Sublattice matching enables texturing of dissimilar materials
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry
Link
https://www.nature.com/articles/s41563-023-01757-0.pdf
Reference5 articles.
1. Ramesh, R. & Schlom, D. Creating emergent phenomena in oxide superlattices. Nat. Rev. Mater. 4, 257–268 (2019). A review article that presents understanding of emergent physical phenomena in complex oxides.
2. Messing, G. L. et al. Texture-engineered ceramics—property enhancements through crystallographic tailoring. J. Mater. Res. 32, 3219–3241 (2017). A review article that presents understanding of texture-engineered ceramics.
3. Palmstrøm, C. J. Epitaxy of dissimilar materials. Annu. Rev. Mater. Sci. 25, 389–415 (1995). A review article that discusses the growth of heterostructures of dissimilar materials, with an emphasis on metallic, semiconductor and insulator compounds grown on III–V semiconductors.
4. Kay, A. et al. New benchmark for water photooxidation by nanostructured α-Fe2O3 films. J. Am. Chem. Soc. 128, 15714–15721 (2006). This article reports that a haematite film, formed by atmospheric-pressure chemical vapour deposition, shows strong preferential orientation along the [110] axis perpendicular to the substrate.
5. Wittkamper, J. et al. Competitive growth of scrutinyite (α-PbO2) and rutile polymorphs of SnO2 on all orientations of columbite CoNb2O6 substrates. Cryst. Growth Des. 17, 3929–3939 (2017). This article reports the combinatorial substrate epitaxy approach for materials discovery and design in substrate-supported films.
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