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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 >Amorphous silicon/crystal silicon heterojunction double-junction tandem solar cell with open-circuit voltage above 1.5 V and high short-circuit current density
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Amorphous silicon/crystal silicon heterojunction double-junction tandem solar cell with open-circuit voltage above 1.5 V and high short-circuit current density

机译:无定形硅/晶体硅的异质结双结串联太阳能电池,开路电压高于1.5 V,短路电流密度高

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摘要

Photovoltaic device requires light-absorbing materials that are highly efficient, low cost, lightweight, and stable during operation. Here we demonstrate the use of a hydrogenated amorphous silicon (a-Si:H) top cell and a crystal silicon heterojunction (HIT) bottom cell to form a double junction solar cell with a high open circuit voltage (V-OC), which is potentially functioned in the solar-to-hydrogen generation process and the replacement of chemical battery. Our photovoltaic device shows a high overall V-OC of 1.561 V and a short current density of over 14 mA/cm(2), which outperforms all other reported pure silicon-based double-junction solar cells. The newly developed a-Si:H/HIT double-junction solar cells hold the promise for some potential applications.
机译:光伏器件需要在操作期间高效,低成本,轻质和稳定的光吸收材料。 在这里,我们证明了使用氢化非晶硅(A-Si:H)顶部电池和晶体硅异质结(击中)底部电池,以形成具有高开路电压(V-OC)的双结太阳能电池,即 可能在太阳能发电过程中运用和更换化学电池。 我们的光伏器件显示出1.561 V的高整体V-OC,并且短电流密度超过14 mA / cm(2),这优于所有其他报告的纯硅基双结太阳能电池。 新开发的A-Si:H / HIT双结太阳能电池对一些潜在应用的承诺。

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