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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Thin-film monocrystalline-silicon solar cells made by a seed layer approach on glass-ceramic substrates
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Thin-film monocrystalline-silicon solar cells made by a seed layer approach on glass-ceramic substrates

机译:通过种子层法在玻璃陶瓷基板上制成的薄膜单晶硅太阳能电池

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摘要

Solar modules made from thin-film crystalline-silicon layers of high quality on glass substrates could lower the price of photovoltaic electricity substantially. One way to create crystalline-silicon thin films on non-silicon substrates is to use the so-called ‘‘seed layer approach’’, in which a thin crystalline-silicon seed layer is first created, followed by epitaxial thickening of this seed layer.In this paper, we present the first solar cell results obtained on 10-mm-thick monocrystalline-silicon (mono-Si) layers obtained by a seed layer approach on transparent glass-ceramic substrates. The seed layers were made using implant-induced separation and anodic bonding. These layers were then epitaxially thickened by thermal CVD. Simple solar cell structures without integrated light trapping features showed efficiencies of up to 7.5%. Compared to polycrystalline-silicon layers made by aluminum-induced crystallization of amorphous silicon and thermal CVD, the mono-Si layers have a much higher bulk diffusion lifetime.
机译:由玻璃基板上高质量的薄膜结晶硅层制成的太阳能电池组件可以大大降低光伏发电的价格。在非硅衬底上创建晶体硅薄膜的一种方法是使用所谓的“种子层方法”,其中首先创建薄的晶体硅种子层,然后对该种子层进行外延加厚在本文中,我们介绍了在透明玻璃陶瓷基板上通过种子层方法获得的10毫米厚单晶硅(mono-Si)层上获得的第一个太阳能电池结果。种子层是使用注入诱导分离和阳极键合制成的。然后通过热CVD使这些层外延增厚。没有集成光捕获功能的简单太阳能电池结构显示出高达7.5%的效率。与通过铝诱导的非晶硅结晶和热CVD制成的多晶硅层相比,单晶硅层具有更高的体扩散寿命。

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