...
AbstractDye-sensitized solar cells based on vertically-aligned ZnO nanorod, were analyzed at differe...
Efficiency improvement of the industrial scale solar cells to capture sunlight as an important renew...
AbstractWe report about a systematic study of nanocrystalline ZnO which exhibits intensive blue-gree...
8th-10th May 2014International audienceMost of the existing solar conversion plants are equipped wit...
International audienceA down-shifting material can generate one low-energy photon for every one inci...
International audienceIn the present communication, we propose the application of the wide bandgap s...
International audienceMost of the existing photovoltaic (PV) solar cells are already optimized in te...
International audienceThird generation solar cells are based on low cost fabrication concepts which ...
International audienceIn the present communication, we propose the application of ZnO nanoparticles ...
National audienceIn the past years the application of ZnO in the domain of solar energy conversion h...
The mismatch between solar cell response and solar spectrum is one of the biggest challenges to achi...
International audienceMost of the existing photovoltaic (PV) solar cells are already optimized in te...
International audienceA great economic progress in white LEDs and photovoltaic (PV) markets is possi...
Dye-sensitized solar cells based on vertically-aligned ZnO nanorod, were analyzed at different condi...
Zinc oxide (ZnO) is a wide band-gap semiconductor that is of interest for application in dye sensiti...
AbstractDye-sensitized solar cells based on vertically-aligned ZnO nanorod, were analyzed at differe...
Efficiency improvement of the industrial scale solar cells to capture sunlight as an important renew...