Nanosecond laser scribing of CIGS thin film solar cell based on ITO bottom contact

Seungkuk Kuk, Zhen Wang, Shi Fu, Tao Zhang, Yi Yin Yu, JaeMyung Choi, Jeung‐hyun Jeong, David J. Hwang

Applied Physics Letters · 2018 · 17 citations · 14 references

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Abstract

Cu(In,Ga)Se2 (CIGS) thin films, a promising photovoltaic architecture, have mainly relied on Molybdenum for the bottom contact. However, the opaque nature of Molybdenum (Mo) poses limitations in module level fabrication by laser scribing as a preferred method for interconnect. We examined the P1, P2, and P3 laser scribing processes on CIGS photovoltaic architecture on the indium tin oxide (ITO) bottom contact with a cost-effective nanosecond pulsed laser of 532 nm wavelength. Laser illuminated from the substrate side, enabled by the transparent bottom contact, facilitated selective laser energy deposition onto relevant interfaces towards high-quality scribing. Parametric tuning procedures are described in conjunction with experimental and numerical investigation of relevant mechanisms, and preliminary mini-module fabrication results are also presented.

References

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