Synthesizability of Sputtered Cr-Al-B and Ti-Al-B Coatings Studied by Theory and Experiment

Abstract The synthesizability of magnetron-sputtered Cr-Al-B and Ti-Al-B coatings is investigated by combining temperature-dependent Gibbs energy predictions with a critical experimental assessment. Experimental phase formation data are consistent with predictions that Cr2AlB2 formation is thermodynamically favored and Ti2AlB2 is prone to decomposition. The guided choice of synthesis temperatures ≤500 °C, substantially lower than those previously reported, yields significantly denser Cr2AlB2 coatings, enabling the first measurement of their mechanical properties. Hence, temperature-dependent Gibbs free energy predictions are valuable to assess the synthesizability of MAB phase coatings by magnetron sputtering provided diffusion is enabled.

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Publication Details

Journal
ACS Materials Letters
Published
2026-09-30
DOI
https://doi.org/10.1021/acsmaterialslett.6c00831
Primary Topic
MXene and MAX Phase Materials
Type
article
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article

Synthesizability of Sputtered Cr-Al-B and Ti-Al-B Coatings Studied by Theory and Experiment

Marcus Hans, Daniel Primetzhofer, Sameer Aman Salman, Martin Dahlqvist et al.
ACS Materials Letters
MXene and MAX Phase Materials
article

Synthesizability of Sputtered Cr-Al-B and Ti-Al-B Coatings Studied by Theory and Experiment

Marcus Hans, Daniel Primetzhofer, Sameer Aman Salman, Martin Dahlqvist, Radosław Swadźba, Devi Janani Ramesh, Stanislav Mráz, Johanna Rosén, Jochen M. Schneider
article en

Abstract

Abstract The synthesizability of magnetron-sputtered Cr-Al-B and Ti-Al-B coatings is investigated by combining temperature-dependent Gibbs energy predictions with a critical experimental assessment. Experimental phase formation data are consistent with predictions that Cr2AlB2 formation is thermodynamically favored and Ti2AlB2 is prone to decomposition. The guided choice of synthesis temperatures ≤500 °C, substantially lower than those previously reported, yields significantly denser Cr2AlB2 coatings, enabling the first measurement of their mechanical properties. Hence, temperature-dependent Gibbs free energy predictions are valuable to assess the synthesizability of MAB phase coatings by magnetron sputtering provided diffusion is enabled.

ACS Materials Letters
Linköping University (SE), Uppsala University (SE), RWTH Aachen University (DE)
Affordable and clean energy
Openalex Percentile: Top 26%
MXene and MAX Phase Materials
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