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      Two-dimensional oxide quasicrystal approximants with tunable electronic and magnetic properties

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          Abstract

          Electronics effects are at play in the stability and properties of two-dimensional oxide quasicrystalline approximants.

          Abstract

          Recently, the discovery of the quasiperiodic order in ultra-thin perovskite films reinvigorated the field of 2-dimensional oxides on metals, and raised the question of the reasons behind the emergence of the quasiperiodic order in these systems. The effect of size-mismatch between the two separate systems has been widely reported as a key factor governing the formation of new oxide structures on metals. Herein, we show that electronic effects can play an important role as well. To this end, the structural, thermodynamic, electronic and magnetic properties of freestanding two-dimensional oxide quasicrystalline approximants and their characteristics when deposited over metallic substrates are systematically investigated to unveil the structure–property relationships within the series. Our thermodynamic approach suggests that the formation of these aperiodic systems is likely for a wide range of compositions. In addition, the magnetic properties and work functions of the thin films can be controlled by tuning their chemical composition. This work provides well-founded general insights into the driving forces behind the emergence of the quasiperiodic order in ternary oxides grown on elemental metals and offers guidelines for the discovery of new oxide quasicrystalline ultra-thin films with interesting physical properties.

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          Most cited references55

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                Author and article information

                Contributors
                Journal
                NANOHL
                Nanoscale
                Nanoscale
                Royal Society of Chemistry (RSC)
                2040-3364
                2040-3372
                June 24 2021
                2021
                : 13
                : 24
                : 10771-10779
                Affiliations
                [1 ]Université de Lorraine
                [2 ]CNRS
                [3 ]Institut Jean Lamour – UMR 7198
                [4 ]Nancy
                [5 ]France
                [6 ]International Associated Laboratory PACS2
                [7 ]CNRS Université de Lorraine
                [8 ]Jožef Stefan Institute
                Article
                10.1039/D1NR02407H
                0532890b-0c7e-42f7-9226-9f17abfb4b91
                © 2021

                http://rsc.li/journals-terms-of-use

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