Flexible amorphous silicon solar cells on surface-textured glass-fabric reinforced composite films

Photovoltaic Specialists Conference(2011)

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摘要
Flexible and lightweight amorphous silicon (a-Si:H) based thin-film solar cells on surface-textured glass-fabric reinforced inorganic-organic hybrid materials (hybrimer) composite films are developed in a superstrate configuration. The flexible and transparent film for the substrate was fabricated by impregnation and lamination of a woven glass-fabric with an epoxy-oligosiloxane based hybrimer on glass used as a temporary substrate. The epoxy hybrimer film showed high optical transparency of more than ~90% for wavelengths above 500nm and light scattering property. In order to improve light trapping, the surface texture of the film was replicated from a master texture of Asahi U-type glass by nanoimprint lithography. The fabricated cell was a single junction structure of ZnO:Al/p-μc-Si:H/p-a-SiC:H/i-a-Si:H/n-μc-Si:H/Al on the flexible film, and the thickness of i layer is ~300 nm. The flexible a-Si:H solar cell on surface-textured expoxy hybrimer film showed an conversion efficiency of 6.4%.
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ii-vi semiconductors,aluminium,amorphous semiconductors,elemental semiconductors,fabrics,hydrogen,laminations,nanolithography,organic-inorganic hybrid materials,resins,semiconductor thin films,silicon,silicon compounds,soft lithography,solar cells,surface texture,thin film devices,transparency,wide band gap semiconductors,woven composites,zinc compounds,asahi u-type glass,zno:al-si:h-sic:h-si:h-si:h-al,conversion efficiency,flexible film,high optical transparency,i layer thickness,light scattering property,light trapping,lightweight flexible amorphous silicon based thin-film solar cells,nanoimprint lithography,single junction structure,superstrate configuration,surface-textured epoxy-oligosiloxane based hybrimer film,surface-textured glass-fabric reinforced inorganic-organic hybrid material composite films,temporary substrate,transparent film,woven glass-fabric impregnation,woven glass-fabric lamination,light scattering,thin film solar cell,zinc oxide,films,hybrid material,glass
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