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Manufacturing method of flexible solar cell flexible solar cell and flexible solar cell module thereby

机译:柔性太阳能电池的制造方法,柔性太阳能电池及柔性太阳能电池模块

摘要

The present invention relates to a method of manufacturing a flexible solar cell and a flexible solar cell manufactured thereby, which comprises a first step of forming a semiconductor layer on a bulk substrate, a second step of forming a curable resin layer on the semiconductor layer, A third step of patterning and curing the curable resin layer to form a flexible substrate having a hole pattern, a fourth step of forming a back electrode in the hole pattern, a fifth step of removing the bulk substrate, And a sixth step of forming a front electrode on the bottom of the semiconductor layer. The method of manufacturing a flexible solar cell, the flexible solar cell fabricated thereby, and the flexible solar cell module using the same. Accordingly, the present invention improves the performance of a solar cell by improving the electrical and thermal characteristics that are problematic when a flexible substrate is used by applying a flexible substrate provided with a hole pattern. In the flexible solar cell using the flexible substrate provided with such a hole pattern, The present invention has an advantage in that it can provide an ultra lightweight flexible solar cell or an ultra lightweight flexible solar cell module that can solve the problem of connecting the rear electrodes when the battery is connected in series to be used in a module form and can greatly reduce the weight.
机译:本发明涉及一种制造柔性太阳能电池的方法和由此制造的柔性太阳能电池,其包括在本体基板上形成半导体层的第一步骤,在半导体层上形成可固化树脂层的第二步骤,将可固化树脂层构图和固化以形成具有孔图案的柔性基板的第三步骤,在孔图案中形成背面电极的第四步骤,去除块状基板的第五步骤以及形成孔的柔性基板的第六步骤。前电极位于半导体层底部。制造柔性太阳能电池的方法,由此制造的柔性太阳能电池以及使用该柔性太阳能电池模块的柔性太阳能电池模块。因此,本发明通过改善电和热特性来改善太阳能电池的性能,所述电和热特性在通过施加设置有孔图案的柔性基板来使用柔性基板时存在问题。在使用具有这样的孔图案的挠性基板的挠性太阳能电池中,本发明的优点在于,可以提供能够解决连接背面的问题的超轻量的挠性太阳能电池或超轻量的挠性太阳能电池模块。电池串联连接时的电极以模块形式使用,可以大大减轻重量。

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