The interconnection layer (ICL) that connects adjacent subcells electrically and optically in solution‐processed multi‐junction polymer solar cells must meet functional requirements in terms of work functions, conductivity, and transparency, but also be compatible with the multiple layer stack in terms of processing and deposition conditions. Using a combination of poly(3,4‐ethylenedioxythiophene):polystyrene sulfonate, diluted in near azeotropic water/n‐propanol dispersions as hole transport layer, and ZnO nanoparticles, dispersed in isoamyl alcohol as electron transport layer, a novel, versatile ICL has been developed for solution‐processed tandem and triple‐junction solar cells in an n‐i‐p architecture. The ICL has been incorporated in s...
One of the limitations of present organic solar cells is the relatively poor spectral overlap of the...
We developed an active inter-connecting layer (ICL) composed of SnCl2Pc/Al/F16CuPc/ZnPc to achieve a...
One of the limitations of present org. solar cells is the relatively poor spectral overlap of their ...
The interconnection layer (ICL) that connects adjacent subcells electrically and optically in soluti...
The interconnection layer (ICL) that connects adjacent subcells electrically and optically in soluti...
Organic photovoltaic (OPV) technology has drawn much attention during the past few decades due to it...
A robust and efficient interconnection layer (ICL) based on low conductive poly(3,4-ethylenedioxythi...
We report a thin and robust interconnecting layer (ICL) for polymer tandem solar cells. This ICL sho...
Multiple junction solar cells incorporating polymer:fullerene bulk heterojunctions as active layers ...
We discuss the materials challenges for increasing cell efficiencies of polymer solar cells via the ...
Solar cells convert solar energy directly into electricity and are attractive contribute to the incr...
Tin oxide nanoparticles are employed as an electron transporting layer in solution‐processed polymer...
One of the limitations of present organic solar cells is the relatively poor spectral overlap of the...
We developed an active inter-connecting layer (ICL) composed of SnCl2Pc/Al/F16CuPc/ZnPc to achieve a...
One of the limitations of present org. solar cells is the relatively poor spectral overlap of their ...
The interconnection layer (ICL) that connects adjacent subcells electrically and optically in soluti...
The interconnection layer (ICL) that connects adjacent subcells electrically and optically in soluti...
Organic photovoltaic (OPV) technology has drawn much attention during the past few decades due to it...
A robust and efficient interconnection layer (ICL) based on low conductive poly(3,4-ethylenedioxythi...
We report a thin and robust interconnecting layer (ICL) for polymer tandem solar cells. This ICL sho...
Multiple junction solar cells incorporating polymer:fullerene bulk heterojunctions as active layers ...
We discuss the materials challenges for increasing cell efficiencies of polymer solar cells via the ...
Solar cells convert solar energy directly into electricity and are attractive contribute to the incr...
Tin oxide nanoparticles are employed as an electron transporting layer in solution‐processed polymer...
One of the limitations of present organic solar cells is the relatively poor spectral overlap of the...
We developed an active inter-connecting layer (ICL) composed of SnCl2Pc/Al/F16CuPc/ZnPc to achieve a...
One of the limitations of present org. solar cells is the relatively poor spectral overlap of their ...