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High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses

The impact of high-energy milling on glassy arsenic monoselenide g-AsSe is studied with X-ray diffraction applied to diffuse peak-halos proper to intermediate- and extended-range ordering revealed in first and second sharp diffraction peaks (FSDP and SSDP). A straightforward interpretation of this e...

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Autores principales: Shpotyuk, Yaroslav, Demchenko, Pavlo, Shpotyuk, Oleh, Balitska, Valentina, Boussard-Pledel, Catherine, Bureau, Bruno, Lukáčová Bujňáková, Zdenka, Baláž, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400771/
https://www.ncbi.nlm.nih.gov/pubmed/34443000
http://dx.doi.org/10.3390/ma14164478
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author Shpotyuk, Yaroslav
Demchenko, Pavlo
Shpotyuk, Oleh
Balitska, Valentina
Boussard-Pledel, Catherine
Bureau, Bruno
Lukáčová Bujňáková, Zdenka
Baláž, Peter
author_facet Shpotyuk, Yaroslav
Demchenko, Pavlo
Shpotyuk, Oleh
Balitska, Valentina
Boussard-Pledel, Catherine
Bureau, Bruno
Lukáčová Bujňáková, Zdenka
Baláž, Peter
author_sort Shpotyuk, Yaroslav
collection PubMed
description The impact of high-energy milling on glassy arsenic monoselenide g-AsSe is studied with X-ray diffraction applied to diffuse peak-halos proper to intermediate- and extended-range ordering revealed in first and second sharp diffraction peaks (FSDP and SSDP). A straightforward interpretation of this effect is developed within the modified microcrystalline approach, treating “amorphous” halos as a superposition of the broadened Bragg diffraction reflexes from remnants of some inter-planar correlations, supplemented by the Ehrenfest diffraction reflexes from most prominent inter-molecular and inter-atomic correlations belonging to these quasi-crystalline remnants. Under nanomilling, the cage-like As(4)Se(4) molecules are merely destroyed in g-AsSe, facilitating a more polymerized chain-like network. The effect of nanomilling-driven molecular-to-network reamorphization results in a fragmentation impact on the correlation length of FSDP-responsible entities (due to an increase in the FSDP width and position). A breakdown in intermediate-range ordering is accompanied by changes in extended-range ordering due to the high-angular shift and broadening of the SSDP. A breakdown in the intermediate-range order is revealed in the destruction of most distant inter-atomic correlations, which belong to remnants of some quasi-crystalline planes, whereas the longer correlations dominate in the extended-range order. The microstructure scenarios of milling-driven reamorphization originated from the As(4)Se(4) molecule, and its network derivatives are identified with an ab initio quantum-chemical cluster modeling code (CINCA).
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spelling pubmed-84007712021-08-29 High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses Shpotyuk, Yaroslav Demchenko, Pavlo Shpotyuk, Oleh Balitska, Valentina Boussard-Pledel, Catherine Bureau, Bruno Lukáčová Bujňáková, Zdenka Baláž, Peter Materials (Basel) Article The impact of high-energy milling on glassy arsenic monoselenide g-AsSe is studied with X-ray diffraction applied to diffuse peak-halos proper to intermediate- and extended-range ordering revealed in first and second sharp diffraction peaks (FSDP and SSDP). A straightforward interpretation of this effect is developed within the modified microcrystalline approach, treating “amorphous” halos as a superposition of the broadened Bragg diffraction reflexes from remnants of some inter-planar correlations, supplemented by the Ehrenfest diffraction reflexes from most prominent inter-molecular and inter-atomic correlations belonging to these quasi-crystalline remnants. Under nanomilling, the cage-like As(4)Se(4) molecules are merely destroyed in g-AsSe, facilitating a more polymerized chain-like network. The effect of nanomilling-driven molecular-to-network reamorphization results in a fragmentation impact on the correlation length of FSDP-responsible entities (due to an increase in the FSDP width and position). A breakdown in intermediate-range ordering is accompanied by changes in extended-range ordering due to the high-angular shift and broadening of the SSDP. A breakdown in the intermediate-range order is revealed in the destruction of most distant inter-atomic correlations, which belong to remnants of some quasi-crystalline planes, whereas the longer correlations dominate in the extended-range order. The microstructure scenarios of milling-driven reamorphization originated from the As(4)Se(4) molecule, and its network derivatives are identified with an ab initio quantum-chemical cluster modeling code (CINCA). MDPI 2021-08-10 /pmc/articles/PMC8400771/ /pubmed/34443000 http://dx.doi.org/10.3390/ma14164478 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shpotyuk, Yaroslav
Demchenko, Pavlo
Shpotyuk, Oleh
Balitska, Valentina
Boussard-Pledel, Catherine
Bureau, Bruno
Lukáčová Bujňáková, Zdenka
Baláž, Peter
High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title_full High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title_fullStr High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title_full_unstemmed High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title_short High-Energy Mechanical Milling-Driven Reamorphization in Glassy Arsenic Monoselenide: On the Path of Tailoring Special Molecular-Network Glasses
title_sort high-energy mechanical milling-driven reamorphization in glassy arsenic monoselenide: on the path of tailoring special molecular-network glasses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400771/
https://www.ncbi.nlm.nih.gov/pubmed/34443000
http://dx.doi.org/10.3390/ma14164478
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