Nanosecond Laser Lift-Off of a Copper-Indium-Diselenide Thin Film at a Wavelength of 1342 nm
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference11 articles.
1. G. Heise, A. Heiss, C. Hellwig, T. Kuznicki, H. Vogt, J. Palm, H.P. Huber, Optimization of picosecond laser structuring for the monolithic serial interconnetion of CIS solar cells, Prog Photovoltaics Res Appl, (2012).
2. G. Heise, C. Hellwig, T. Kuznicki, S. Sarrach, C. Menhard, A. Heiss, H. Vogt, J. Palm, H.P. Huber, Monolithic interconnection of CIGSSe solar cells by picosecond laser structuring, in: W. Pfleging, Y. Lu, K. Washio, J. Amako, W. Hoving (Eds.) Laser-based Micro- and Nanopackaging and Assembly IV SPIE, San Francisco, California, USA, 2010, pp. 0U1,0U12.
3. Investigation of the ablation of zinc oxide thin films on copper–indium-selenide layers by ps laser pulses;Heise;Applied Physics A: Materials Science and Processing,2011
4. Laser ablation of thin molybdenum films on transparent substrates at low fluences;Heise;Appl Phys A,2011
5. G. Račiukaitis, P. Gečys, M. Gedvilas, B. Voisiat, Structuring of functional thin films and surfaces with picosecondpulsed lasers, in: G. Hennig, X. Xu, B. Gu, Y. Nakata (Eds.) Laser Applications in Microelectronic and Optoelectronic Manufacturing XVII, SPIE, San Francisco, CA, USA, 2012, pp. 824316-824311 . -824315.
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1. Damage-free patterning of thermally sensitive CIGS thin-film solar cells: Can nanosecond pulses outperform ultrashort laser pulses?;Solar Energy;2020-05
2. Ablation of polyimide thin-film on carrier glass using 355 nm and 37 ns laser pulses;International Journal of Heat and Mass Transfer;2020-02
3. CIGS Thin Film Photovoltaic—Approaches and Challenges;Springer Series in Optical Sciences;2019-11-28
4. Confinement – assisted shock-wave-induced thin-film delamination (SWIFD) of copper indium gallium diselenide (CIGS) on a flexible substrate;Applied Surface Science;2017-12
5. Ultrashort pulsed laser induced material lift-off processing of CZTSe thin-film solar cells;Solar Energy;2014-04
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