首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Preparation of microcrystalline single junction and amorphous-microcrystalline tandem silicon solar cells entirely by hot-wire CVD
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Preparation of microcrystalline single junction and amorphous-microcrystalline tandem silicon solar cells entirely by hot-wire CVD

机译:完全通过热线CVD制备微晶单结和非晶-微晶串联硅太阳能电池

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摘要

The hot-wire chemical vapour deposition (HWCVD) has been used to prepare highly conducting p- and n-doped microcrystalline silicon thin layers as well as highly photoconducting, low defect density intrinsic microcrystalline silicon films. These films were incorporated in all-HWCVD, all-microcrystalline nip and pin solar cells, achieving conversion efficiencies of eta = 5.4% and 4.5%, respectively. At present, only the nip-structures are found to be stable against light-induced degradation. Furthermore, microcrystalline nip and pin structures have been successfully incorporated as bottom cells in all-hot-wire amorphous-microcrystalline nipnip- and pinpin-tandem solar cells for the first time. So far, the highest conversion efficiencies of the "micromorph" tandem structures are eta = 5.7% for pinpin-solar cells and 7.0% for nipnip solar cells. (C) 2003 Elsevier B.V. All rights reserved.
机译:热线化学气相沉积(HWCVD)已用于制备高导电率的p型和n型掺杂微晶硅薄层,以及高光电导,低缺陷密度的本征微晶硅膜。这些薄膜被并入全HWCVD,全微晶压区和pin太阳能电池中,转换效率分别达到eta = 5.4%和4.5%。目前,仅发现辊隙结构对光诱导的降解是稳定的。此外,首次将微晶辊隙和销结构成功地作为底部电池纳入了全热线非晶微晶nipnip和pinpin串联太阳能电池。到目前为止,“微晶”串联结构的最高转换效率对于pinpin太阳能电池为eta = 5.7%,对于nipnip太阳能电池为7.0%。 (C)2003 Elsevier B.V.保留所有权利。

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