We report on the photovoltaic performance of bulk heterojunction solar cells using novel nanoparticles of 6-palmitate ascorbic acid surface modified TiO(2) as an electron acceptor embedded into the donor poly(3-hexyl)thiophene (P3HT) matrix. Devices were fabricated by using P3HT with varying amounts of red TiO(2) nanoparticles (1:1, 1:2, 1:3 w-w ratio). The devices were characterized by measuring current-voltage characteristics under simulated AM 1.5 conditions. Incident photon to current efficiency (IPCE) was spectrally resolved. The nanoscale morphology of such organic/inorganic hybrid blends was also investigated using atomic force microscopy (AFM)
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceHybrid bulk heterojunction solar cells based on nanocrystalline TiO2 (nc-TiO2)...
We report on the photovoltaic performance of bulk heterojunction solar cells using novel nanoparticl...
In this research we investigated the effect of composition on the fabrication and morphological char...
In this research we investigated the effect of composition on the fabrication and morphological char...
In this research we investigated the effect of composition on the fabrication and morphological char...
The nanoscale morphology of photoactive hybrid heterojunctions plays a key role in the performances ...
Hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (P3HT) and TiO2 nano...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
Hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (P3HT) and TiO2 nano...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceHybrid bulk heterojunction solar cells based on nanocrystalline TiO2 (nc-TiO2)...
We report on the photovoltaic performance of bulk heterojunction solar cells using novel nanoparticl...
In this research we investigated the effect of composition on the fabrication and morphological char...
In this research we investigated the effect of composition on the fabrication and morphological char...
In this research we investigated the effect of composition on the fabrication and morphological char...
The nanoscale morphology of photoactive hybrid heterojunctions plays a key role in the performances ...
Hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (P3HT) and TiO2 nano...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
Hybrid bulk heterojunction solar cells based on blend of poly(3-hexylthiophene) (P3HT) and TiO2 nano...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceThe nanoscale morphology of photoactive hybrid heterojunctions plays a key rol...
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceOver the past decades, organic solar cells based on semiconducting polymers or...
International audienceHybrid bulk heterojunction solar cells based on nanocrystalline TiO2 (nc-TiO2)...