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  4. ITO/MoOx/a-Si:H(i) Hole-Selective Contacts for Silicon Heterojunction Solar Cells: Degradation Mechanisms and Cell Integration
 
research article

ITO/MoOx/a-Si:H(i) Hole-Selective Contacts for Silicon Heterojunction Solar Cells: Degradation Mechanisms and Cell Integration

Sacchetto, Davide  
•
Jeangros, Quentin
•
Christmann, Gabriel
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2017
Ieee Journal Of Photovoltaics

Molybdenum oxide is an efficient hole collector for silicon solar cells. However, its optoelectronic properties deteriorate during cell manufacturing. To assess this issue, the optoelectronic properties and microstructure of molybdenum oxide-based hole contacts are evaluated at different steps of the manufacturing process. Molybdenum oxide becomes more absorbing as it reduces when placed in contact with hydrogenated amorphous silicon, triggering the formation of a 2-nm thick SiOx layer, and when annealed after exposure to the plasma used to sputter the transparent conductive oxide. These changes in the contact properties result in a barrier that impedes hole transport when measuring I-V characteristics at room temperature. Nonetheless, cells still reach an efficiency of up to 20.7% when using a front metal electrode screen-printed at 210 degrees C (21.7% for reference cells). Above 60 degrees C, both molybdenum oxide-based and reference cells exhibit the same efficiency as this barrier to hole transport vanishes.

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Type
research article
DOI
10.1109/Jphotov.2017.2756066
Web of Science ID

WOS:000413934100015

Author(s)
Sacchetto, Davide  
Jeangros, Quentin
Christmann, Gabriel
Barraud, Loris
Descoeudres, Antoine
Geissbuhler, Jonas
Despeisse, Matthieu
Hessler-Wyser, Aicha
Nicolay, Sylvain
Ballif, Christophe
Date Issued

2017

Published in
Ieee Journal Of Photovoltaics
Volume

7

Issue

6

Start page

1584

End page

1590

Subjects

MoOx

•

a-Si:H

•

SHJ

•

solar cell

Note

IMT Number : 886

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PV-LAB  
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/142607
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