Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams

For the first time, the morphology of the surface layers of porous silicon, as well as composites based on them formed using highpower pulsed ion beams of nanosecond duration (PIB) with different exposure ratios are analyzed. The results showed that a single radiation exposure is the most rationa...

Full description

Saved in:
Bibliographic Details
Main Authors: S. N. Povoroznyuk, V. E. Roslikov
Format: Article
Language:English
Published: Omsk State Technical University, Federal State Autonoumos Educational Institution of Higher Education 2020-06-01
Series:Омский научный вестник
Subjects:
Online Access:https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2020/3%20(171)/99-105%20%D0%9F%D0%BE%D0%B2%D0%BE%D1%80%D0%BE%D0%B7%D0%BD%D1%8E%D0%BA%20%D0%A1.%20%D0%9D.,%20%D0%A0%D0%BE%D1%81%D0%BB%D0%B8%D0%BA%D0%BE%D0%B2%20%D0%92.%20%D0%95..pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832574225860263936
author S. N. Povoroznyuk
V. E. Roslikov
author_facet S. N. Povoroznyuk
V. E. Roslikov
author_sort S. N. Povoroznyuk
collection DOAJ
description For the first time, the morphology of the surface layers of porous silicon, as well as composites based on them formed using highpower pulsed ion beams of nanosecond duration (PIB) with different exposure ratios are analyzed. The results showed that a single radiation exposure is the most rational regime for both porous silicon and composites. With this modification, surface structures are characterized by higher por-Si and SnOx crystallinity and uniformity. The gas sensitivity of the structures formed using PIB to nitrogen dioxide as well as the process of its degradation over time is studied. It is found that the most promising of all structures is a por-Si/SnOx composite irradiated with a single PIB pulse. It has the best gas sensitivity after creation and, with time, is less susceptible to aging, thus, being the most stable.
format Article
id doaj-art-57d5f03877cc4387b02d39c7303270c0
institution Kabale University
issn 1813-8225
2541-7541
language English
publishDate 2020-06-01
publisher Omsk State Technical University, Federal State Autonoumos Educational Institution of Higher Education
record_format Article
series Омский научный вестник
spelling doaj-art-57d5f03877cc4387b02d39c7303270c02025-02-02T00:10:52ZengOmsk State Technical University, Federal State Autonoumos Educational Institution of Higher EducationОмский научный вестник1813-82252541-75412020-06-013 (171)9910510.25206/1813-8225-2020-171-99-105Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beamsS. N. Povoroznyuk0V. E. Roslikov1Omsk Scientific Center of Siberian Branch of Russian Academy of SciencesOmsk Scientific Center of Siberian Branch of Russian Academy of SciencesFor the first time, the morphology of the surface layers of porous silicon, as well as composites based on them formed using highpower pulsed ion beams of nanosecond duration (PIB) with different exposure ratios are analyzed. The results showed that a single radiation exposure is the most rational regime for both porous silicon and composites. With this modification, surface structures are characterized by higher por-Si and SnOx crystallinity and uniformity. The gas sensitivity of the structures formed using PIB to nitrogen dioxide as well as the process of its degradation over time is studied. It is found that the most promising of all structures is a por-Si/SnOx composite irradiated with a single PIB pulse. It has the best gas sensitivity after creation and, with time, is less susceptible to aging, thus, being the most stable.https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2020/3%20(171)/99-105%20%D0%9F%D0%BE%D0%B2%D0%BE%D1%80%D0%BE%D0%B7%D0%BD%D1%8E%D0%BA%20%D0%A1.%20%D0%9D.,%20%D0%A0%D0%BE%D1%81%D0%BB%D0%B8%D0%BA%D0%BE%D0%B2%20%D0%92.%20%D0%95..pdfporous siliconnanocompositescanning electron microscopypulsed ion beamgas sensitivity
spellingShingle S. N. Povoroznyuk
V. E. Roslikov
Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
Омский научный вестник
porous silicon
nanocomposite
scanning electron microscopy
pulsed ion beam
gas sensitivity
title Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
title_full Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
title_fullStr Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
title_full_unstemmed Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
title_short Morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
title_sort morphology and gas sensitivity of nanocomposites based on porous silicon and tin oxide formed using nanosecond pulsed ion beams
topic porous silicon
nanocomposite
scanning electron microscopy
pulsed ion beam
gas sensitivity
url https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2020/3%20(171)/99-105%20%D0%9F%D0%BE%D0%B2%D0%BE%D1%80%D0%BE%D0%B7%D0%BD%D1%8E%D0%BA%20%D0%A1.%20%D0%9D.,%20%D0%A0%D0%BE%D1%81%D0%BB%D0%B8%D0%BA%D0%BE%D0%B2%20%D0%92.%20%D0%95..pdf
work_keys_str_mv AT snpovoroznyuk morphologyandgassensitivityofnanocompositesbasedonporoussiliconandtinoxideformedusingnanosecondpulsedionbeams
AT veroslikov morphologyandgassensitivityofnanocompositesbasedonporoussiliconandtinoxideformedusingnanosecondpulsedionbeams