SANS Studies of the Gallium–Indium Alloy Structure within Regular Nanopores

Potential applications of nanolattices often require filling their empty space with eutectic metallic alloys. Due to confinement to nanolattices, the structure of phase segregates in eutectic alloys can differ from that in bulk. These problems are poorly understood now. We have used small angle neut...

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Published inNanomaterials (Basel, Switzerland) Vol. 12; no. 13; p. 2245
Main Authors Uskov, Andrei V., Charnaya, Elena V., Kuklin, Aleksandr I., Lee, Min Kai, Chang, Lieh-Jeng, Kumzerov, Yurii A., Fokin, Aleksandr V.
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LanguageEnglish
Published Basel MDPI AG 29.06.2022
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Abstract Potential applications of nanolattices often require filling their empty space with eutectic metallic alloys. Due to confinement to nanolattices, the structure of phase segregates in eutectic alloys can differ from that in bulk. These problems are poorly understood now. We have used small angle neutron scattering (SANS) to study the segregation in the Ga-In alloy confined to an opal template with the regular pore network, created by a strict regularity of opal constituents in close similarity with nanolattices. We showed that SANS is a powerful tool to reveal the configuration of segregated phases within nanotemplates. The In-rich segregates were found to have specific structural features as small sizes and ordered arrangement.
AbstractList Potential applications of nanolattices often require filling their empty space with eutectic metallic alloys. Due to confinement to nanolattices, the structure of phase segregates in eutectic alloys can differ from that in bulk. These problems are poorly understood now. We have used small angle neutron scattering (SANS) to study the segregation in the Ga-In alloy confined to an opal template with the regular pore network, created by a strict regularity of opal constituents in close similarity with nanolattices. We showed that SANS is a powerful tool to reveal the configuration of segregated phases within nanotemplates. The In-rich segregates were found to have specific structural features as small sizes and ordered arrangement.
Author Lee, Min Kai
Charnaya, Elena V.
Kuklin, Aleksandr I.
Kumzerov, Yurii A.
Uskov, Andrei V.
Chang, Lieh-Jeng
Fokin, Aleksandr V.
AuthorAffiliation 2 Joint Institute for Nuclear Research, 141980 Dubna, Russia; kuklin@nf.jinr.ru
1 Physics Department, St. Petersburg State University, 198504 St. Petersburg, Russia; a.uskov@spbu.ru
3 Moscow Institute of Physics and Technology, 117303 Moscow, Russia
5 Department of Physics, National Cheng Kung University, Tainan 70101, Taiwan; ljchang@mail.ncku.edu.tw
4 Instrument Center of Ministry of Science and Technology at National Cheng Kung University, Tainan 70101, Taiwan; mklee@mail.ncku.edu.tw
6 Ioffe Institute, 194021 St. Petersburg, Russia; yu.kumzerov@mail.ioffe.ru (Y.A.K.); midbarzin@yandex.ru (A.V.F.)
AuthorAffiliation_xml – name: 6 Ioffe Institute, 194021 St. Petersburg, Russia; yu.kumzerov@mail.ioffe.ru (Y.A.K.); midbarzin@yandex.ru (A.V.F.)
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SubjectTerms Alloys
Eutectic alloys
Experiments
Fractals
Ga-In eutectic nanoalloy
Gallium
Gallium base alloys
Indium
nanotemplate
Neutron scattering
Neutrons
SANS
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Title SANS Studies of the Gallium–Indium Alloy Structure within Regular Nanopores
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