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      Density functional theory study of Au-fcc/Ge and Au-hcp/Ge interfaces

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          Abstract

          In recent years, nanostructures with hexagonal polytypes of gold have been synthesised, opening new possibilities in nanoscience and nanotechnology. As bulk gold crystallizes in the fcc phase, surface effects can play an important role in stabilizing hexagonal gold nanostructures. Here, we investigate several heterostructures with Ge substrates, including the fcc and hcp phases of gold that have been observed experimentally. We determine and discuss their interfacial energies and optimized atomic arrangements, comparing the theory results with available experimental data. Our DFT calculations for the Au-fcc(011)/Ge(001) junction show how the presence of defects in the interface layer can help to stabilize the atomic pattern, consistent with microscopic images. Although the Au-hcp/Ge interface is characterized by a similar interface energy, it reveals large atomic displacements due to significant mismatch. Finally, analyzing the electronic properties, we demonstrate that Au/Ge systems have metallic character, but covalent-like bonding states between interfacial Ge and Au atoms are also present.

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          Introduction to Solid State Physics

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            Author and article information

            Contributors
            Role: Associate Editor
            Journal
            Beilstein J Nanotechnol
            Beilstein J Nanotechnol
            Beilstein Journal of Nanotechnology
            Beilstein-Institut (Trakehner Str. 7-9, 60487 Frankfurt am Main, Germany )
            2190-4286
            2023
            15 November 2023
            : 14
            : 1093-1105
            Affiliations
            [1 ] Faculty of Materials Engineering and Physics, Cracow University of Technology, Podchorążych 1, PL-30084 Kraków, Poland ( https://ror.org/00pdej676)
            [2 ] Institute of Nuclear Physics, Polish Academy of Sciences, W. E. Radzikowskiego 152, PL-31342 Kraków, Poland ( https://ror.org/01dr6c206)
            [3 ] Marian Smoluchowski Institute of Physics, Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Łojasiewicza 11, 30348 Krakow, Poland ( https://ror.org/03bqmcz70)
            [4 ] Institute of Theoretical Physics, Jagiellonian University, Prof. Stanisława Łojasiewicza 11, PL-30348 Kraków, Poland ( https://ror.org/03bqmcz70)
            Author information
            https://orcid.org/0000-0003-4428-3711
            https://orcid.org/0000-0001-5419-9519
            https://orcid.org/0000-0002-3196-7244
            https://orcid.org/0000-0002-6931-3545
            https://orcid.org/0000-0001-6339-2986
            https://orcid.org/0000-0002-8954-3233
            Article
            10.3762/bjnano.14.90
            10679839
            38025198
            db55f18a-097b-4a55-a180-d2a3cebef926
            Copyright © 2023, Sikora et al.

            This is an open access article licensed under the terms of the Beilstein-Institut Open Access License Agreement ( https://www.beilstein-journals.org/bjnano/terms/terms), which is identical to the Creative Commons Attribution 4.0 International License ( https://creativecommons.org/licenses/by/4.0). The reuse of material under this license requires that the author(s), source and license are credited. Third-party material in this article could be subject to other licenses (typically indicated in the credit line), and in this case, users are required to obtain permission from the license holder to reuse the material.

            History
            : 25 April 2023
            : 13 October 2023
            Funding
            Funded by: Narodowe Centrum Nauki, doi open-funder-registry10.13039/open_funder_registryhttp://dx.doi.org/10.13039/501100004281;
            Award ID: 2020/04/X/ST5/00539
            Award ID: 2017/25/B/ST3/02586
            Award ID: 2021/43/B/ST3/02166
            The authors kindly acknowledge support by the National Science Centre (NCN, Poland) under Projects No.: 2017/25/B/ST3/02586 (P.P. and M.S.), 2020/04/X/ST5/00539 (B.R.J.), and 2021/43/B/ST3/02166 (A.M.O.). A.M.O. is grateful for support via the Alexander von Humboldt Foundation Fellowship [37] (Humboldt-Forschungspreis). This research was supported in part by the Excellence Initiative – Research University Program at the Jagiellonian University in Kraków.
            Categories
            Full Research Paper
            Nanoscience
            Nanotechnology

            au/ge heterostructures,density functional theory,electronic structure,hexagonal gold,interface energy

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