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Surface passivation provided by an alneal through sio2/tio2 bilayer

Abstract:
The process of annealing a SiO2 dielectric layer coated in aluminium, termed the alneal, is known to produce some of the most effective surface passivation for silicon. However, it is traditionally performed on a SiO2 dielectric coating which has sub-optimal anti-reflection properties. In this work it is shown that it is possible to achieve alneal passivation through a double layer SiO2/TiO2 stack. TiO2 was investigated as it is one of the most effective antireflection coatings available and its deposition technology is advanced and cost effective. Here, the alneal was carried out on n-type ~40 Ωcm Cz-Si coated with a SiO2/TiO2 dielectric stack. In the best case, the alneal produced a lifetime increase from ~15 μs to 3084 μs, which equates to a SRV ≤ 10 cm/s or a J0e of 32 fA/cm2. This increase in lifetime was comparable to that achieved by a conventional alneal on a single layer SiO2 specimen. It was also found that the thicker the TiO2, the less effective the alneal was at passivating. Lastly, the passivation achieved after the alneal on the SiO2/TiO2 bilayer was found to be more stable than that achieved on the conventional single SiO2 layer.
Publication status:
Published
Peer review status:
Peer reviewed

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Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author


Publisher:
European Photovoltaic Solar Energy Conference and Exhibition
Host title:
EU PVSEC 2016: 32nd European Photovoltaic Solar Energy Conference
Journal:
EU PVSEC 2016 More from this journal
Publication date:
2016-06-24
Acceptance date:
2016-06-24


Pubs id:
pubs:633527
UUID:
uuid:07053c58-e641-4dc2-bdaf-276287b0b65a
Local pid:
pubs:633527
Source identifiers:
633527
Deposit date:
2016-07-12
ARK identifier:

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