Knorz A, Peters M, Grohe A, Harmel C, Preu R (2009)
Publication Type: Journal article
Publication year: 2009
Book Volume: 17
Pages Range: 127-136
Journal Issue: 2
DOI: 10.1002/pip.856
For an alternative front side metallization process without screen printing of metal paste the selective opening of the front surface anti-reflection coating could be realized by laser ablation. A successful implementation of this scheme requires direct absorption of the laser light within the anti-reflection coating, since the emitter underneath must not be damaged severely. Additionally, the ablation must be feasible on textured surfaces. In this paper, we show that laser light with a wavelength of 355 nm and a pulse length of approximately 30 ns is absorbed directly by a typical silicon nitride anti-reflection coating. Based on lifetime measurements on ablated samples it is shown that a damage free laser ablation of SiN
APA:
Knorz, A., Peters, M., Grohe, A., Harmel, C., & Preu, R. (2009). Selective laser ablation of SiNx layers on textured surfaces for low temperature front side metallizations. Progress in Photovoltaics, 17(2), 127-136. https://doi.org/10.1002/pip.856
MLA:
Knorz, Annerose, et al. "Selective laser ablation of SiNx layers on textured surfaces for low temperature front side metallizations." Progress in Photovoltaics 17.2 (2009): 127-136.
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