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ARCHITECTURAL SYSTEM AND RELATED BUILT-IN NANOMEMBRANES FOR THE EMPLOYER OF A LIGHT-TO-ELECTRICITY CONVERTING UNIT FULL IN SILICONE FOR GIANT PHOTO CONVERSION AND MANUFACTURING
ARCHITECTURAL SYSTEM AND RELATED BUILT-IN NANOMEMBRANES FOR THE EMPLOYER OF A LIGHT-TO-ELECTRICITY CONVERTING UNIT FULL IN SILICONE FOR GIANT PHOTO CONVERSION AND MANUFACTURING
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机译:硅中用于光电转换和制造的光电转换单元用电系统的建筑系统和相关内置纳米膜
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摘要
Architecture of the light-to-electricity converter characterized in that the system of amorphized nanograins, preferentially nanograins of amorphized silicon, of any shape are optimally spread within the crystalline host material, preferentially crystalline silicon that are wrapped around with a metamaterial seg-matter nanolayer, characterized by secondary generation centers, called segtons, that are conditioned around divacancies and disposed entirely or only partly within the volume of the emitter, this volume being limited at each end by a nanomembrane assuming the appropriate exploitation of the lower-energy secondary generation through the giant photoconversion involving hot electrons, segtons, and seg-matter.
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