Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results

Saved in:
Bibliographic Details
Date:2024
Main Authors: V. A. Prokopenko, S. V. Netreba, O. A. Tsyganovych, P. O. Kosorukov
Format: Article
Language:English
Published: 2024
Series:Chemistry, physics and technology of surface
Online Access:http://jnas.nbuv.gov.ua/article/UJRN-0001504131
Tags: Add Tag
No Tags, Be the first to tag this record!
Journal Title:Library portal of National Academy of Sciences of Ukraine | LibNAS

Institution

Library portal of National Academy of Sciences of Ukraine | LibNAS
id open-sciencenbuvgovua-112123
record_format dspace
spelling open-sciencenbuvgovua-1121232024-12-23T18:37:03Z Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results V. A. Prokopenko S. V. Netreba O. A. Tsyganovych P. O. Kosorukov 2079-1704 2024 en Chemistry, physics and technology of surface http://jnas.nbuv.gov.ua/article/UJRN-0001504131 Article
institution Library portal of National Academy of Sciences of Ukraine | LibNAS
collection Open-Science
language English
series Chemistry, physics and technology of surface
spellingShingle Chemistry, physics and technology of surface
V. A. Prokopenko
S. V. Netreba
O. A. Tsyganovych
P. O. Kosorukov
Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
format Article
author V. A. Prokopenko
S. V. Netreba
O. A. Tsyganovych
P. O. Kosorukov
author_facet V. A. Prokopenko
S. V. Netreba
O. A. Tsyganovych
P. O. Kosorukov
author_sort V. A. Prokopenko
title Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
title_short Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
title_full Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
title_fullStr Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
title_full_unstemmed Application of the X-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the Fe0(Steel3)-H2O-O2 system: features and results
title_sort application of the x-ray diffraction analysis method for in situ study of the formation processes of ultra- and nanosized iron oxide/hydroxide phases in the fe0(steel3)-h2o-o2 system: features and results
publishDate 2024
url http://jnas.nbuv.gov.ua/article/UJRN-0001504131
work_keys_str_mv AT vaprokopenko applicationofthexraydiffractionanalysismethodforinsitustudyoftheformationprocessesofultraandnanosizedironoxidehydroxidephasesinthefe0steel3h2oo2systemfeaturesandresults
AT svnetreba applicationofthexraydiffractionanalysismethodforinsitustudyoftheformationprocessesofultraandnanosizedironoxidehydroxidephasesinthefe0steel3h2oo2systemfeaturesandresults
AT oatsyganovych applicationofthexraydiffractionanalysismethodforinsitustudyoftheformationprocessesofultraandnanosizedironoxidehydroxidephasesinthefe0steel3h2oo2systemfeaturesandresults
AT pokosorukov applicationofthexraydiffractionanalysismethodforinsitustudyoftheformationprocessesofultraandnanosizedironoxidehydroxidephasesinthefe0steel3h2oo2systemfeaturesandresults
first_indexed 2025-07-22T18:48:05Z
last_indexed 2025-07-22T18:48:05Z
_version_ 1850423322844594176