This article is cited in 1 scientific paper (total in 1 paper)
XV International Conference ''Thermoelectrics and Their Applications-2016 St. Petersburg'', November 15-16, 2016
Analysis of the crystal structure of alloys of the [(Ge,Sn,Pb)(Te,Se)]m[(Bi,Sb)2(Te,Se)3]n (m,n = 0, 1, 2, …) family within the theory of closely packed spheres
Abstract:
The processes of the formation of complex crystal structures–layered crystals of [(Ge,Sn,Pb)(Te,Se)]m[(Bi,Sb)2(Te,Se)3]n (m,n = 0, 1, 2, …) ternary alloys with different symmetries (space groups Rˉ3m, Pˉ3m1, and P21/m)–are investigated within the theory of closely packed spheres (CPS theory). The structures of layered binary alloys of the Bi2Te3(Rˉ3m) and PbTe (Fmˉ3m and R3m) types are found to be related and formed based on the s3 triplet with cubic symmetry (Fmˉ3m), which is constructed by chalcogen (Se or Te) atoms.
Citation:
M. A. Korzhuev, A. B. Mikhailova, M. A. Kretova, E. S. Avilov, “Analysis of the crystal structure of alloys of the [(Ge,Sn,Pb)(Te,Se)]m[(Bi,Sb)2(Te,Se)3]n (m,n = 0, 1, 2, …) family within the theory of closely packed spheres”, Fizika i Tekhnika Poluprovodnikov, 51:8 (2017), 1011–1013; Semiconductors, 51:8 (2017), 969–971
\Bibitem{KorMikKre17}
\by M.~A.~Korzhuev, A.~B.~Mikhailova, M.~A.~Kretova, E.~S.~Avilov
\paper Analysis of the crystal structure of alloys of the [(Ge,Sn,Pb)(Te,Se)]$_{m}$[(Bi,Sb)$_{2}$(Te,Se)$_{3}]_{n}$ ($m,n$ = 0, 1, 2, $\dots$) family within the theory of closely packed spheres
\jour Fizika i Tekhnika Poluprovodnikov
\yr 2017
\vol 51
\issue 8
\pages 1011--1013
\mathnet{http://mi.mathnet.ru/phts6054}
\crossref{https://doi.org/10.21883/FTP.2017.08.44774.43}
\elib{https://elibrary.ru/item.asp?id=29938267}
\transl
\jour Semiconductors
\yr 2017
\vol 51
\issue 8
\pages 969--971
\crossref{https://doi.org/10.1134/S1063782617080164}
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This publication is cited in the following 1 articles:
M. A. Korzhuev, E. S. Avilov, M. A. Kretova, “Magnetic Field Production Abilities of Thermoelectric Materials Based on Layered Crystals of the Family [(Ge, Sn, Pb) Te]m [(Bi, Sb)2 (Te, Se)3]n (m, n = 0, 1, 2, …) with Non-Isovalent Cationic Substitution”, Inorg. Mater. Appl. Res., 10:5 (2019), 1039