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Monolithic interconnection of CIGSSe solar cells by picosecond laser structuring

机译:CIGSESE太阳能电池通过皮秒激光结构的单片互连

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We report on the selective structuring of CIS (Cu(In,Ga)(S,Se)_2) thin film solar cells applying picosecond lasers at 1064 nm. For a monolithic serial interconnection the thin layers are selectively separated by so called laser patterns 1, 2 and 3 (P1, P2 and P3). We demonstrate that the half micron thick molybdenum back electrode can be structured with a P1 process speed of more than 4 m/s without detectable residues and damages by direct induced laser ablation from the back side. A CIS layer (~2 μm thickness) is structured by standard direct laser ablation at higher energy densities and a process speed up to 200 mm/s. A 1.5 μm thick ZnO front electrode layer can be line separated with P3 speed up to several 1000 mm/s by indirect induced laser ablation. We demonstrate that direct induced (P1) and indirect induced (P3) picosecond laser ablation are not purely thermal processes working at energy densities far below the evaporation enthalpy. To increase the scribing speed elliptical and rectangular beam profiles were investigated. Validation of the processes for functionality within a CIS solar cell will be presented.
机译:我们报告了CIS的选择性结构(Cu(In,Ga)(SE,SE)_2)薄膜太阳能电池,在1064nm处施加皮秒激光。对于单片串联互连,通过所谓的激光图案1,2和3(P1,P2和P3)选择性地分离薄层。我们证明,半微米厚的钼背电极可以具有超过4米/秒的P1工艺速度而没有可检测的残留物,并且通过直接诱导从后侧的激光消融损坏。 CIS层(〜2μm厚度)通过标准的直接激光消融在更高的能量密度和高达200mm / s的过程速度构成。 1.5μm厚的ZnO前电极层可以通过间接诱导激光烧蚀,用P3速度分开多达几1000mm / s的线。我们证明直接诱导(P1)和间接诱导(P3)PICOSECOND激光消融不是在远低于蒸发焓的能量密度下工作的纯热过程。为了增加划线速度椭圆形和矩形光束轮廓。呈现CIS太阳能电池内功能的功能的验证。

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