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1. Identity statement
Reference TypeJournal Article
Sitemtc-m21c.sid.inpe.br
Holder Codeisadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S
Identifier8JMKD3MGP3W34R/3TQHHAL
Repositorysid.inpe.br/mtc-m21c/2019/08.09.18.48   (restricted access)
Last Update2019:08.09.18.48.59 (UTC) simone
Metadata Repositorysid.inpe.br/mtc-m21c/2019/08.09.18.48.59
Metadata Last Update2020:01.06.11.42.18 (UTC) administrator
DOI10.1088/1361-6641/ab2e9b
ISSN0268-1242
Citation KeyZiminGANJSAR:2019:PlSuNa
TitlePlasma-assisted surface nanostructuring of epitaxial Pb1−xSnxTe (0<= x<=1) films
Year2019
Access Date2024, May 18
Type of Workjournal article
Secondary TypePRE PI
Number of Files1
Size1279 KiB
2. Context
Author1 Zimin, S. P.
2 Gorlachev, E. S.
3 Amirov, I. I.
4 Naumov, V. V.
5 Juskenas, R.
6 Skapas, M.
7 Abramof, Eduardo
8 Rappl, Paulo Henrique de Oliveira
Resume Identifier1
2
3
4
5
6
7 8JMKD3MGP5W/3C9JGUH
8 8JMKD3MGP5W/3C9JJ37
Group1
2
3
4
5
6
7 LABAS-COCTE-INPE-MCTIC-GOV-BR
8 LABAS-COCTE-INPE-MCTIC-GOV-BR
Affiliation1 Yaroslavl State University
2 Russian Academy of Sciences
3 Russian Academy of Sciences
4 Centre for Physical Sciences and Technology
5 Centre for Physical Sciences and Technology
6 Centre for Physical Sciences and Technology
7 Instituto Nacional de Pesquisas Espaciais (INPE)
8 Instituto Nacional de Pesquisas Espaciais (INPE)
Author e-Mail Address1
2
3
4
5
6
7 eduardo.abramof@inpe.br
8 paulo.rappl@inpe.br
JournalSemiconductor Science and Technology
Volume34
Pages095001
Secondary MarkA1_ENGENHARIAS_IV A2_MATERIAIS A2_INTERDISCIPLINAR A2_ENGENHARIAS_III B1_ENGENHARIAS_II B2_QUÍMICA B3_ASTRONOMIA_/_FÍSICA
History (UTC)2019-08-09 18:48:59 :: simone -> administrator ::
2019-08-09 18:48:59 :: administrator -> simone :: 2019
2019-08-09 18:49:46 :: simone -> administrator :: 2019
2020-01-06 11:42:18 :: administrator -> simone :: 2019
3. Content and structure
Is the master or a copy?is the master
Content Stagecompleted
Transferable1
Content TypeExternal Contribution
Version Typepublisher
Keywordssurface nanostructuring
plasma treatment
lead tin telluride
vapour-liquid-solid mechanism
micromasking mechanism
quasi-spherical droplets
AbstractIn this work, we report a novel approach to the surface nanostructuring of lead tin telluride films using inductively coupled argon plasma treatment with the average ion energy of 200 eV and the duration of 2060 s. The nanostructuring was carried out on the plasma treated surface of epitaxial single-crystal Pb1−xSnxTe films grown on BaF2(111) substrates using molecular beam epitaxy. The plasma treatment of the surface of the Pb1−xSnxTe films with the low and medium Sn content (x=00.6) resulted in the formation of the arrays of capped conical nanostructures with the height up to 420 nm, depending on the Sn content and treatment duration, and the surface density of ∼109 cm−2. The plasma treatment of the surface of the films with the high Sn content (x=0.81) yielded the formation of a second group of flat nanostructures without caps, which had necklace-like rings consisting of multiple nanodroplets around their rims. Using transmission electron microscopy, we show that the quasi-spherical droplet caps of the nanostructures consist of Pb wrapped in Sn. We explain the physical mechanism of the observed plasma-assisted nanostructure self-formation in the framework of the multi-stage model including physical sputtering, redeposition, vapour-liquid-solid mechanism and micromasking mechanism.
AreaFISMAT
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4. Conditions of access and use
Languageen
Target FileZimin_2019_Semicond._Sci._Technol._34_095001.pdf
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Update Permissionnot transferred
5. Allied materials
Next Higher Units8JMKD3MGPCW/3ESR3H2
Citing Item Listsid.inpe.br/mtc-m21/2012/07.13.14.57.50 3
sid.inpe.br/bibdigital/2013/09.24.19.30 2
sid.inpe.br/mtc-m21/2012/07.13.14.44.57 1
DisseminationWEBSCI; COMPENDEX.
Host Collectionurlib.net/www/2017/11.22.19.04
6. Notes
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