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Development of an advanced bond coat for solid oxide fuel cell interconnector applications
Journal article   Peer reviewed

Development of an advanced bond coat for solid oxide fuel cell interconnector applications

An-Chou Yeh, Yu-Ming Chen, Chien-Kuo Liu and Wei-Ja Shong
Journal of Power Sources, Vol.296, pp.426-432
03/08/2015

Abstract

Area specific resistance Interconnector Oxidation resistance Solid oxide fuel cells Thermal expansion coefficient
Abstract An advanced bond coat has been developed for solid oxide fuel cell interconnector applications; a low thermal expansion superalloy has been selected as the substrate, and the newly developed bond coat is applied between the substrate and the LSM top coat. The bond coat composition is designed to be near thermodynamic equilibrium with the substrate to minimize interdiffusion with the substrate while providing oxidation protection for the substrate. The bond coat exhibits good oxidation resistance, a low area specific resistance, and a low thermal expansion coefficient at 800 °C; experimental results indicate that interdiffusion between the bond coat and the substrate can be hindered.

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