Transport Properties of Thin-Film Passivating Contacts for Silicon Solar Cells.

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Solar Energy and Systems Research

ISBN: 3839617812
ISBN 13: 9783839617816
Autor: Luderer, Christoph
Herausgeber: Fraunhofer ISE Freiburg/Brsg
Verlag: Fraunhofer IRB Verlag
Umfang: 238 S., num., col. illus. and tab.
Erscheinungsdatum: 13.05.2022
Auflage: 1/2022
Produktform: Kartoniert
Einband: KT

This work investigates the transport properties of silicon-based solar cells using dedicated test structures. The transport losses are significantly reduced by tailoring the interfaces in the contact stack, taking into account the trade-off between transport and passivation. With respect to tandem solar cells, a tunneling recombination junction is developed as sub-cell interconnection, focusing on industrial feasibility with the use of a lean process sequence and exploiting synergy effects with mainstream technology.

Artikelnummer: 5750886 Kategorie:

Beschreibung

Increasing the power conversion efficiency of solar cells is not only attractive in terms of effective land use, but also a strong lever for lower levelized costs of electricity. State-of-the-art passivating and carrier-selective contacts enable the most efficient silicon solar cells. They can also be integrated in tandem solar cells, the logical successors of Si single-junction solar cells, to achieve even better power conversion. This work investigates the transport properties of silicon-based heterostructures using dedicated test structures. The transport losses of corresponding solar cells cells are significantly reduced by tailoring the interfaces in the contact stack, taking into account the trade-off between transport and passivation, leading to increased power conversion efficiency. With respect to tandem solar cells, a tunneling recombination junction is developed as sub-cell interconnection, focusing on industrial feasibility with the use of a lean process sequence and exploiting synergy effects with mainstream technology.

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