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Reorganized Porous Silicon Bragg Reflectors for Thin-Film Silicon Solar Cells

机译:用于薄膜硅太阳能电池的重组多孔硅布拉格反射器

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Stacks of porous silicon layers have been successfully applied to maximize internal reflection at the interface between a silicon substrate and an epitaxially grown layer. The stack is consist of alternating porous layers of high and low porosity, defined by the quarter-wavelength rule. During the hydrogen bake prior to epitaxial growth of the epitaxial layer, the porous silicon stack crystallizes in the form of thin quasi-monocrystalline silicon layers incorporating large voids. Experimental data of the measured external reflectance have been linked to the internal reflectance. An optical-path-length enhancement factor of seven was calculated in the wavelength range of 900–1200 nm. Application on thin-film epitaxial solar cells showed a 12% increase in short-circuit current and efficiency.
机译:已经成功地应用了多孔硅层的堆叠,以使硅衬底和外延生长层之间的界面处的内部反射最大化。叠层由四分之一波长规则定义的高孔隙率和低孔隙率的交替多孔层组成。在外延层的外延生长之前的氢烘烤期间,多孔硅叠层以包含大空隙的薄的准单晶硅层的形式结晶。测量的外部反射率的实验数据已与内部反射率关联。在900–1200 nm的波长范围内,计算出的光程长度增强因子为7。在薄膜外延太阳能电池上的应用表明短路电流和效率提高了12%。

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