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Attempts have been made to prepare new model-substances for magneto-chemical investigations. Sodium selenochromite, NaCrSe2, rubidium selenochromite, RbCrSe2, and rubidium thiochromite, RbCrS2, of high purity have been prepared by reaction of the pure elements, and a potassium selenochromite, K0.5CrSe2 or KCrSe2.CrSe2, by fusion of KCN with Cr2O3 and selenium. The crystal structures of the alkali selenochromites and rubidium thiochromite have been investigated with the following results: NaCrSe2: hexagonal rhombohedric; D3d5-R\overline 3m; Ia = 3.708 A., Ic = 20.29 A. ± 0.05 A.; parameter z of Se: 95.3° ±  0.3°; density obs. = 4.497 g.cm.-3; density calc. = 4.77 g.cm.-3; the hexagonal unit cell contains three, the rhombohedral cell one molecule of NaCrSe2. K0.5CrSe2: hexagonal rhombohedric; C3v5-R3m; Ia = 3.44 A., Ic = 24.2 A.; parameter z of Se: 141.5°; parameter z of K: 60-62°. RbCrSe2: hexagonal rhombohedric; space group not yet determined; Ia = 3.34 A., Ic = 26.9 A.; density obs. = 5.02 g.cm.-3, density calc. = 5.26 g.cm.-3. RbCrS2: hexagonal rhombohedric; space group not yet determined; Ia = 3.39 A., Ic = 16.20 A. The radius of the Se2- ions decreases from 1.85 A. in NaCrSe2 to 1.715 A. in RbCrSe2. Preliminary magnetic measurements on NaCrSe2 show the compound to obey the Curie-Weiss law with a [theta] value of about + 70° C.
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