Nanotechnology · 2016 · 40 citations · 26 references
EngineeringSubmicron Thick PlatformOrganic Solar CellAmorphous Silicon NanowiresOptoelectronic DevicesPlasmon-enhanced PhotovoltaicsPhotovoltaicsVivid ColorsPhotonic Integrated CircuitThin Film ProcessingElectrical EngineeringPhotonic DeviceApplied PhysicsBuilding-integrated PhotovoltaicsLight AbsorptionThin FilmsSolar CellsColorful Solar CellsSolar Cell Materials
We demonstrate submicron thick platform integrating amorphous silicon nanowires and thin-films achieving vivid colors in transmission and reflection. The platform nearly doubles the absorption efficiency compared to the starting thin-film without much compromising with color diverseness. The structural colors can be changed over a wide range by changing the diameters of the nanowires while still keeping the absorption efficiency higher than starting thin-film. The optical response of the platform is conceptually understood for different diameters combined with different thin-film thicknesses indicating the presence of leaky waveguide modes and coupled cavity modes. Our proposed platform can enable architectural low price colorful solar cells on transparent substrates.
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