We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excitons in an energy-gradient structure composed of a cascaded bilayer of green- and red-emitting CdTe quantum dots (QDs) on bulk silicon. Here NRET dynamics were systematically investigated comparatively for the cascaded energy-gradient and mono-dispersed QD structures at room temperature. We show experimentally that NRET from the QD layer into silicon is enhanced by 40% in the case of an energy-gradient cascaded structure as compared to the mono-dispersed structures, which is in agreement with the theoretical analysis based on the excited state population-depopulation dynamics of the QDs. © 2013 AIP Publishing LLC
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
We show enhanced transfer of excitons from the energy-gradient of bilayered green-/red-emitting quan...
Silicon is one of the most dominant materials in photovoltaics. To increase optical absorption of si...
Cataloged from PDF version of article.We report strong exciton migration with an efficiency of 83.3%...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
We investigate quantum efficiency (QE) enhancement via recycling of trapped excitons in energy-gradi...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We report enhanced sensitization of silicon through nonradiative energy transfer (NRET) of the excit...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
We show enhanced transfer of excitons from the energy-gradient of bilayered green-/red-emitting quan...
Silicon is one of the most dominant materials in photovoltaics. To increase optical absorption of si...
Cataloged from PDF version of article.We report strong exciton migration with an efficiency of 83.3%...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
We investigate quantum efficiency (QE) enhancement via recycling of trapped excitons in energy-gradi...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
2014-09-02This dissertation comprises a study aimed at understanding the competing dynamics of energ...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
International audienceIn this work, direct experimental evidence of the excitation energy transfer f...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...