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Controlling the thermal impact of ns laser pulses for the preparation of the P2 interconnect by local phase transformation in CIGSe

机译:通过CIGSe中的局部相变控制ns激光脉冲的热影响以制备P2互连

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The thermal impact of nanosecond laser pulses was beneficially employed and well-controlled for the preparation of the P2 interconnect by local phase transformation (i.e., by drawing conductive lines rather than removing the material) in CIGSe mini-modules, which were demonstrated to outperform their conventionally needle-patterned counterparts. Conductivity and elemental composition of the scribed lines as well as the extent of the heat-affected area were analyzed, quantified and taken into account for achieving optimal CIGSe solar module performances. This approach opens new prospects for significant simplification of the serial interconnection, since the P2 und the P3 can be scribed simultaneously after deposition of both the CIGSe and the TCO layer.
机译:在CIGSe微型模块中,通过局部相变(即,通过绘制导线而不是去除材料),纳秒激光脉冲的热影响得到了有利的利用和良好的控制,以用于P2互连的制备,事实证明该性能优于它们。传统上是针状图案的对应物。对划线的电导率和元素组成以及受热面积的范围进行了分析,量化和考虑,以实现最佳的CIGSe太阳能组件性能。这种方法为显着简化串行互连开辟了新的前景,因为可以在沉积CIGSe和TCO层之后同时刻划P2和P3。

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