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  4. Toward Annealing-Stable Molybdenum-Oxide-Based Hole-Selective Contacts For Silicon Photovoltaics
 
research article

Toward Annealing-Stable Molybdenum-Oxide-Based Hole-Selective Contacts For Silicon Photovoltaics

Essig, Stephanie  
•
Dréon, Julie
•
Rucavado, Esteban
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February 19, 2018
Solar RRL

Molybdenum oxide (MoOX) combines a high work function with broadband optical transparency. Sandwiched between a hydrogenated intrinsic amorphous silicon passivation layer and a transparent conductive oxide, this material allows a highly efficient hole‐selective front contact stack for crystalline silicon solar cells. However, hole extraction from the Si wafer and transport through this stack degrades upon annealing at 190 °C, which is needed to cure the screen‐printed Ag metallization applied to typical Si solar cells. Here, we show that effusion of hydrogen from the adjacent layers is a likely cause for this degradation, highlighting the need for hydrogen‐lean passivation layers when using such metal‐oxide‐based carrier‐selective contacts. Pre‐MoOX‐deposition annealing of the passivating a‐Si:H layer is shown to be a straightforward approach to manufacturing MoOX‐based devices with high fill factors using screen‐printed metallization cured at 190 °C.

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Type
research article
DOI
10.1002/solr.201700227
Author(s)
Essig, Stephanie  
Dréon, Julie
Rucavado, Esteban
Mews, Mathias
Koida, Takashi
Boccard, Mathieu
Werner, Jérémie
Geissbühler, Jonas
Löper, Philipp
Morales-Masis, Monica
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Date Issued

2018-02-19

Published in
Solar RRL
Volume

2

Issue

4

Article Number

1700227

Subjects

photovoltaics

•

silicon solar cells

•

molybdenum oxide

•

heterojunction solar cell

•

hydrogen

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PV-LAB  
FunderGrant Number

EU funding

706744

H2020

727529

FNS

PV2050

Available on Infoscience
May 15, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/146430
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