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Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis

The structural-phase transformations induced by air annealing of SiO(x) and SiO(x) < Er,F > films were studied by the combined use of infrared spectroscopy and ellipsometry. The films were prepared using vacuum evaporation of SiO powder and co-evaporation of SiO and ErF(3) powders. The anneali...

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Autores principales: Sopinskyy, Mykola V, Vlasenko, Natalya A, Lisovskyy, Igor P, Zlobin, Sergii O, Tsybrii, Zinoviia F, Veligura, Lyudmyla I
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447741/
https://www.ncbi.nlm.nih.gov/pubmed/26034423
http://dx.doi.org/10.1186/s11671-015-0933-0
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author Sopinskyy, Mykola V
Vlasenko, Natalya A
Lisovskyy, Igor P
Zlobin, Sergii O
Tsybrii, Zinoviia F
Veligura, Lyudmyla I
author_facet Sopinskyy, Mykola V
Vlasenko, Natalya A
Lisovskyy, Igor P
Zlobin, Sergii O
Tsybrii, Zinoviia F
Veligura, Lyudmyla I
author_sort Sopinskyy, Mykola V
collection PubMed
description The structural-phase transformations induced by air annealing of SiO(x) and SiO(x) < Er,F > films were studied by the combined use of infrared spectroscopy and ellipsometry. The films were prepared using vacuum evaporation of SiO powder and co-evaporation of SiO and ErF(3) powders. The annealing took place at moderate temperatures (750 and 1000 °C). It was found that the micro- and macrostructure of the annealed films is similar to the structure of the Si–SiO(x) nanocomposites obtained by annealing SiO(x) in vacuum or inert atmosphere and subjected to post-annealing in oxidizing atmosphere. This proves that the phase separation in the non-stoichiometric SiO(x) films proceeds much faster than their oxidation. The results of the work point at a possibility to simplify the annealing technology by replacing the two-step annealing with one-step in the oxygen-containing environment while maintaining the positive effects. The differences in the structure of the nanocomposites obtained by annealing the SiO(x) and SiO(x) < Er,F > films are explained by the action of Er centers as the promoters for SiO(x) disproportionation, as well as the enhanced action of F on the processes of disorder-to-order transition and crystallization in amorphous silicon.
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spelling pubmed-44477412015-06-01 Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis Sopinskyy, Mykola V Vlasenko, Natalya A Lisovskyy, Igor P Zlobin, Sergii O Tsybrii, Zinoviia F Veligura, Lyudmyla I Nanoscale Res Lett Nano Express The structural-phase transformations induced by air annealing of SiO(x) and SiO(x) < Er,F > films were studied by the combined use of infrared spectroscopy and ellipsometry. The films were prepared using vacuum evaporation of SiO powder and co-evaporation of SiO and ErF(3) powders. The annealing took place at moderate temperatures (750 and 1000 °C). It was found that the micro- and macrostructure of the annealed films is similar to the structure of the Si–SiO(x) nanocomposites obtained by annealing SiO(x) in vacuum or inert atmosphere and subjected to post-annealing in oxidizing atmosphere. This proves that the phase separation in the non-stoichiometric SiO(x) films proceeds much faster than their oxidation. The results of the work point at a possibility to simplify the annealing technology by replacing the two-step annealing with one-step in the oxygen-containing environment while maintaining the positive effects. The differences in the structure of the nanocomposites obtained by annealing the SiO(x) and SiO(x) < Er,F > films are explained by the action of Er centers as the promoters for SiO(x) disproportionation, as well as the enhanced action of F on the processes of disorder-to-order transition and crystallization in amorphous silicon. Springer US 2015-05-27 /pmc/articles/PMC4447741/ /pubmed/26034423 http://dx.doi.org/10.1186/s11671-015-0933-0 Text en © Sopinskyy et al.; licensee Springer. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Nano Express
Sopinskyy, Mykola V
Vlasenko, Natalya A
Lisovskyy, Igor P
Zlobin, Sergii O
Tsybrii, Zinoviia F
Veligura, Lyudmyla I
Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title_full Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title_fullStr Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title_full_unstemmed Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title_short Formation of Nanocomposites by Oxidizing Annealing of SiO(x) and SiO(x)<Er,F> Films: Ellipsometry and FTIR Analysis
title_sort formation of nanocomposites by oxidizing annealing of sio(x) and sio(x)<er,f> films: ellipsometry and ftir analysis
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447741/
https://www.ncbi.nlm.nih.gov/pubmed/26034423
http://dx.doi.org/10.1186/s11671-015-0933-0
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