Title :
Rear junction laser doped solar cells on CZ n-type silicon
Author :
Mai, Ly ; Hameiri, Ziv ; Tjahjono, Budi S. ; Wenham, Stuart R. ; Sugianto, Adeline ; Edwards, Matt B.
Author_Institution :
ARC Photovoltaics Centre of Excellence, Univ. of New South Wales, Kensington, NSW, Australia
Abstract :
N-type silicon (Si) has been shown to have generally higher bulk lifetimes and far better post illumination performance stability compared to boron doped p-type materials of similar crystallographic quality. In particular, the high minority carrier diffusion lengths in n-type wafers makes the rear emitter n+np+ structure an attractive option, especially when incorporated with screen printing as a simple and cost effective way to create an Al-alloyed junction on the back surface. However, when screen printing is used to apply the front contacts, its wide metal lines and its requirement for a heavy Phosphorus-doped front surface significantly reduces the performance of this simple device with the latter limiting the blue wavelength response and surface passivation quality. Recently, the laser doping process has been shown capable of overcoming these major drawbacks due to its ability to produce a selective emitter. In this present work, an innovative application of the laser doping process in the fabrication of such rear Al-alloyed emitter n+np+ device enables an excellent energy conversion efficiency of 18.2% to be achieved on commercial grade n-type CZ wafers (148.6cm2).
Keywords :
aluminium alloys; doping profiles; minority carriers; passivation; phosphorus; silicon; solar cells; Al alloyed junction; AlJkJk; CZ n-type silicon; P; Si; crystallographic quality; energy conversion efficiency; illumination performance stability; laser doping; minority carrier diffusion lengths; n-type wafers; phosphorus-doped front surface; rear junction laser doped solar cells; screen printing; surface passivation quality; Boron; Crystalline materials; Doping; Lighting; Photovoltaic cells; Printing; Silicon; Stability; Surface emitting lasers; Surface waves;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2009 34th IEEE
Conference_Location :
Philadelphia, PA
Print_ISBN :
978-1-4244-2949-3
Electronic_ISBN :
0160-8371
DOI :
10.1109/PVSC.2009.5411499