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1.
Single crystals of Sb2−xFexTe3 (cFe=0-9.5×1019 cm−3) were prepared by Bridgman method. The interpretation of the reflection spectra in plasma resonance region indicates that Fe increases the concentration of holes (acceptor) and each Fe atom incorporated in Sb2Te3 structure liberates 0.4-0.5 hole. Observed effect is elucidated by means of point defect model. According to the model Fe atoms enter the structure and form uncharged substitutional defects . Since this defect cannot affect the free-carrier concentration directly, we assume an interaction of the entering Fe-atoms with natives defects leading to a rise in the concentration of antisite defects , to a decrease of concentration, and to an increase in the concentration of holes.  相似文献   

2.
The ternary rare-earth cadmium antimonides RECd1−xSb2 (RE=La, Ce, Pr, Nd, Sm) were prepared by reaction of the elements at 1000 °C. The presence of Cd defects, previously found for LaCd0.700(5)Sb2 and CeCd0.660(4)Sb2, has been confirmed by single-crystal X-ray diffraction studies for the isotypic compounds PrCd0.665(3)Sb2, ), NdCd0.659(3)Sb2, ), and SmCd0.648(3)Sb2, ). These compounds adopt the HfCuSi2-type structure (Pearson symbol tP8, space group P4/nmm, Z=2). The electrical and magnetic properties of samples with nominal composition RECd0.7Sb2 were investigated. All exhibit metallic behaviour, but CeCd0.7Sb2 undergoes an abrupt drop in its electrical resistivity below 3 K. LaCd0.7Sb2 exhibits temperature-independent Pauli paramagnetism and SmCd0.7Sb2 displays van Vleck paramagnetism. The remaining compounds obey the modified Curie-Weiss law at high temperatures. CeCd0.7Sb2 undergoes ferromagnetic ordering below 3 K, reaching a saturation magnetization of ∼1.0 μB, whereas PrCd0.7Sb2 and NdCd0.7Sb2 remain paramagnetic down to 2 K.  相似文献   

3.
The two families of intermetallic phases REAuAl4Ge2 (1) (RE=Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Er, Tm and Yb) and REAuAl4(AuxGe1−x)2 (2) (x=0.4) (RE=Ce and Eu) were obtained by the reactive combination of RE, Au and Ge in liquid aluminum. The structure of (1) adopts the space group R-3m (CeAuAl4Ge2, , ; NdAuAl4Ge2, , ; GdAuAl4Ge2, , ; ErAuAl4Ge2, , ). The structure of (2) adopts the tetragonal space group P4/mmm with lattice parameters: , for EuAuAl4(AuxGe1−x)2 (x=0.4). Both structure types present slabs of “AuAl4Ge2” or “AuAl4(AuxGe1−x)2” stacking along the c-axis with layers of RE atoms in between. Magnetic susceptibility measurements indicate that the RE atoms (except for Ce and Eu) possess magnetic moments consistent with +3 species. The Ce atoms in CeAuAl4Ge2 and CeAuAl4(AuxGe1−x)2 (x=0.4) appear to be in a mixed +3/+4 valence state; DyAuAl4Ge2 undergoes an antiferromagnetic transition at 11 K and below this temperature exhibits metamagnetic behavior. The Eu atoms in EuAuAl4(AuxGe1−x)2 (x=0.4) appear to be in a 2+ oxidation state.  相似文献   

4.
The structure of an Al3+ stabilized phase Li3−3xAlxBO3 (x≈0.18) was determined by means of single crystal X-ray diffraction. This phase crystallizes in space group P6122 or P6522, with lattice constants , and Z=6. The unit cell consists of six layers of BO3 groups with Li+ cations distributing statistically on five crystallographic sites, none of which is fully occupied. The Li sites are close to each other and a three-dimensional network results when Li sites only within 1.65 Å are connected. Significant ionic conductivity was observed for this phase.  相似文献   

5.
A novel three-dimensional compound of Na4Sb12Mo5O35 has been synthesized by hydrothermal methods and structurally characterized by X-ray crystallography. It crystallizes in the triclinic system space group with , , , α=94.59(3)°, β=112.68(3)°, γ=92.97(3)°, , Z=2, R1=0.0275, wR2=0.0984 for 7364 unique reflections with I>2σ(I). The molecular structure is built up of Mo6O21, MoO4 units, and cage-like units that contain 12 Sb atoms. IR, UV-Vis DRIS (Ultraviolet-Visible Diffuse Reflection Integral Spectrum), fluorescent spectra, and the thermogravimetric analysis of this compound were investigated.  相似文献   

6.
A new ternary phase, Mn4Ir7−xMnxGe6 (0?x?1.3), was studied by X-ray and neutron powder diffraction and SQUID magnetometry. The crystal structure is cubic, of the U4Re7Si6 type, space group , Z=2, with the lattice parameter at 295 K. Within the limited range of homogeneity small variations of the composition yield dramatic changes of the magnetic structure. For x=0 long-range antiferromagnetic order is formed below the transition temperature 228 K, with large magnetic moments on Mn, 4.11(9) μB at 10 K, in a magnetic unit cell , cM=2aC. In contrast, for x=1.3 spin glass behavior is observed below 90 K. The Mn atoms form an ideal cubic framework, on which geometric frustration of competing nearest and next nearest neighbor antiferromagnetic interactions is suggested to explain the composition sensitive magnetic properties. A TiNiSi-type phase, IrMnGe, is found in samples of 1:1:1 composition quenched from the melt.  相似文献   

7.
Synchrotron X-ray and neutron powder diffraction were used to investigate the formation, structure and bonding in the double perovskite Ba2−xSrxTbIrO6 solid solutions. The results showed that these oxides all exhibit ordering of the Tb and Ir cations in a double perovskite-type structure. Three distinct structural types differing in symmetry and/or valence states were formed depending on the precise Ba:Sr ratio on the perovskite A site; x?0.3 cubic () with Tb4+ and Ir4+; 0.4?x?1.0 cubic () with Tb3+ and Ir5+ and x?1.2 monoclinic (P21/n) with Tb3+ and Ir5+. The transitions between these appear to be first order in nature.  相似文献   

8.
A new solid solution of the quasi-one-dimensional composite crystal, , has been synthesized under of O2 at 830°C. The non-doped compound Ca0.83CuO2 consists of two interpenetrating monoclinic subsystems of the [Ca] atoms and the edge-shared square planar [CuO2] chains. Upon increasing x, both the subsystems undergo a phase change from monoclinic to orthorhombic (M-O). The M-O change occurs at x∼0.04 for the [(Cu,Co)O2] subsystem, while such a change occurs at x∼0.17 for the [Ca] subsystem. Magnetic susceptibility measurements show an evolution from a short-range ordered state near x=0 to a long-range antiferromagnetic state for the samples with x?0.15. The effective magnetic moment μeff is found to increase with increasing x from for x=0.10 to for x=0.30, suggesting that the solid solution can be regarded as Ca0.83[Cu0.662+Cu0.34−x3+Cox3+]O2, in which a mixed state of Cu2+(S=1/2), Cu3+(S=0) and high-spin Co3+(S=2) ions is realized.  相似文献   

9.
The crystal structures of NaK2B9O15 (, , , β=94.080(1)°, Rp=0.047, Rwp=0.059, RB=0.026), Na(Na.17K.83)2B9O15 (, , , β=94.228(2)°, Rp=0.053, Rwp=0.068, RB=0.026), and (Na.80K.20)K2B9O15 (, , , β=94.071(1)°, Z=4, Rp=0.041, Rwp=0.052, RB=0.023) were refined in the monoclinic space groups P21/c(Z=4) using X-ray powder diffraction data and the Rietveld method. These nonaborates are isostructural to K3B9O15. Their crystal structure consists of a three-dimensional open framework built up from three crystallographically independent triborate groups. The alkali metal cations are located on three different sites in the voids of the framework. High-temperature X-ray diffraction studies show that NaK2B9O15 decomposes at about 700 °C in accordance with the peritectic reaction NaK2B9O15↔K5B19O31+liquid. The thermal expansion of NaK2B9O15 and Na(Na.17K.83)2B9O15 is highly anisotropic. A similarity of the thermal and compositional (Na-K substitution) deformations of NaK2B9O15 is revealed: heating of NaK2B9O15 by 1 °C leads to the same deformations of the crystal structure as increasing the amount of K atoms in (Na1−xKx)3B9O15 by 0.04 at% K.  相似文献   

10.
11.
Three manganese oxalates have been hydrothermally synthesized, and their structures determined by single-crystal X-ray diffraction. MnC2O4·2H2O (I) is orthorhombic, P212121, , , , , Z=4, final R, Rw=0.0832, 0.1017 for 561 observed data (I>3σ(I)). The one-dimensional structure consists of chains of oxalate-bridged manganese centers. [C4H8(NH2)2][Mn2(C2O4)3] (II) is triclinic, , , , , α=81.489(2)°, β=81.045(2)°, γ=86.076(2)°, , Z=1, final R, Rw=0.0467, 0.0596 for 1773 observed data (I > 3σ (I)). The three-dimensional framework is constructed from seven coordinate manganese and oxalate anions. The material contains extra-framework diprotonated piperazine cations. Mn2(C2O4)(OH)2 (III) is monoclinic, P21/c, , , , β=91.10(3)°, , Z=1, final R1, wR2=0.0710, 0.1378 for 268 observed data (I>2σ (I)). The structure is also three dimensional, with layers of MnO6 octahedra pillared by oxalate anions. The hydroxide group is found bonded to three manganese centers resulting in a four coordinate oxygen.  相似文献   

12.
The structures of eight members of the series Sr1−xCexMnO3 with 0.075?x?0.4 have been established using synchrotron X-ray powder diffraction. These exhibit the sequence of structures
  相似文献   

13.
The crystal structures of the title compounds were solved using the single-crystal X-ray diffraction technique. At room temperature CsKSO4Te(OH)6 was found to crystallize in the monoclinic system with Pn space group and lattice parameters: ; ; ; β=106.53(2)°; ; Z=4 and . The structural refinement has led to a reliability factor of R1=0.0284 (wR2=0.064) for 7577 independent reflections. Rb1.25K0.75SO4Te(OH)6 material possesses a monoclinic structure with space group P21/a and cell parameters: ; ; ; β=106.860(10)°; ; Z=4 and . The residuals are R1=0.0297 and wR2=0.0776 for 3336 independent reflections. The main interest of these structures is the presence of two different and independent anionic groups (TeO66− and SO42−) in the same crystal.Complex impedance measurements (Z*=ZiZ) have been undertaken in the frequency and temperature ranges 20-106 Hz and 400-600 K, respectively. The dielectric relaxation is studied in the complex modulus formalism M*.  相似文献   

14.
The hydrothermal synthesis and single crystal structure of Zn3(HPO3)4·Zn(H2O)6 are reported. The structure is built-up from vertex linking ZnO4 tetrahedral and HPO3 pseudo-pyramids units, giving rise to a three-dimensional framework with large 8, 16-membered ring channels. The zincophosphite is purly inorganic with the octahedral zinc complex filled in the channel. The synthesis of system required the presence of the organic amine which is not incorporated into the structure of the product. The framework-metal complex encapsulating in the channel is the first time appeared in open-framework zincophospates and zincophosphites. Crystal data: Zn3(HPO3)4·Zn(H2O)6, M=689.52, orthorhombic, Fddd (No. 70), , , , , Z=8, , , R=0.0265, Rw=0.0406.  相似文献   

15.
The crystal structures of new sodium vanadylphosphate, Na4.35VO(PO4)2 (, , , Z=8, S.G. Ibam), and new (γ-) modification of Na4VO(PO4)2 (, , , Z=8, S.G. Pbc21) have been investigated by X-ray single-crystal diffraction. Both structures contain isolated infinite chains of the corner-sharing VO6 octahedra. The octahedra within the chains are additionally linked to each other by the tetrahedral PO4 groups. Sodium atoms are situated in the positions between the chains. Depending on the conditions of synthesis, the number of sodium atoms in the unit cell of the Na4+xVO(PO4)2 compounds may vary resulting in a change of the oxidation state of vanadium atoms and a change of their coordination environment. In Na4.35VO(PO4)2 vanadium atoms have almost regular octahedral coordination with six close V-O separations and all chains in the structure are equivalent. The crystal structure of γ-Na4VO(PO4)2 contains two non-equivalent chain types: the first one is similar to that found in Na4.35VO(PO4)2 whereas the second one contains VO6 octahedra with the short vanadyl bonds. The charge re-distribution was supposed in the new γ-modification of Na4VO(PO4)2 where the V4+δ and V4−δ cations orderly occupy octahedral positions in different chains. The origin of this phenomena is discussed.  相似文献   

16.
The new compound CuSb2O3Br crystallize in the monoclinic space group Cc. The unit cell parameters are , , , β=90°, Z=16. The crystal structure is solved from single crystal data, R=0.0490. The compound show a layered structure with slabs from cubic Sb2O3 interspersed in between puckered layers of CuBr. The Sb(III) atoms have tetrahedral [SbO3E] coordination where E is the 5s2 lone pair, these units build up Sb4O4E6 cages. The CuBr layers resemble those in hexagonal CuBr but the Cu(I) ions have actually tetrahedral [CuBr3O] coordination. The Cu-O bonds link the Sb4O6 cages with the CuBr layers.  相似文献   

17.
The crystal structure of a complex molybdenum oxide Ag1/8Pr5/8MoO4 is reported. The Ag1/8Pr5/8MoO4 sub-structure can be described on the base of the scheelite (CaWO4) structure. Transmission electron microscopy reveals that the real structure is better described in a (3+1)D formalism. According to electron diffraction study the new scheelite-type complex oxide Ag1/8Pr5/8MoO4 crystallizes in the B2/b(αβ0)00 (3+1)D superspace group with unit cell parameters , , and γ≈135° (Z=4) and modulation vector q=0.56a*+0.59b*. The structure of Ag1/8Pr5/8MoO4 is refined from X-ray powder data in the scheelite setting I2/b(αβ0) with , , q=1.14690(14)a*+0.58921(12)b* with fixed γ=90° angle (Rp=0.033, R=0.033, Rm=0.029, R1=0.047, S=1.36). Displacement modulations apply for all atoms. The occupancy modulation shows that one-fourth of the Ag/Pr atoms are absent. The structure can be considered as a crystallographic shear structure with incommensurate ordering of vacancies and displacement modulations for all atoms. The arrangement of Ag/Pr atoms and vacancies is at the origin of the incommensurate modulation in the cation-deficient Ag1/8Pr5/8MoO4 phase.  相似文献   

18.
Three new hydrated scandium selenites have been hydrothermally synthesized as single crystals and structurally and physically characterized. Sc2(SeO3)3·H2O crystallizes as a new structure type containing novel ScO7 pentagonal bipyramidal and ScO6+1 capped octahedral coordination polyhedra. Sc2(SeO3)3·3H2O contains typical ScO6 octahedra and is isostructural with its M2(SeO3)3·3H2O (M=Al, Cr, Fe, Ga) congeners. CsSc3(SeO3)4(HSeO3)2·2H2O contains near-regular ScO6 octahedra and has essentially the same structure as its indium-containing analogue. All three phases contain the expected pyramidal [SeO3]2- selenite groups. Crystal data: Sc2(SeO3)3·3H2O, Mr=524.85, trigonal, R3c (No. 161), , , , Z=6, R(F)=0.018, wR(F2)=0.036; Sc2(SeO3)3·H2O, Mr=488.82, orthorhombic, P212121 (No. 19), , , , , Z=4, R(F)=0.051, wR(F2)=0.086; CsSc3(SeO3)4(HSeO3)2·2H2O, Mr=1067.60, orthorhombic, Pnma (No. 62), , , , , Z=4, R(F)=0.035, wR(F2)=0.070.  相似文献   

19.
Two new antimony based intermetallic phases, Ca8.63(5)Sr2.37Sb10(1) and Ca3.66(7)Sr7.34Sb10(2), crystallizing in Ho11Ge10 structure type (tetragonal, I4/mmm) have been synthesized and characterized. Although both Ca11Sb10 and Sr11Sb10 are known to be isostructural (Ho11Ge10 structure type) and hence all Ca sites should be accessible to Sr as well, it appears that certain sites are preferentially ordered by Ca in the mixed (Ca/Sr)11Sb10 compounds reported here. The crystal structure of Ca8.63(5)Sr2.37Sb10 and Ca3.66(7)Sr7.34Sb10 has been solved from single crystal X-ray data using direct methods and refined using full-matrix least-squares method. The structure can be described as bonded network of A-Sb (A=Ca, Sr) with Sb existing as isolated Sb3−, diantimony and square units. Simple valence electron count reveals these compounds to be Zintl phases. It is found that the larger Sr or Sr/Ca ions preferentially occupy sites that are closer to the diantimony anions as compared to the smaller Ca ions.  相似文献   

20.
Novel complex oxides Ca14Zn6Ga10O35 and Ca14Zn5.5Ga10.5O35.25 were prepared in air at 1200 °C, 72 h. Refinements of their crystal structures using X-ray powder diffraction data showed that Ca14Zn6Ga10O35 is ordered (S.G. F23, =0.0458, Rp=0.0485, Rwp=0.0659, χ2=1.88) and Ca14Zn5.5Ga10.5O35.25 disordered (S.G. F432, =0.0346, Rp=0.0601, Rwp=0.0794, χ2=2.82) variants of the crystal structure of Ca14Zn6Al10O35. In the crystal structure of Ca14Zn6Ga10O35, there are large empty voids, which could be partially occupied by additional oxygen atoms upon substitution of Zn2+ by Ga3+ as in Ca14Zn5.5Ga10.5O35.25. These oxygen atoms are introduced into the crystal structure of Ca14Zn5.5Ga10.5O35.25 only as a part of four tetrahedra (Zn, Ga)O4 groups sharing common vertex. This creates a situation where even a minor change in the chemical composition leads to considerable anion and cation disordering resulting in a change of space group from F23 (no. 196) to F432 (no. 209).  相似文献   

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