Synthesis and Characterization of Six New Quaternary Actinide Thiophosphate Compounds: Cs8U5(P3S10)2(PS4)6, K10Th3(P2S7)4(PS4)2, and A5An(PS4)3, (A = K, Rb, Cs; An = U, Th)
- 9 May 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 40 (12) , 2851-2859
- https://doi.org/10.1021/ic0014437
Abstract
Six new actinide metal thiophosphates have been synthesized by the reactive flux method and characterized by single-crystal X-ray diffraction: Cs(8)U(5)(P(3)S(10))(2)(PS(4))(6) (I), K(10)Th(3)(P(2)S(7))(4)(PS(4))(2) (II), K(5)U(PS(4))(3) (III), K(5)Th(PS(4))(3) (IV), Rb(5)Th(PS(4))(3) (V), and Cs(5)Th(PS(4))(3) (VI). Compound I crystallizes in the monoclinic space group P2(1)/c with a = 33.2897(1) A, b = 14.9295(1) A, c = 17.3528(2) A, beta = 115.478(1) degrees, Z = 8. Compound II crystallizes in the monoclinic space group C2/c with a = 32.8085(6) A, b = 9.0482(2) A, c = 27.2972(3) A, beta = 125.720(1) degrees, Z = 8. Compound III crystallizes in the monoclinic space group P2(1)/c with a = 14.6132(1) A, b = 17.0884(2) A, c = 9.7082(2) A, beta = 108.63(1) degrees, Z = 4. Compound IV crystallizes in the monoclinic space group P2(1)/n with a = 9.7436(1) A, b = 11.3894(2) A, c = 20.0163(3) A, beta = 90.041(1) degrees, Z = 4, as a pseudo-merohedrally twinned cell. Compound V crystallizes in the monoclinic space group P2(1)/c with a = 13.197(4) A, b = 9.997(4) A, c = 18.189(7) A, beta = 100.77(1) degrees, Z = 4. Compound VI crystallizes in the monoclinic space group P2(1)/c with a = 13.5624(1) A, b = 10.3007(1) A, c = 18.6738(1) A, beta = 100.670(1) degrees, Z = 4. Optical band-gap measurements by diffuse reflectance show that compounds I and III contain tetravalent uranium as part of an extended electronic system. Thorium-containing compounds are large-gap materials. Raman spectroscopy on single crystals displays the vibrational characteristics expected for [PS(4)](3)(-), [P(2)S(7)](4-), and the new [P(3)S(10)](5)(-) building blocks. This new thiophosphate building block has not been observed except in the structure of the uranium-containing compound Cs(8)U(5)(P(3)S(10))(2)(PS(4))(6).Keywords
This publication has 15 references indexed in Scilit:
- High pressure optical and X-ray diffraction studies of two polymorphs of K(RE)P2Se6 (RE=Pr and Tb)Journal of Physics and Chemistry of Solids, 2000
- 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)Inorganic Chemistry, 1998
- K3CeP2S8: A New Cerium Thiophosphate with One-Dimensional Anionic ChainsInorganic Chemistry, 1998
- [Ce(PSe4)4]9−: a highly anionic Ce3+ selenophosphate coordination complexInorganic Chemistry Communications, 1998
- Stabilization of U5+ in Rb4U4P4Se26. An Actinide Compound with a Mixed Selenophosphate/Polyselenide Framework and Ion-Exchange PropertiesJournal of the American Chemical Society, 1997
- Reactions of Lanthanides and Actinides in Molten Alkali Metal/Polychalcogenide Fluxes at Intermediate Temperatures (250−600 °C)Chemistry of Materials, 1997
- Crystal Structure and Vibrational Spectrum of Thallium(I) Europium(II) Tetrathiophosphate(V), TIEu[PS4]Zeitschrift für anorganische und allgemeine Chemie, 1995
- Crystal structure and vibrational spectrum of copper mercury ortho‐thiophosphate CuHgPS4Heteroatom Chemistry, 1993
- Hydrothermal polychalcogenide chemistry. Stabilization of selenidomolybdate, [Mo9Se40]8-, a cluster of clusters, and [Mo3Se18]n2n- a polymeric polyselenide. Novel phases based on trinuclear [Mo3Se7]4+ building blocksInorganic Chemistry, 1992
- Darstellung, Schwingungsspektrum und Normalkoordinatenanalyse des Gold‐ortho‐Thiophosphates, AuPS4Journal of Raman Spectroscopy, 1986