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OPTIMIZATION OF INLINE PROCESSES FOR THE PRODUCTION OF FREESTANDING EPITAXIALLY GROWN THIN FILMS FOR SOLAR CELLS

机译:对太阳能电池自由型外延生长薄膜生产的内联工艺的优化

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In this publication we discuss inline aspects of fabricating freestanding epitaxially grown thin silicon for solar cells. Especially the inline electrochemical porosification and its limitations are discussed and homogeneity improvements achieved with aid of electric simulations are presented. Different types of inhomogeneity for porous silicon layers lead to difficulties when forming a proper separation layer through reorganization and the detachment yield of the epitaxial thin film is affected. One of the solutions to ensure good detachment of the films is to form several local separation layers in a kind of puff pastry like structure where detachment of epitaxial film might proceed in any of the separation layers thus increasing yield. However, in case of too high porosity of the highly porous layer, large cavities without smaller supporting silicon pillars can collapse during reorganization and the surface layer can re-attach to the substrate making detachment of this area impossible. Additionally, local warping of the reorganized template before epitaxy can lead to detrimental defects like stacking faults.
机译:在本出版物中,我们讨论为太阳能电池制造独立式外延生长的薄硅的内联方面。特别是讨论了内联电化学孔化和其局限性,并提出了通过电模拟求助实现的均匀性改进。多孔硅层的不同类型的不均匀性导致通过重组形成适当的分离层并且外延薄膜的分离产率受到影响。一种确保薄膜良好脱离的解决方案是在一种像这样的泡芙糕点中形成几个局部分离层,其中外延膜的脱落可以在任何分离层中进行,从而增加产率。然而,在高度多孔层的孔隙率过高的情况下,在重组期间可以塌陷的没有较小的支撑硅柱的大空腔,并且表面层可以将其重新连接到基板上,这是不可能的该区域的脱离。此外,在外延之前的重组模板的局部翘曲可能导致堆叠故障的有害缺陷。

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