New Lanthanide Selenophosphates. Influence of Flux Composition on the Distribution of [PSe4]3-/[P2Se6]4- Units and the Stabilization of the Low-Dimensional Compounds A3REP2Se8, and A2(RE)P2Se7 (A = Rb, Cs; RE = Ce, Gd)
- 1 July 1998
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 37 (15) , 3792-3797
- https://doi.org/10.1021/ic980025n
Abstract
The reaction of Ce or Gd with a molten mixture of A(2)Se/P(2)Se(5)/Se (A = Rb, Cs) produced the quaternary compounds Rb(3)CeP(2)Se(8) (I) and Cs(3)GdP(2)Se(8) (II), as well as Rb(2)CeP(2)Se(7) (III) and Rb(2)GdP(2)Se(7) (IV). The orange crystals of I, II and the red crystals of III, IV are air- and water-sensitive. Compounds I, II crystallize in the monoclinic space group P2(1)/c, and for I, a = 9.6013(2) Å, b = 18.0604(1) Å, c = 10.0931(1) Å, beta = 90.619(1) degrees, and Z = 4. Compounds III, IV crystallize in the monoclinic space group P2(1)/n, and for IV, a = 10.137(2) Å, b = 7.212(1) Å, c = 20.299(2) Å, beta = 98.23(1) degrees, and Z = 4. Compounds I, II have a 1-D structure with [(RE)P(2)Se(8)](n)()(3)(n)()(-) chains separated by A(+) cations. The RE(3+) lanthanide cation is in a bicapped trigonal prismatic coordination with four tridentate [PSe(4)](3)(-) ligands. Compounds III, IV possess a 2-D structure. Each layer consists of [RE(PSe(4))](x)() "chains" interstitched in two dimensions by hexadentate [P(2)Se(6)](4)(-) ligands. The trivalent RE cation is in a square antiprismatic coordination. The compounds were characterized with differential thermal analysis, far-IR, and solid-state UV/vis diffuse reflectance spectroscopy. Magnetic measurements indicate that the compounds obey the Curie law with &mgr;(eff) values close to those of the free RE(3+) ions.Keywords
This publication has 14 references indexed in Scilit:
- [Ce(PSe4)4]9−: a highly anionic Ce3+ selenophosphate coordination complexInorganic Chemistry Communications, 1998
- New directions in synthetic solid state chemistry: chalcophosphate salt fluxes for discovery of new multinary solidsCurrent Opinion in Solid State and Materials Science, 1997
- Stabilization of U5+ in Rb4U4P4Se26. An Actinide Compound with a Mixed Selenophosphate/Polyselenide Framework and Ion-Exchange PropertiesJournal of the American Chemical Society, 1997
- A Comparative Study of Two New Structure Types. Synthesis and Structural and Electronic Characterization of K(RE)P2Se6 (RE = Y, La, Ce, Pr, Gd)Inorganic Chemistry, 1996
- Synthesis and Structural Characterization of a New Rare-Earth Selenodiphosphate: KLaP2Se6Inorganic Chemistry, 1995
- Complex Multinary Compounds from Molten Alkali Metal Polyselenophosphate Fluxes. Layers and Chains in A4Ti2(P2Se9)2(P2Se7) and ATiPSe5 (A = K, Rb). Isolation of [P2Se9]4-, a Flux Constituent AnionInorganic Chemistry, 1995
- Synthesis in Molten Alkali Metal Polyselenophosphate Fluxes: A New Family of Transition Metal Selenophosphate Compounds, A2MP2Se6 (A = K, Rb, Cs; M = Mn, Fe) and A2M'2P2Se6 (A = K, Cs; M' = Cu, Ag)Inorganic Chemistry, 1995
- An empirical correction for absorption anisotropyActa Crystallographica Section A Foundations of Crystallography, 1995
- MITHRIL–an integrated direct-methods computer programJournal of Applied Crystallography, 1984
- Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenidesActa Crystallographica Section A, 1976