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Towards very low-cost mass production of thin-film silicon photovoltaic (PV) solar modules on glass

机译:致力于以低成本在玻璃上大规模生产薄膜硅光伏(PV)太阳能模块

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Production volume of PV modules increases at > 35% per year, but one is yet far from making a global impact on energy supply. One of the obstacles is given by the present high production costs of PV modules. A possibility to reduce costs are thin-film PV modules on glass. The specific option of thin-film silicon is considered. The combination of amorphous and microcrystalline silicon thin films within a tandem solar cell corresponds to a theoretical optimum. In practice, stabilized efficiencies of 10% to 12% have so far been obtained in the laboratory with such tandem solar cells. Silicon being a material with an indirect band gap, its absorption coefficient is relatively low, and therefore light management in the solar cell has to be further optimized. Thin-film silicon can be deposited by plasma-enhanced CVD, as used for AM-LCD displays. The use of modified fabrication equipment from the AM-LCD Display Industry is therefore a promising way to implement low-cost mass production. (c) 2005 Elsevier B.V. All rights reserved.
机译:光伏组件的产量每年以> 35%的速度增长,但是距离全球对能源供应的影响还很遥远。当前光伏组件的高生产成本给障碍之一。玻璃上的薄膜光伏组件可以降低成本。考虑薄膜硅的具体选择。串联太阳能电池中非晶和微晶硅薄膜的组合对应于理论上的最佳值。实际上,到目前为止,在具有这种串联太阳能电池的实验室中,已获得10%至12%的稳定效率。硅是具有间接带隙的材料,其吸收系数相对较低,因此必须进一步优化太阳能电池中的光管理。薄膜硅可以通过用于AM-LCD显示器的等离子增强CVD沉积。因此,使用AM-LCD显示器行业的改良制造设备是实现低成本批量生产的一种有前途的方法。 (c)2005 Elsevier B.V.保留所有权利。

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