Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of processing, low cost, physical flexibility and large area coverage. However, the solar power conversion efficiencies of pure polymer devices are poor. When electron acceptor nanocrystals are blended with a donor conducting polymer to create a bulk heterojunction structure, the optical and electronic properties of both materials combine synergistically to enhance overall performance. We use a novel single pot process to fabricate the nanocomposite photovoltaic material, where PbS nanocrystals are grown directly in a solution of the conducting polymer MEH-PPV. This study investigates the dependence of nanocrystal growth size and subsequent powe...
International audienceA promising route for photovoltaic conversion has emerged from the combination...
Varying the donor–acceptor ratio is a common technique in optimising organic photovoltaic (OPV) devi...
A persistent limitation of organic semiconductors is their low dielectric constant єr, which limits ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
In this letter we report the carrier mobilities in an inorganic nanocrystal: conducting polymer comp...
Hybrid nanocomposites (HCs) obtained by blend solutions of conjugated polymers and colloidal semicon...
We report a comparison of photoconductive performance of PbS nanocrystal/polymer composite devices c...
A near-infrared sensitive hybrid photovoltaic system between PbS nanocrystals (PbS-NCs) and C-60 is ...
In this paper, we report photovoltaic devices fabricated from lead sulfide nanocrystals and the cond...
In this dissertation we report the synthesis and photovoltaic characterization of a number of semico...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
We describe a single step method to synthesise lead sulphide (PbS) nanocrystals directly in the conj...
International audienceA promising route for photovoltaic conversion has emerged from the combination...
Varying the donor–acceptor ratio is a common technique in optimising organic photovoltaic (OPV) devi...
A persistent limitation of organic semiconductors is their low dielectric constant єr, which limits ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
Organic photovoltaics promise a number of key advantages over conventional silicon, namely: Ease of ...
In this letter we report the carrier mobilities in an inorganic nanocrystal: conducting polymer comp...
Hybrid nanocomposites (HCs) obtained by blend solutions of conjugated polymers and colloidal semicon...
We report a comparison of photoconductive performance of PbS nanocrystal/polymer composite devices c...
A near-infrared sensitive hybrid photovoltaic system between PbS nanocrystals (PbS-NCs) and C-60 is ...
In this paper, we report photovoltaic devices fabricated from lead sulfide nanocrystals and the cond...
In this dissertation we report the synthesis and photovoltaic characterization of a number of semico...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
We describe a single step method to synthesise lead sulphide (PbS) nanocrystals directly in the conj...
International audienceA promising route for photovoltaic conversion has emerged from the combination...
Varying the donor–acceptor ratio is a common technique in optimising organic photovoltaic (OPV) devi...
A persistent limitation of organic semiconductors is their low dielectric constant єr, which limits ...