Molybdenum oxide thin films for heterojunction crystalline silicon solar cells

Master Thesis (2017)
Author(s)

M.T.S.K. Ah Sen (TU Delft - Applied Sciences)

Contributor(s)

A.W. Weeber – Mentor

Paula C P Bronsveld – Mentor

Faculty
Applied Sciences
Copyright
© 2017 Mike Ah Sen
More Info
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Publication Year
2017
Language
English
Copyright
© 2017 Mike Ah Sen
Graduation Date
28-08-2017
Awarding Institution
Delft University of Technology
Programme
Electrical Engineering | Sustainable Energy Technology
Faculty
Applied Sciences
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Abstract

With the fast expanding photovoltaic (PV) industry, we are currently witnessing an unprecedented evolution of high-efficiency PV technologies in laboratories. The topic of this thesis is certainly among the novel technologies that could eventually break through on the market. Ultra-thin molybdenum oxide (MoOx) layer, as a hole-selective contact in a silicon heterojunction (SHJ) solar cell, was found to be suitable due to its transparency and high work function. This work presents the implementation of a MoOx layer in a 6 inch SHJ solar cell piloting towards an industrial level. Moreover, with MoOx commonly thermally deposited, this report shows the applicability of the electron beam evaporator for large scale deposition.