Preparation and evaluation of alexandrite, forsterite, and topaz substrates for the epitaxial growth of rutile oxides

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Kubovsky, Monique
Birkhölzer, Yorick A.
Mitrovic, Luka B.
Paik, Hanjong
Rossman, George R.
Schlom, Darrell G.

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AIP Publishing

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Abstract

Metal-insulator transitions and superconductivity in rutile-structured oxides hold promise for advanced electronic applications, yet their thin film synthesis is severely hindered by limited substrate options. Here, we present three single- crystalline substrates, BeAl2O4, Mg2SiO4, and Al2SiO4(F,OH)2, prepared via optimized thermal and chemical treatments to achieve atomically smooth surfaces suitable for epitaxial growth. Atomic force microscopy confirms atomic step-and-terrace surface morphologies, and oxide molecular-beam epitaxy growth on these substrates demonstrates successful heteroepitaxy of rutile TiO2, VO2, NbO2, and RuO2 films. Among these unconventional substrates, BeAl2O4 exhibits exceptional thermal and chemical stability, making it a versatile substrate candidate. These findings introduce new substrate platforms that facilitate strain engineering and exploration of rutile oxide thin films, potentially advancing the study of their strain-dependent physical properties.

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Monique Kubovsky, Yorick A. Birkhölzer, Luka B. Mitrovic, Hanjong Paik, George R. Rossman, Darrell G. Schlom; Preparation and evaluation of alexandrite, forsterite, and topaz substrates for the epitaxial growth of rutile oxides. APL Mater. 1 March 2026; 14 (3): 031103. https://doi.org/10.1063/5.0312234

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https://pubs.aip.org/aip/apm/article/14/3/031103/3381757/Preparation-and-evaluation-of-alexandrite

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© 2026 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).

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