DocumentCode :
3446659
Title :
Selective emitter solar cell using two temperature steps furnace process
Author :
Du, Chen-Hsun ; Liu, Han-Chang ; Hsu, Shih-Peng
fYear :
2009
fDate :
7-12 June 2009
Abstract :
This investigation demonstrates the feasibility of a commercially available selective emitter process, based on screen-printing and furnace process. Screen-printed phosphorus paste and POCl3 were the sources of diffusion for the heavily doped area and the lightly doped area, respectively. These two diffusion processes were performed in the furnace with a two diffusion steps. The sheet resistance of the lightly doped region was set to 80 ¿/square and that of the heavily doped region was set to 40 ¿/square. The screen-printed silver electrode was formed using a screen printer with a precise alignment function following the deposition of an anti-reflective layer. The photovoltaic performance is improved in terms of both short-circuit current and open-circuit voltage. The average absolute efficiency was increased by ~ 0.3% - 0.8% with an area of 125 mm × 125 mm. An analysis of quantum efficiency revealed an increase in the response in the short wavelength region.
Keywords :
diffusion; electrical resistivity; heat treatment; semiconductor industry; short-circuit currents; solar cells; thick films; diffusion; heavily doped region; lightly doped region; open-circuit voltage; phosphorus paste; photovoltaic performance; quantum efficiency; screen printing; selective emitter solar cell; sheet resistance; short-circuit current; silver electrode; two temperature step furnace process; Diffusion processes; Electrodes; Furnaces; Photovoltaic cells; Photovoltaic systems; Printers; Silver; Solar power generation; Temperature; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2009 34th IEEE
Conference_Location :
Philadelphia, PA
ISSN :
0160-8371
Print_ISBN :
978-1-4244-2949-3
Electronic_ISBN :
0160-8371
Type :
conf
DOI :
10.1109/PVSC.2009.5411601
Filename :
5411601
Link To Document :
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