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@article{JSFU_2018_11_5_a2, author = {Victor V. Onufrienok and Anatoly V. Chzhan and Irina Yu. Sakash}, title = {Possible types of ordering cation vacancies in structures of the {NiAs} type}, journal = {\v{Z}urnal Sibirskogo federalʹnogo universiteta. Matematika i fizika}, pages = {561--568}, publisher = {mathdoc}, volume = {11}, number = {5}, year = {2018}, language = {en}, url = {http://geodesic.mathdoc.fr/item/JSFU_2018_11_5_a2/} }
TY - JOUR AU - Victor V. Onufrienok AU - Anatoly V. Chzhan AU - Irina Yu. Sakash TI - Possible types of ordering cation vacancies in structures of the NiAs type JO - Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika PY - 2018 SP - 561 EP - 568 VL - 11 IS - 5 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/JSFU_2018_11_5_a2/ LA - en ID - JSFU_2018_11_5_a2 ER -
%0 Journal Article %A Victor V. Onufrienok %A Anatoly V. Chzhan %A Irina Yu. Sakash %T Possible types of ordering cation vacancies in structures of the NiAs type %J Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika %D 2018 %P 561-568 %V 11 %N 5 %I mathdoc %U http://geodesic.mathdoc.fr/item/JSFU_2018_11_5_a2/ %G en %F JSFU_2018_11_5_a2
Victor V. Onufrienok; Anatoly V. Chzhan; Irina Yu. Sakash. Possible types of ordering cation vacancies in structures of the NiAs type. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 11 (2018) no. 5, pp. 561-568. http://geodesic.mathdoc.fr/item/JSFU_2018_11_5_a2/
[1] N.N. Yanenko, “On the weak approximation of the differential equations systems”, Siberian Mat. Zh., 5:6 (1964), 1431–1434 (in Russian) | MR | Zbl
[2] E. Makovicky, “Crystal structures of sulfides and other chalcogenides”, Reviews in Mineralogy and Geochemistry, 61 (2006), 7–125 | DOI
[3] E.J. Schwars, D.I. Vaughan, “Magnetic phases relatinship of pyrrhotite”, Geomagn. Geoel., 24 (1972), 4–41
[4] A.G. Zvegintsev, V.V. Onufrienok, “Peculiarities of magnetic-properties of pirrotites, formed as a result of pirit decomposition”, Geomagnetizm i Aeronomiya, 21:4 (1981), 763–765 (in Russian)
[5] V.V. Onufrienock, A.G. Zvegintzev, “Temperature Magnetic Hysteresis of Pirrotines”, Geomagnetizm i Aeronomiya, 21 (1981), 575–577 (in Russian)
[6] V.V. Onufrienok, “Phase relationships of iron sulfides in the metastable state”, Solid State Physics, 33 (1991), 2213–2215 (in Russian)
[7] D.C. Lilies, J.P.R. de Villiers, “Redetermination of the structure of 5C pyrrhotite at low temperature and at room temperature”, American Mineralogist, 97 (2012), 257–261 | DOI
[8] V.V. Onufrienok, A.G. Zvegintsev, “Magnetic-properties and crystal-structure of iron sulfides in the composition range FeS-FeS1.18”, Inorganic Materials, 18 (1982), 301–304
[9] G.A. Dorogina, R.I. Gulyaeva, E.N. Selivanov, V.F. Balakirev, “Thermal and thermomagnetic properties of pyrrhotites”, Russian Journal of Inorganic Chemistry, 60 (2015), 349 | DOI
[10] H. Wang, I. Salveson, “A review on the mineral chemistry of the non-stoichiometric iron sulphide, Fe1-xS (0$\leq$x$\leq$0.125): polymorphs, phase relations and transitions, electronic and magnetic structures”, Phase Transitions, 78 (2005), 547–567 | DOI
[11] S.V. Tyablikov, The quantum theory methods of magnetism, Nauka, M., 1975 (in Russian) | MR
[12] E.V. Kuzmin, V.V. Onufrienok, “Magnetization of pyrrotine type non-stoichiometric compounds with the different vacancy concentration”, Fizika Tverdogo Tela, 25 (1983), 2321–2326 (in Russian)