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Todorov I  Sevov SC 《Inorganic chemistry》2006,45(11):4478-4483
The title compound was synthesized in an attempt to produce stacked benzene-like Sn6(6-) rings separated by alkaline-earth cations in analogy with the recently reported stacks of aromatic cyclopentadienyl-like Sn5(6-) in Na8BaSn6 (in addition to isolated Sn4- anions). The resulting compound, synthesized from a stoichiometric mixture of the elements at high temperature, has the "correct" stoichiometry with six tin atoms and six positive charges. However, the rings of Sn6(6-) are puckered into chair-type cyclohexanes that are interconnected into isolated cylindrical tubes stuffed with Ca2+ between the rings. Such tubes, if fused to each other, form the hexagonal diamond structure. The new compound is electronically balanced according to magnetic and four-probe resistivity measurements. Reported are also the synthesis and properties of Na10EuSn12 and Na10YbSn12 which are isostructural with the known Na10CaSn12.  相似文献   

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铽锰基化合物TbMn6Sn6的结构和磁性   总被引:1,自引:0,他引:1  
研究了重稀土金属化合物TbMn6Sn6的晶体结构、内禀磁性及其矫顽力随和外场变化的规律。TbMn6Sn6为HfFe6Ge6型六角型结构,晶格常数为:a=0.5561nm,c=0.90477nm,单胞体积为0.241nm^3,居里温度TC=421K。TMn6Sn6化合物在外场较弱时,热磁曲线呈亚铁磁性;当外场较强时,则表现出铁磁行为,具有变磁性,TbMn6Sn6的矫顽力随温度变化,当温度T=200K  相似文献   

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Dark violet hexastannane ( t Bu 3 Si) 6 Sn 6 displays a new framework motif for molecular tin compounds, in which six Sn atoms are located at the corners of a trigonal prism. The compound can be synthesized according to Equation (a). R*=SitBu3.  相似文献   

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Li2Sn(OH)6     
Hydro­thermally prepared dilithium tin hexa­hydro­xide crystallizes in the monoclinic system (space group P21/n), with the Sn atom at a site with symmetry and all other atoms in general positions. The Sn coordination polyhedron is made up of six hydro­xide groups. The Li atom is tetrahedrally coordinated by oxy­gen, with the tetrahedra sharing two corners and one edge with the adjacent Sn octahedra. Hydro­gen bonds between the OH groups provide additional bonds in the framework.  相似文献   

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Two new Sn2+-W6+-oxides, Sn2WO5 and Sn3WO6, have been synthesized hydrothermally, and their structures have been determined by single-crystal X-ray diffraction methods. Both materials exhibit layered structural topologies consisting of two edge-shared WO6 octahedra connected to SnO3 and SnO4 polyhedra. Both the W6+ and Sn2+ cations are in locally asymmetric coordination environments attributable to second-order Jahn-Teller effects. Infrared and Raman spectroscopy, UV-vis diffuse reflectance spectroscopy, and thermogravimetric analysis were also performed on the reported materials. Theoretical calculations using the tight binding linear muffin tin orbital method agree with the observed electronic properties of these materials and indicate that the stereoactive lone pair on the Sn2+ is similar for both materials. Crystal data: Sn2WO5, monoclinic, space group P21/n (No. 14), a = 7.994(2) A, b = 13.712(4) A, c = 10.383(3) A, beta = 110.507(3) degrees , V = 1066.0(5) A3, and Z = 4; Sn3WO6, monoclinic, C2/c (No. 15), a = 12.758(3) A, b = 8.0838(16) A, c = 13.865(3) A, beta = 112.49(3) degrees , V = 1321.2(5) A3, and Z = 8.  相似文献   

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A new ternary dithulium hexacobalt icosastannide, Tm2.22Co6Sn20, and a new quaternary thulium dilithium hexacobalt icosastannide, TmLi2Co6Sn20, crystallize as disordered variants of the binary cubic Cr23C6 structure type (cF116). 48 Sn atoms occupy sites of m.m2 symmetry, 32 Sn atoms sites of .3m symmetry, 24 Co atoms sites of 4m.m symmetry, eight Li (or Tm in the case of the ternary phase) atoms sites of symmetry and four Tm atoms sites of symmetry. The environment of one Tm atom is an 18‐vertex polyhedron and that of the second Tm (or Li) atom is a 16‐vertex polyhedron. Tetragonal antiprismatic coordination is observed for the Co atoms. Two Sn atoms are enclosed in a heavily deformed bicapped hexagonal prism and a monocapped hexagonal prism, respectively, and the environment of the third Sn atom is a 12‐vertex polyhedron. The electronic structures of both title compounds were calculated using the tight‐binding linear muffin‐tin orbital method in the atomic spheres approximation (TB–LMTO–ASA). Metallic bonding is dominant in these compounds, but the presence of Sn—Sn covalent dumbbells is also observed.  相似文献   

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Mössbauer Studies on Sn2O3 Mössbauer data for 119Sn in Sn2O3 show this compound to contain bivalent and tetravalent tin. Whereas tin(IV) is coordinated in a similar way in Sn2O3 and SnO2, a rather large quadrupole splitting indicates an environment of low symmetry for tin(II).  相似文献   

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The Tin Rhodium Borides SnRh3B1–x, Sn4Rh6B, and Sn5Rh6B2 The new compounds SnRh3B1–x (x ~ 0.2, tetragonal, P4/mbm, a = 570.31(2) pm, c = 835.99(8) pm, Z = 4, 514 reflexions, 26 parameters, R = 0.026), Sn4Rh6B (hexagonal, P63/mmc, a = 560.01(3) pm, c = 1367.5(1) pm, Z = 2, 746 reflexions, 17 parameters, R = 0.035), and Sn5Rh6B2 (hexagonal, P6 2m, a = 654.80(7) pm, c = 557.32(9) pm, Z = 1, 361 reflexions, 16 parameters, R = 0.039) were prepared by reaction of the elements. SnRh3B1–x crystallizes with the filled U3Si type of structure, a distortion variant of the cubic perovskite; the structure of Sn4Rh6B may be derived from the hexagonal perovskite BaNiO3. Both compounds contain nearly regular Rh6B-octahedra. Sn5Rh6B2 with the Sn5Ir6B2 type of structure contains isolated colums composed of trigonal Rh6B-prisms.  相似文献   

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Sun ZM  Xia SQ  Huang YZ  Wu LM  Mao JG 《Inorganic chemistry》2005,44(25):9242-9246
The new ternary polar intermetallic phase, Ca6Cu2Sn7, has been synthesized by the solid-state reaction of the stoichiometric mixture of the pure elements in welded Ta tubes at high temperature. Its structure was established by single-crystal X-ray diffraction studies. Ca6Cu2Sn7 crystallizes in the monoclinic space group C2/m (No. 12) with cell parameters of a=14.257(7), b=4.564(2), and c=12.376(7) A, beta=93.979(6) degrees, V=803.3(7) A3, and Z=2. The structure of Ca6Cu2Sn7 belongs to a new structure type and features a 3D anionic open-framework composed of [Cu2Sn3] layers interconnected by unusual Sn4 tetramers, forming large tunnels along the b axis which are composed of Cu4Sn12 16-membered rings. The calcium atoms are located in these large tunnels. Ca6Cu2Sn7 is metallic and exhibits temperature-independent paramagnetism.  相似文献   

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Mössbauer absorption spectra of rare-gas matrix-isolated SnX4 and SnX2 molecules (X = F, Cl, Br, I) have been measured at matrix temperatures of a bout 5 K. The hyperfine interaction (hfi) parameters of 119Sn in argon matrix-isolated SnX4 (X = Cl, Br, 1) molecules are identical with those of the corresponding crystalline compounds. This fact reveals that the inter-molecular interactions are negligible in the crystalline compounds as far as concerning the electronic structure of Sn4+. The 119Sn hfi parameters of rare-gas matrix-isolated SnX2 molecules differ from those measured in the crystallin compounds. This arise from the totally different coordination of tin in the two situations. The analysis of the hfi parameters using a simple bonding model yields information about the ionicity of the Sn-halogen bonds and the bonding angle in these molecules. The observed isomer shifts and quadrupole interactions can only be explained in this model with a bonding angle θ = 95° ± 2° for all SnX2 molecules and a slight increase of θ from Sn12 to SnF2.  相似文献   

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Redetermination of the Crystal Structures of the Hexahydroxometallates Na2Sn(OH)6, K2Sn(OH)6, and K2Pb(OH)6 Slow cooling down of hot saturated hydroxo stannate‐ resp. ‐plumbate solutions gives crystals of Na2Sn(OH)6, K2Sn(OH)6, and K2Pb(OH)6 well suited for an X‐ray structure determination. With these crystals the so far known crystal data were verified, determined more precisely and H‐positions found for the first time. The compounds crystallize rhombohedral in the space group R 3. The hexagonal unit cells contain three formula units with Na2Sn(OH)6: a = 5.951(1) Å, c = 14.191(2) Å, c/a = 2.384 K2Sn(OH)6: a = 6.541(1) Å, c = 12.813(4) Å, c/a = 1.959 K2Pb(OH)6: a = 6.625(1) Å, c = 12.998(2) Å, c/a = 1.962 The compounds are not isotypic whereas the atoms occupy in all three cases the same Wyckoff positions. Na2Sn(OH)6 has with an hcp packing of O a CdI2 like superstructure with Na and Sn in octahedral interstices. Hydrogen bonds O–H…O–H play a role in solid K2Sn(OH)6 and K2Pb(OH)6. In these compounds the potassium ions are shifted from an octahedral coordination in an hcp packing of O. They have nine nearest O‐neighbours. The hydrogen bonds are investigated by Raman spectroscopy.  相似文献   

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During an investigation of the phase equilibria in the ternary system Ni/P/Sn, the existence of a new phase Ni21Sn2P6 with a composition close to the known Ni10P3Sn phase was found. The crystal structure of the new phase was determined using single crystal X‐ray diffraction. The structure was solved employing Patterson and Difference Fourier Analysis. Ni21P6Sn2 (space group , a = 1112.2 pm) crystallizes in an ordered variant of the C6Cr23 structure common to many carbides, borides and phosphides. The relation between Ni21Sn2P6 and other C6Cr23 type phases and to Ni10P3Sn was established.  相似文献   

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