Next-gen approach to the combined micro/macro-scopic measurements of crystal growth in chalcogenide thin films: The case of Se90Te10

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dc.contributor.author Svoboda, Roman
dc.contributor.author Přikryl, Jan
dc.contributor.author Provotorov, Pavel
dc.contributor.author V. Kolobov, Alexander
dc.contributor.author Krbal, Miloš
dc.date.accessioned 2023-07-12T13:16:17Z
dc.date.available 2023-07-12T13:16:17Z
dc.date.issued 2022
dc.identifier.issn 0925-8388
dc.identifier.uri https://hdl.handle.net/10195/81245
dc.description.abstract Crystal growth in 1 mu m Se90Te10 thin films deposited on a variety of substrates was studied by means of a novel combination of direct microscopic and calorimetric measurements. Differential scanning calorimetry (DSC) was used to explore the macroscopic manifestation of the crystal growth in as-deposited Se90Te10 thin films, revealing the native-like crystal growth behavior (very close to that of the bulk glass) in the films deposited on the polymeric foil. The optical microscopy determined the following sequence for the crystal growth rates u(r) in the thin films deposited on different substrates: u(r)(white glass) > u(r)(SiO2 glass) > > u(r)(Kapton). This finding is perfectly consistent with the calorimetric data, and can be explained by the combined influences of the Na+ ions migrating from the white glass substrate to the thin film/substrate interface, and by the compressive stresses arising from the large difference between the thermal expansion coefficients of Se90Te10 and the inorganic glasses. Conformation of the calorimetric and microscopic data was validated by the description of both datasets in terms of a single set of parametrized equations based on the combination of the temperature-resolved screw-dislocation growth model and the macroscopic nucleation-growth model. The novel approach to the crystal growth research in chalcogenide thin films was introduced, demonstrating its unprecedented accuracy, robustness and overall comprehension. All major aspects of this novel approach were discussed in detail, including the necessity to consider not only the substrate properties but also the associated process of structural relaxation that may significantly alter the crystal growth near glass transition. (C) 2022 Elsevier B.V. All rights reserved. eng
dc.format "166389-1"-"166389-11"
dc.language.iso eng
dc.publisher Elsevier Science SA eng
dc.relation.ispartof Journal of Alloys and Compounds, volume 923, issue: November eng
dc.rights pouze v rámci univerzity cze
dc.subject crystallization kinetics eng
dc.subject structural relaxation eng
dc.subject phase-change eng
dc.subject selenium eng
dc.subject nucleation eng
dc.subject glasses eng
dc.subject krystalizační kinetika cze
dc.subject strukturní relaxace cze
dc.subject fázová změna cze
dc.subject selen cze
dc.subject nukleace cze
dc.subject skla cze
dc.title Next-gen approach to the combined micro/macro-scopic measurements of crystal growth in chalcogenide thin films: The case of Se90Te10 eng
dc.title.alternative Nová generace přiblížení ke kombinovanému mikro/makro-skopickému měření krystalového růstu v chalkogenidových tenkých filmech: případ Se90Te10 cze
dc.type article eng
dc.description.abstract-translated Krystalový růst 1 mikrometrových tenkých filmů Se90Te10 nanesených na různých substrátech byl studován kombinací přímé mikroskopie a kalorimetrie. Metoda DSC byla použito na vývoj makroskopických krystalů v tenké vrstvě a ukázala nativní krystalový růst ve filmu naneseném na polymerní fólii. Optická mikroskopie sledovala růst krystalů ve filmech na různých substrátech. cze
dc.peerreviewed yes eng
dc.publicationstatus published eng
dc.identifier.doi 10.1016/j.jallcom.2022.166389
dc.relation.publisherversion https://www.sciencedirect.com/science/article/pii/S0925838822027803
dc.identifier.wos 000834286900001
dc.identifier.scopus 2-s2.0-85134809566
dc.identifier.obd 39888024


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