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Ion Implantation for High-Efficiency Silicon Solar Cells

English · Paperback / Softback

Description

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The profitability of the whole photovoltaic system can be effectively increased by the use of advanced silicon solar cells with a higher conversion efficiency potential and new technologies are needed to keep the fabrication effort low. Ion implantation allows for single side and even patterned doping of silicon wafers, so this technique could help to simplify the process chain of complex high-efficiency silicon solar cells.
In this thesis, the suitability of ion implantation for the fabrication of modern solar cells was investigated. The implantation of mass-separated boron or phosphorus ions and subsequent furnace annealing was used to study the charge carrier recombination due to implantation defects and obtain doping profiles for an evaluation at the device level. Furthermore, novel process sequences combining ion implantation and furnace diffusion for the simplified doping of back-junction back-contact cells were developed and evaluated with respect to the influence of a reverse breakdown and a weak front-side doping on the solar cell performance.

Product details

Authors Ralph Müller
Assisted by Fraunhofer ISE (Editor)
Publisher Fraunhofer Verlag
 
Languages English
Product format Paperback / Softback
Released 01.01.2024
 
EAN 9783839610749
ISBN 978-3-8396-1074-9
No. of pages 246
Dimensions 148 mm x 210 mm x 14 mm
Weight 360 g
Illustrations 67 Farbabb.
Series Solare Energie- und Systemforschung
Solare Energie- und Systemforschung / Solar Energy and Systems Research,
Subject Natural sciences, medicine, IT, technology > Technology > Heat, energy and power station engineering

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