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REALMAX

Replenishing the limited Aluminium reservoir of MAX phase coatings in harsh environments

CoordinatorRWTH Aachen University
Grant period2020-08-17 - 2022-08-16
Funding bodyEuropean Union
Call numberH2020-MSCA-IF-2019
Grant number892501
IdentifierG:(EU-Grant)892501

Note: Phase stability is likely to be the single most important specification which determines the lifetime of materials operating in extreme environments. Whether a phase will react with the environment or decompose at high temperature is an essential limitation for the use of the material for any given applications. MAX phases are a family of layered ternary ceramics currently being developed for extreme environment applications because of their tolerance to heat, their ceramic-metallic hybrid properties and more importantly because of their self-healing behaviour. However, similarly to other self-healing materials, aluminium-based MAX phases tend to decompose locally as soon as Al reacts to form the protective oxide scale. Upon decomposition, the unique set of properties deteriorates rapidly. The REALMAX project will tackle the outward diffusion of Al from MAX phase coatings in oxidising environments, by providing solutions for supplying Al to the coating from a MAX phase substrate which will act as Al-reservoir. Furthermore, the REALMAX project will engage in ground-breaking research to develop multifunctional coatings and validate the concept of “high-entropy” MAX phases. In fact, these multielement MAX phases constitute a new and exciting research line which is in the early stages of being developed. The REALMAX project will be carried out by the experienced researcher (ER) who has gained experience on MAX phase coatings during her current postdoctoral position. The ER has aligned a team of experts in MAX phases, coatings and material processing who will collaborate to offer innovative solutions to increase phase stability in MAX phase systems while mentoring her to achieve her career plans. In fact, she will be well positioned to pursue her academic career in Europe, while simultaneously adding genuinely novel expertise approaches to the research environment and the group she will be joining. Therefore, the mutual benefit and impact of this proposal is extensive.
     

Recent Publications

All known publications ...
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http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;
Replenishing the oxidation-induced Al-depletion in Cr2AlC MAX phase coatings
Materials and design 267, 116316 () [10.1016/j.matdes.2026.116316]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;  ;  ;
Formation of 3D Cr2C through solid state reaction-mediated Al extraction within Cr2AlC/Cu thin films
Nanoscale 17(9), 5447-5455 () [10.1039/D4NR03664F]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;  ;
Microstructural and compositional design of Cr2AlC MAX phases and their impact on oxidation resistance
Journal of the European Ceramic Society 44(8), 4895-4904 () [10.1016/j.jeurceramsoc.2024.02.037]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article (Letter)  ;  ;  ;  ;  ;
Optical properties and corrosion resistance of Ti2AlC, Ti3AlC2, and Cr2AlC as candidates for concentrated solar power receivers
Solar energy materials & solar cells 259, 112433 () [10.1016/j.solmat.2023.112433]  GO  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

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Yttrium incorporation in Cr2AlC : On the metastable phase formation and decomposition of (Cr,Y)2AlC MAX phase thin films
Journal of the American Ceramic Society 106(4), 2652-2665 () [10.1111/jace.18931]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Datensatz erzeugt am 2020-09-05, letzte Änderung am 2023-02-09



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