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INTRODUCTION TO IN-SITU PRODUCED PEROVSKITE SOLAR CELLS; A NEW CONCEPT TOWARDS LOWEST MODULE MANUFACTURING COSTS

机译:原位生产钙钛矿太阳能电池简介;最低模块制造成本的新概念

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Starting from the glass frit procedure developed to seal dye solar cells, research is being conducted at Fraunhofer ISE on optimizing and upscaling the principle of perovskite solar cells by an in-situ coating method. A process is proposed, in which the porous substrate films can be filled in sequence with the dissolved active materials of the perovskite solar cell. By varying the porosity and the particle size in the substrate films, the active materials can be deposited in a self-organised process by capillary forces, and form the solar cell after drying. Specially designed structures in the glass substrate make the transport and inert drying of the solvent feasible. The procedure will enable future perovskite solar modules to be produced with minimal consumption of resources and at very low costs. In this paper, we report and comment on our results from proof of principle and about the on-going work in this new area.
机译:从开发用于密封染料太阳能电池的玻璃粉工艺开始,Fraunhofer ISE正在进行通过原位涂覆方法优化和扩大钙钛矿型太阳能电池原理的研究。提出了一种方法,其中可以用钙钛矿太阳能电池的溶解的活性材料顺序填充多孔基材膜。通过改变基底膜中的孔隙率和粒径,可以通过毛细作用力以自组织的方式沉积活性材料,并在干燥后形成太阳能电池。玻璃基板中经过特殊设计的结构使溶剂的运输和惰性干燥变得可行。该程序将使未来的钙钛矿型太阳能电池组件能够以最少的资源消耗和极低的成本生产。在本文中,我们从原理证明以及在这一新领域正在进行的工作中对我们的结果进行报告和评论。

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