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Electrochemical Processes for Metallization of Novel Silicon Solar Cells

English · Paperback / Softback

Description

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Within this work electrochemical processes for manufacturing of novel silicon solar cells are investigated. Direct plating of Ni and Al on n- and p-silicon is demonstrated by making use of solar cell characteristics. Homogenous Ni/Cu stacks are realized for bifacial and back contact solar cells, forming an excellent mechanical and electrical contact to silicon. For metallization of HIT solar cells, the plating behavior on ITO layers is studied. Additionally, plating processes on evaporated Al layers are developed and applied to back contact solar cells. By means of process optimization the plated metal stack on Al features sufficient adhesion and increases the lateral conductivity of the metal grid resulting in increased solar cell efficiency. An advanced metallization route for back contact solar cells which purposefully utilizes the different characteristics of the deposited metals (Al, Ni, Cu) is developed. The resulting metal stacks are characterized in detail using SEM, EDX and AES methods. Besides plating processes, local oxidizing processes for Al are established and combined with printing technologies to realize the metal contact separation for back contact solar cells.

Product details

Authors Mathias Kamp
Assisted by Freiburg Fraunhofer ISE (Editor)
Publisher Fraunhofer Verlag
 
Languages English
Product format Paperback / Softback
Released 01.01.2024
 
EAN 9783839610558
ISBN 978-3-8396-1055-8
No. of pages 194
Dimensions 148 mm x 210 mm x 11 mm
Weight 287 g
Illustrations 64 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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