Crystal growth and phase interaction studies in the Cu7GeS5I-Cu7SiS5I superionic system

Solid solutions of Cu7SiS5I-Cu7GeS5I system were synthesized using solid-phase reactions involving a technique specifically developed for the synthesis of ternary compounds that exhibit incongruent melting behaviour. Chemical interaction in the Cu7GeS5I-Cu7SiS5I system was studied by X-ray phase ana...

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Published inJournal of crystal growth Vol. 306; no. 2; pp. 326 - 329
Main Authors STUDENYAK, I. P, KOKHAN, O. P, KRANJCEC, M, HRECHYN, M. I, PANKO, V. V
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier 15.08.2007
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Abstract Solid solutions of Cu7SiS5I-Cu7GeS5I system were synthesized using solid-phase reactions involving a technique specifically developed for the synthesis of ternary compounds that exhibit incongruent melting behaviour. Chemical interaction in the Cu7GeS5I-Cu7SiS5I system was studied by X-ray phase analysis, microstructural analysis and density determination. Specific features of the energy gap and its compositional behaviour with Si- > Ge cation substitution in Cu7SiS5I-Cu7GeS5I solid solution system are reported.
AbstractList Solid solutions of Cu7SiS5I-Cu7GeS5I system were synthesized using solid-phase reactions involving a technique specifically developed for the synthesis of ternary compounds that exhibit incongruent melting behaviour. Chemical interaction in the Cu7GeS5I-Cu7SiS5I system was studied by X-ray phase analysis, microstructural analysis and density determination. Specific features of the energy gap and its compositional behaviour with Si- > Ge cation substitution in Cu7SiS5I-Cu7GeS5I solid solution system are reported.
Author STUDENYAK, I. P
KOKHAN, O. P
PANKO, V. V
KRANJCEC, M
HRECHYN, M. I
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10.1103/PhysRevB.44.1613
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Issue 2
Keywords Crystal growth
Inorganic compounds
Ternary compounds
81.10.Bk; 81.05.Hd
Phase analysis
Al. Solid solutions; A2. Growth from vapour; B1. Inorganic compounds
Energy gap
Solid solutions
Growth mechanism
Germanium
Silicon
Solid state crystal growth
Microstructure
Ionic crystals
Language English
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PublicationTitle Journal of crystal growth
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Studenyak (10.1016/j.jcrysgro.2007.05.029_bib6) 2002; 63
Laqibi (10.1016/j.jcrysgro.2007.05.029_bib4) 1987; 23
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SubjectTerms Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Growth from solid phases (including multiphase diffusion and recrystallization)
Materials science
Methods of crystal growth; physics of crystal growth
Physics
Theory and models of crystal growth; physics of crystal growth, crystal morphology and orientation
Title Crystal growth and phase interaction studies in the Cu7GeS5I-Cu7SiS5I superionic system
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