Title :
Laser-formed stencils for printed silicon solar cells
Author :
Cotter, J.E. ; Yao, G. ; Eggleston, Brian
Author_Institution :
Center of Excellence in Silicon Photonics & Photovoltaics, New South Wales Univ., Sydney, NSW, Australia
Abstract :
In this paper, we demonstrate the utility of laser machining stainless steel stencils for printed silicon solar cells. Laser-formed stencils are potentially cheaper than foils and screens formed by lithographic processes and may have some advantage in terms of durability, and they may also have some advantage for alignment between stencil printed features and other laser processed features on the silicon wafer. The standard laser scribing tool used for buried contact solar cell fabrication at UNSW is capable of cutting features of less than 35 microns in stencil foils 80 microns thick. By serendipity, the scribing process converts the slag by-product to an iron compound that can be selectively etched, leaving clean, well-formed stencil features. The foils have proved to be printable, with reasonably well formed features in printed and fired pastes. Initial solar cells have demonstrated efficiencies of 13.5%.
Keywords :
elemental semiconductors; etching; laser ablation; laser beam machining; silicon; solar cells; stainless steel; 13.5 percent; 80 micron; Si; buried contact solar cell; etching; laser machining; laser scribing; laser-formed stencils; lithographic processes; printed silicon solar cells; silicon wafer; stainless steel stencils; Etching; Fingers; Laser beam cutting; Laser beams; Optical device fabrication; Photovoltaic cells; Printing; Silicon; Slag; Steel;
Conference_Titel :
Photovoltaic Specialists Conference, 2005. Conference Record of the Thirty-first IEEE
Print_ISBN :
0-7803-8707-4
DOI :
10.1109/PVSC.2005.1488346