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1.
The new compound Tl6[Ge2Te6] was prepared by thermal synthesis from the elements. The material is triclinic, space group P1, with a = 9.471(2), b = 9.714(2), c = 10.389(2) Å, α = 89.39(1), β = 97.27(1), γ = 100.79(1)°, and Z = 2. The crystal structure was determined from single-crystal intensity data measured by means of an automated four-circle diffractometer and refined to an R value of 0.053 for 1831 observed reflections. Tl6[Ge2Te6] is characterized by Ge2Te6 units with GeGe bonds which are linked into a three-dimensional structure by Tl atoms coordinated to essentially six Te atoms. The most important mean distances are dGeGe) = 2.456 Å, d(GeTe) = 2.573 Å, and d(TlTe) = 3.515Å. The lone 6s electron pairs of the thallium(I) atoms exhibit significant stereochemical activity. Tl6[Ge2Te6] represents a new structure type.  相似文献   

2.
The crystal structure of SnC2O4 has been determined by X-ray single-crystal techniques and refined to R = 0,018 for 1139 reflections. The cell is monoclinic, space group C2c with Z = 4 formula units, the parameters being a = 10,375(3)Å. b = 5,504(2)Å, c = 8,234(3)Å, β = 125,11(2)°. The oxalato groups, located on symmetry centers, are chelated to two Sn atoms through one oxygen on each carbon atom, giving rise to an infinite string (SnC2O4)n. The Sn(II) atom is one-side bonded to four oxygen atoms with two SnO bonds of 2,232(2) Å and two of 2,393(2) Å. The tin atom is in a distorted trigonal bipyramid SnO4E, the lone pair E occupying one of the apices of the equatorial trigonal base of the polyhedron. Crystal structure comparison with disodium bisoxalatostannate(II), Na2Sn(C2O4)2, permits one to deduce SnC2O4 by crystallographic shear operation 18[342](001) of c2 periodicity. Na2Sn(C2O4)2 can be described as an intergrowth of SnC2O4 and Na2C2O4 structures and consldered as the first member of a new series Na2Sn1+n(C2O4)2+n with n integer ? 0.  相似文献   

3.
The crystal structure of Cs[VOF3] · 12H2O has been determined and refined on the basis of three-dimensional X-ray diffractometer data (Mo radiation). The structure is monoclinic, a = 7.710(2), b = 19.474(7), c = 7.216(2)Å, β = 116.75(1)°, V = 967.5Å3, Z =8, space group Cc (No. 9). The final R and Rw were 0.0295 and 0.0300, respectively, for 1356 independent reflections and 117 variables.The structure contains two crystallographically different VOF5 octahedra linked so as to form complex chains. Two non-equivalent octahedra share one FF edge, forming V2O2F8 doublets. Two F atoms, connected to different V atoms within the doublet, form an edge in the adjacent equivalent V2O2F8 unit thus continuing the chain. The VO distances are 1.583(7) and 1.595(7) Å. The VF distances are in the range 1.881-2.205 Å, mean value: 1.989 Å. The H2O group is a crystal water molecule.  相似文献   

4.
Nickel-ammonium tetrametaphosphate, Ni(NH4)2P4O12 · 7H2O is triclinic with a = 13.841(3); b = 9.621(5); c = 7.482(2)Å; α = 98.05(4); β = 97.25(4); γ = 103.01(4)°; M = 536.59; V = 947.9Å3; Z = 2; Dx = 1.879 g cm?3; μ = 14.524 cm?1, and space group P1. The crystal structure was solved using 1661 independent reflections measured on a single-crystal diffractometer (Mo). The final R value is 0.056. The two crystallographic independent nickel atoms Ni(1) and Ni(2) are octahedrally coordinated: Ni(1) by four oxygen atoms and two water molecules, Ni(2) by six water molecules. Ni(1), closely connected to two P4O12 rings, forms a complex anion [Ni(P4O12)2(H2O)2]6? which is associated to ammonium polyhedra and [Ni(H2O)6]2+ octahedra. Another interesting feature of this atomic arrangement is the presence of a large channel (10 × 4) Å2 parallel to the c axis. The internal surface of this channel is covered by six zeolitic water molecules.  相似文献   

5.
V4O7 has a transition with decreasing temperature at 250 K and the structure has been refined at 298 and 200 K. The triclinic structure (A1) consists of rutile-like layers of VO6 octahedra extending indefinitely in the a-b plane and four octahedra thick along the c-axis. The average VO distances for the four independent V atoms are 1.967, 1.980, 1.969, and 1.984 Å at 298K and 1.948, 1.992. 1.961, and 2.009 Å at 200K. At 200K there is a clear separation into strings of V3+ or V4+ ions running parallel to the pseudorutile c-axis. In addition, all of the 3+ and half of the 4+ sites are paired to form short VV bonds. The remaining V4+ atom is displaced toward one oxygen so as to balance its electrostatic charge. The distortion at the metal-insulator transitions in V4O7, Ti4O7, VO2 + Cr, and NbO2 are compared.  相似文献   

6.
LLi2Mo4o13 crystallizes in the triclinic system with unit-cell dimensions a = 8.578 Å, b = 11.450 Å, c = 8.225 Å, α = 109.24°, β = 96.04°, γ = 95.95° and space group P1, Z = 3. The calculated and measured densities are 4.02 g/cm3 and 4.1 g/cm3 respectively. The structure was solved using three-dimensional Patterson and Fourier techniques. Of the 2468 unique reflections collected by counter methods, 1813 with I ? 3σ(I) were used in the least-squares refinement of the model to a conventional R of 0.031 (ωR = 0.038). LLi2Mo4O13 is a derivative of the V6O13 structure with oxygen ions arranged in a face-centred cubic type array with octahedrally coordinated molybdenum and lithium ions ordered into layers.  相似文献   

7.
A monoclinic structure with the unit cell content 2V7O3 and its derivative structure designated as V7O3+x have been determined by X-ray and electron diffraction study. In both the structures, the oxygen atoms occupy regularly special octahedral interstitial sites in the body-centered monoclinic (or pseudo-tetragonal) metal lattice with the axial ratio ca ≈ 1.2. The ordered distribution of the oxygen atoms is interpreted from the condition of minimization of the elastic strain in the vanadium lattice.  相似文献   

8.
The crystal structure of a bis(triphenylphosphine)iminium salt of the 1:1 adduct of [FeH(CO)4]? and dimethyl acetylenecarboxylate has been determined from three-dimensional X-ray data collected by the counter method. Single crystals belong to the triclinic space space group P1, with two units of [C36H30NP2]+[C10H7FeO8]? in a cell of dimensions: a = 13.918(2), b = 15.669(5), c = 9.909(2) Å, α = 91.22(3), β = 94.83(2), and γ = 77.62(2)°. The structure was refined to a conventional R of 0.068 for 5373 observed
reflections. The resulting structure indicates that the complex anion is η3-[trans-2,3-bis(methoxycarbonyl)acryloyl]tricarbonylferrate, the coordination around the iron atom being described as a considerably distorted trigonal bipyramid. A comparison of the present structure with the structures of related complexes suggests that the η3-acryloyl portion is best represented as an intermediate of (η3-allyl) with the oxygen atom and (η2-olefin + η1-acyl). The short Fe-C(acyl) length of 1.897(5) Å implies an enhanced back-donation of electrons from the iron atom to the acyl group.  相似文献   

9.
The high-temperature form of NaFeP2O7 crystallizes in the monoclinic P21c space group with a = 7.3244(13), b = 7.9045(7), c = 9.5745(15), Å, β = 111.858(13)°, and Z = 4. The structure has been refined from 3842 reflections leading to R = 0.040 and Rw = 0.047. The structure of II-NaFeP2O7 can be described by alternately stacking layers containing the FeO6 octahedra and layers formed by the P2O7 groups, parallel to (001). Elongated cages are formed where two Na+ ions are located. The structure is compared with that of KAlP2O7. Both structures are built up from blocks of three polyhedra, [FeP2O11] or [AlP2O11], including a small OoctOtetOoct angle. These blocks are connected in such a way that several types of tunnels appear in each structure.  相似文献   

10.
Single crystals of the fast-ion conductor Ag16I12P2O7 were prepared and their structure (P6mcc, a = 12.054, c = 7.504 Å) was determined by X-ray diffraction (r = 0.08). The I atoms form a close-packed array leaving channels occupied by P2O4?7 ions running along the c axis. The Ag atoms are disordered over four different types of site with occupation numbers ranging from 0.12 to 0.52. Each Ag+ ion coordination polyhedron shares several faces with adjacent polyhedra providing ready paths for Ag+ ion conduction.  相似文献   

11.
[O2]2+2[Ti7F30]2? has been obtained by reaction of TiO2 with a mixture of fluorine and oxygen (pF2/O2 ≈ 300–3500 atm., t ≈ 300–450°C) either as colourless powder or in form of colourless, clear needles. From single crystal studies the spacegroup is P3 - C3i1 (No. 147) with a = 10.192, c = 6.50o Å, Z = 1. The crystal structure has been refined to R = 0.086 [Rw = 0.058] (748 unique reflexions [Fo > 2σ(Fo)]). From the structure determination [O2]2+2[Ti7F30]2? has isolated columns of partially distorted [TiF6] octahedra (- column structure) which are connected only quite loosely by (disordered) O2+ cations. νO2+ is at 1857 cm?1, the magnetic moment μeff = 2.35 B.M. (295 K) is quite as expected for a ‘spin-only’ case.  相似文献   

12.
Fe2P2O7 crystallizes in the C1 space group with lattice parameters a = 6.649(2)Å, b = 8.484(2)Å, c = 4.488(1)Å, α = 90.04°, β = 103.89(3)°, γ = 92.82(3)°, and ?cal = 3.86 g/cc. It is essentially isostructural with β-Zn2P2O7. As in the Zn compound, the bridging oxygen atom in the P2O7 group shows a high anisotropic thermal motion. It appears that the P-O-P bond angle is linear as a result of extensive π bonding with the p orbitals on the bridging oxygen atom. The high thermal motion is vibration of the atom into cavities in the structure.  相似文献   

13.
Single crystals of a new compound, FeV2O6H0.5, have been obtained by hydrothermal synthesis at 650°C and 2 kbar. An electron microprobe analysis indicated that the chemical formula is FeV2O6. This compound has an orthorhombic symmetry, space group P212121 with Z = 4. The unit cell dimensions are
a = 4.891 A?, b = 9.553 A?, c = 8.786 A?
These parameters are related to a′, b′, c′ of the diaspore-type VO2 by the relations: a ? a′, b ? b′, c ? 3c′. The structure, based on single crystal data, has been determined from Patterson and Fourier syntheses. A structural refinement gave a final R-factor of 2.4%. The new structure can be deduced from that of the diaspore-type VO2, by displacement of one third of the cations from an octahedral site to an adjacent unoccupied tetrahedral site, which is located in a channel parallel to the c axis. The calculation of the cation and oxygen valences indicated that some O2? were in fact OH?. This conjecture was supported by thermogravimetric analysis. The chemical formula was indeed Fe3+2V3+V4+V5+2O11(OH). Some intensities of the powder diffraction lines changed strongly when the preparation temperature was reduced from 650°C to 300°C. This was explained by an increase of the hydrogen ratio in the formula FeV2O6Hx, which implies a structural change. The different phases FeV2O6Hx can be considered as solid solutions between two extreme phases with different structure: one with the present one and the other with a diaspore-type structure.  相似文献   

14.
Tris(ortho-aminobenzoato)aquoyttrium(III), Y(H2NC6H4COO)3 · H2O, crystallizes in the monoclinic space group, C2c, with eight molecules in a unit cell of dimensions: a = 30.89(1) Å, b = 9.09(1) Å, c = 14.85(1) Å, and β = 109.3(1)°. The structure was determined using three-dimensional X-ray diffraction data gathered on multiple-film equi-inclination, integrated Weissenberg, and precession photographs taken about two crystal axes. The structure, excluding the hydrogen atoms, was solved from Patterson and electron density maps and refined by least-squares methods to a final R of 0.081. The coordination about the yttrium atom is sevenfold, best described by a capped trigonal prism. Each ortho-aminobenzoate ligand acts as a bridging bidentate ligand, resulting in six ortho-aminobenzoate residues coupled to each yttrium atom. The water molecule occupies the seventh position. This bonding configuration generates a structure in which each yttrium atom in (100) is attached to two other yttrium atoms via carboxylate bridges to give parallel sets of polymeric chains coincident with (100). It is suggested that this polymeric character accounts for the extreme insolubility of Y(H2NC6H4COO)3 · H2O.  相似文献   

15.
Crystal structures of the ordered phases of V3S4 and V5S8 were refined with single crystal data. Both are monoclinic. Chemical compositions, space groups and lattice constants are as follows: VS1.47, I2m (No. 12), a = 5.831(1), b = 3.267(1), c = 11.317(2)Å, β = 91.78(1)° and VS1.64, F2m (No. 12), a = 11.396(11), b = 6.645(7), c = 11.293(4), Å, β = 91.45(6)°. In both structures, short metal-metal bonds were found between the layers as well as within them. In comparison with the structure of Fe7S8, the stability of NiAs-type structure was discussed based on the detailed metal-sulfur distances.  相似文献   

16.
The phase equilibria in the V2O3Ti2O3TiO2 system have been determined at 1473°K by the quench method, using both sealed tubes and controlled gaseous buffers. For the latter, CO2H2 mixtures were used to vary the oxygen fugacity between 10?10.50 and 10?16.73 atm. Under these conditions the equilibrium phases are: a sesquioxide solid solution between V2O3 and Ti2O3 with complete solid solubility and an upper stoichiometry limit of (V, Ti)2O3.02; an M3O5 series which has the V3O5 type structure between V2TiO5 and V0.69Ti2.31O5 and the monoclinic pseudobrookite structure between V0.42Ti2.58O5 and Ti3O5; series of Magneli phases, V2Tin?2O2n?1TinO2n?1, n = 4–8; and reduced rutile phases (V, Ti)O2?x, where the lower limit for x is a function of the V(V + Ti) ratio. The extent of the different solid solution areas and the location of the oxygen isobars have been determined.  相似文献   

17.
Two compounds of the formulae (dppeH2)3[MOCl6]2 ·12H2O I and (dppeH2)3[Mo2Cl9]2II are described. For compound I, which proved to be active in olefin epoxidation, the crystal structure was determined. The rose-pink crystals are triclinic, space group P1 with a = 13.715(9), b3 = 14.686(7), c = 12.512(7) Å, α = 109.56(4), β = 97,98(4) and γ = 91.27(5)°, V = 2345 Å, Dm = 1.42 and Dc = 1.44 gcm?3, Z = 1. Block-diagonal least squares refinement of the structure has led to a final value of the conventional R factor of 0.049 for the 3914 independent reflections with I > 3σ(I). Bond distances are in the range: MoCl 2.439(2)–2.469(2) Å, and PC 1.771(9)–1.806(8) Å.  相似文献   

18.
Reaction of BaO, Nb2O5, and Nb in mole ratios of 2.4:1.6:1 in an evacuated silica capsule at 1250°C produces a mixture of at least two products, one of which has the probable composition Ba6+xNb14Si4O47 (x ? 0.23). This compound has an hexagonal unit cell of dimensions a = 9,034 ± 0.004 Å, c = 27.81 ± 0.02 Å, probable space group P63mcm, Z = 2. Its structure has been determined from 942 independent reflections collected by a counter technique and refined by least squares methods to a conventional R value of 0.062. The basic structure consists of strings of four NbO6 octahedra sharing opposite corners, each string joined to the next by edge sharing of the end octahedra, so that the c axis corresponds to the length of a strand of seven corner-linked octahedra. Chains of three such strands are formed by corner sharing between the strands. The chains in turn are joined by NbO6 octahedra and Si2O7 groups in which the SiOSi linkage is linear. Barium atoms are in sites between the chains coordinated by 13 oxygen atoms. A second site, 15 coordinated, probably has a small amount of barium as well; the fractional occupancy for barium in this site is 0.076.  相似文献   

19.
Crystal structures for the fluorite-related phases CaHf4O9ф1) and Ca6Hf19O44 (ф2) have been determined from X-ray powder diffraction data. qf1 is monoclinic, C2c, with a = 17.698 Å, b = 14.500Å, c = 12.021 Å, β = 119.47° and Z = 16. qf2 is rhombohedral, R3c, with a = 12.058 Å, α = 98.31° and Z = 2.Both phases are superstructures derived from the defect fluorite structure by ordering of the cations and of the anion vacancies. The ordering is such that the calcium ions are always 8-coordinated by oxygen ions, while the hafnium ions may be 6-, 7-, or 8-coordinated. The closest approach of anion vacancies is a 12〈111〉 fluorite subcell vector, and in each structure vacancies with this separation form strings.  相似文献   

20.
PV2S10 was obtained by heating the elements in stoichiometric proportions at 490°C in evacuated Pyrex tubes. The crystal symmetry is monoclinic, space group P21c, with the unit cell parameters a = 12.734(8)Å, b = 7.349(7)Å, c = 23.662(4)Å, β = 95°22(1), V = 2205(4)Å3, and Z = 8. The structure was solved from 2269 independant reflexions, and anisotropic least squares refinement gave R = 0.036 with 236 variables. The structure can be described as made of [V2S12] units forming endless chains themselves linked, two by two, by [PS4] tetrahedra. In these units each vanadium is surrounded by eight sulfur atoms (mean dVS = 2.459Å) arranged in a distorted bicapped triangular prism. Two of these prisms shared a rectangular face to form [V2S12] groups, in which intercationic distances implied vanadium-vanadium bonds (mean dVV = 2.852(2)Å). Between the infinite double chains, only SS weak van der Waals' bonds exist. More than two thirds of the sulfur atoms are present as [SS]?II pairs, (mean dSS = 2.015Å); the rest are S?II anions.  相似文献   

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