2005Unpublished venueRequires access

Surface passivation layers for multicrystalline silicon solar cells

Salvador Ponce-Alcántara, Daniel Nilsen Wright, Carlos del Cañizo, A. Ĺuque

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Abstract

Both silicon oxide and silicon nitride have the potential to efficiently passivate phosphorus emitters of silicon solar cells. A comparison of the two techniques is carried out in this work for multicrystalline substrates. Optimization of deposition conditions for silicon nitride by remote PECVD leads to very low surface recombination velocities under 200 cm/s.

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What this paper is about

Both silicon oxide and silicon nitride have the potential to efficiently passivate phosphorus emitters of silicon solar cells. A comparison of the two techniques is carried out in this work for multicrystalline substrates. Optimization of deposition conditions for silicon nitride by remote PECVD leads to very low surface recombination velocities under 200 cm/s.

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Available abstract

Both silicon oxide and silicon nitride have the potential to efficiently passivate phosphorus emitters of silicon solar cells. A comparison of the two techniques is carried out in this work for multicrystalline substrates. Optimization of deposition conditions for silicon nitride by remote PECVD leads to very low surface recombination velocities under 200 cm/s.

Key concepts: Passivation, Materials science, Silicon nitride, Silicon, Optoelectronics, Plasma-enhanced chemical vapor deposition, Nitride, Deposition (geology)

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