Rare-earth and actinide compoundsMagnetic Properties of AlloysMagnetic and transport properties of perovskites and related materials

G. Nychyporuk, D. Dymytryadi, V. Pavlyuk, Pavlo Demchenko, Ya.M. Kalychak

2026.6.11Zeitschrift fur Kristallographie-Crystalline Materials

DOI: 10.1515/zkri-2026-0014

Abstract

Novel phases RE 11 Co 4 In 9 ( RE  = Pr, Nd, Sm, Tm, Lu) were obtained by arc-melting of the elements in an argon atmosphere followed by annealing at T  = 870 K for 1,500 h in evacuated and sealed silica ampoules. All samples were characterized through their powder X-ray diffraction patterns and metallographic and quantitative phase analyses. The structure of the Pr 11 Co 4 In 9 compound was refined from powder X-ray diffraction patterns using the FullProf program package. The compound crystallizes in Nd 11 Pd 4 In 9 type structure (orthorhombic space group Cmmm , Z  = 2; a  = 14.801(10); b  = 22.119(14); c  = 3.746(2) Å) and belongs to a large family of two-layer structures (with layers perpendicular to the short unit cell axis) based on the intergrowth of AlB 2 - and CsCl-type related slabs. Pr 11 Co 4 In 9 - together with the Mo 2 FeB 2 , Mn 2 AlB 2 , o-La 2 Ni 2 In, Lu 5 Ni 2 In 4 types structure, in which the ternary indides crystallize – forms a homologous series RE m+n T 2n X m , where m is the number of REX (CsCl type) slabs and n the number of RET 2 (AlB 2 type) slabs ( T  = Co, X  = In). For Pr 11 Co 4 In 9 the values are m  = 18, n  = 4. The isostructural compounds were obtained with Nd, Sm, Tm, Lu and complete the series of RE 11 Co 4 In 9 ( RE  = Sc, Y, Gd, Tb, Dy, Ho, Er) compounds. The electronic structure calculations were performed by means of the TB-LMTO-ASA program indicating a covalent interaction between In1–In1 atoms and metallic bonding between other In, Pr and Co atoms.

Citation format

NYCHYPORUK, G., et al. New re 11 co 4 in 9 ( re = pr, nd, sm, tm, lu) nd Zeitschrift fur Kristallographie-Crystalline Materials, 2026.