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Printable liquid silicon for local doping of solar cells

机译:用于局部掺杂太阳能电池的可印刷液体硅

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摘要

We demonstrate the application of a liquid-processed doped silicon precursor as a doping source for the fabrication of interdigitated back contact solar cells. We integrate phosphorus- as well as boron-doped liquid silicon in our n-type interdigitated back contact cell process based on laser-structuring. The cell with the phosphorus back surface field from liquid silicon has an efficiency of 20.9% and the cell with the boron emitter from liquid silicon has an efficiency of 21.9%. We measure saturation current densities of 34 fA cm(-2) on phosphorus-doped layers with a sheet resistance of 108 Omega/sq and 18 fA cm(-2) on boron-doped layers with a sheet resistance of 140 Omega/sq using passivated test samples.
机译:我们证明将液体处理的掺杂硅前体作为掺杂源的施用,用于制造间隙的后接触太阳能电池。 基于激光结构化,我们将磷和掺杂的液体硅整合在我们的n型互联的背部接触电池过程中。 来自液态硅的磷背面场的细胞具有20.9%的效率,并且具有来自液态硅的硼发射器的电池的效率为21.9%。 在硼掺杂层上测量磷掺杂层上的亚磷掺杂层上的饱和度电流密度为34厘米(-2)的磷掺杂层,掺杂层的硼掺杂层的薄层电阻为140ω/ sq 钝化的测试样品。

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