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Crystal, electronic and magnetic structures of a novel series of intergrowth carbometalates R4Co2C3 (R = Y, Gd, Tb)
Author(s) -
Volodymyr Levytskyi,
O. Isnard,
Reinhard K. Kremer,
Volodymyr Babizhetskyy,
Bruno La Fontaine,
Xavier Rocquefelte,
JeanFrançois Halet,
Roman Gumeniuk
Publication year - 2021
Publication title -
dalton transactions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.98
H-Index - 184
eISSN - 1477-9234
pISSN - 1477-9226
DOI - 10.1039/d1dt00420d
Subject(s) - crystallography , crystal structure , stacking , series (stratigraphy) , carbide , crystal (programming language) , materials science , x ray crystallography , chemistry , physics , nuclear magnetic resonance , metallurgy , diffraction , geology , paleontology , computer science , programming language , optics
A series of new ternary isostructural R 4 Co 2 C 3 (R = Y, Gd, Tb) carbides was synthesized by annealing of arc-melted stoichiometric samples. The crystal structure of Tb 4 Co 2 C 3 [space group P2/m, Pearson symbol mP18, a = 12.754(2) Å, b = 3.6251(4) Å, c = 7.0731(9) Å, β = 105.601(6)°] was solved by direct methods from neutron powder diffraction data collected at 100 K. The room temperature unit cell parameters of the new phases were determined by X-ray powder diffraction technique. The crystal structure of Tb 4 Co 2 C 3 is characterized as an intergrowth structure resulting from the stacking of alternating TbCoC (YCoC-type) and Tb 2 C (anti-CdCl 2 ype) fragments with a 2 : 1 ratio. Tb 4 Co 2 C 3 orders ferromagnetically at T C = 35(1) K, whereas the isostructural Gd 4 Co 2 C 3 reveals two magnetic transitions at T C1 = 82(3) K and T C2 = 13(2) K. Density functional theory (DFT) calculations confirm that the magnetic moments of the R 4 Co 2 C 3 (R = Gd, Tb) carbides are exclusively due to the rare-earth elements. Y 4 Co 2 C 3 is shown to be a Pauli-paramagnet by experimental and theoretical studies.

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