Multilayer coatings based on cerium oxide and manganese cobaltite spinel for Crofer22APU SOC interconnects - Publication - Bridge of Knowledge

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Multilayer coatings based on cerium oxide and manganese cobaltite spinel for Crofer22APU SOC interconnects

Abstract

The current state of the art steel interconnect coating materials are based on critical raw material - Co-oxide spinels. Replacing Co-oxide spinels with alternative, abundant materials can reduce the dependence on the critical raw materials. Cobalt-free coatings with the general formula Mn2-xCuFexO4, where x = 0, 0.1, 0.3, were electrophoretically deposited on a ferritic stainless-steel support and evaluated. Prior to deposition, the powders were prepared by a soft chemistry process and studied in terms of crystallographic phase analysis, electrical conductivity, thermal expansion, and sinterability behaviour. Coated steel samples were oxidised in an air atmosphere at 750 °C for 3000 h. In parallel, a state-of-the-art MnCo2O4 spinel oxide was tested as a reference. The coatings and oxide scale microstructures of the surfaces and cross-sections were examined by XRD, and SEM-EDX. TEM-EDX, XRF, and micro-XRD were also performed on the cross-section lamellae. The electrical properties of the steel-coating system were evaluated by Area Specific Resistance measurement. The results confirm that Mn–Cu–Fe oxides exhibit higher conductivity and lower TEC than Mn–Co oxide. Based on the obtained results, it might be concluded that the proposed coatings are a promising alternative to coatings that contain cobalt.

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Category:
Articles
Type:
artykuły w czasopismach
Published in:
MATERIALS LETTERS no. 354,
ISSN: 0167-577X
Language:
English
Publication year:
2024
Bibliographic description:
Zanchi E., Ignaczak J., Cempura G., Molin S., Boccaccini A. R., Smeacetto F.: Multilayer coatings based on cerium oxide and manganese cobaltite spinel for Crofer22APU SOC interconnects// MATERIALS LETTERS -Vol. 354, (2024), s.135418-
DOI:
Digital Object Identifier (open in new tab) 10.1016/j.matlet.2023.135418
Sources of funding:
  • Free publication
Verified by:
Gdańsk University of Technology

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