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1.
The crystal structures of the Ag4HgGe2S7 and Ag4CdGe2S7 compounds were investigated using X-ray powder diffraction. These compounds crystallize in the monoclinic Cc space group with the lattice parameters a=1.74546(8), b=0.68093(2), c=1.05342(3) nm, β=93.398(3)° for Ag4HgGe2S7 and a=1.74364(8), b=0.68334(3), c=1.05350(4) nm, β=93.589(3)° for Ag4CdGe2S7. Atomic parameters were refined in the isotropic approximation (RI=0.0761 and RI=0.0727, respectively).  相似文献   

2.
A novel molybdenum diphosphate, Mo1.3O(P2O7), was obtained by electrochemical lithium deintercalation. The diphosphate crystallises in space group I2/a with the lattice parameters a=22.88(1), b=22.94(2), c=4.832(1) Å, γ=90.36°, Z=8. Its original framework is built up from MoO6 octahedra, P2O7 groups and also from MoO4, Mo2O4 and Mo3O8 units containing Mo2 and Mo3 clusters. These polyhedra delimit large octagonal and z-shaped tunnels running along c, in which the inserted cations may be located.  相似文献   

3.
The subsolidus phase relations in the SrO–Ga2O3–B2O3 system were investigated. The system contains 10 binary compounds and two ternary compounds, and can be divided into 15 three-phase regions. The new ternary compound SrGaBO4 has two modifications (- and β-phases), both of which crystallize in the orthorhombic system but with different space groups.  相似文献   

4.
Our searches for new oxide chalcogenides of rare earths and Fe, Co, Ni, and Zn resulted in preparation of two new compounds Ce2Fe2O3S2 and Pr2Fe2O3S2 which are isostructural to La2Fe2O3Se2 and Sm2Ti2O3Sb2. Crystal structures of the new compounds Ce2Fe2O3S2 and Pr2Fe2O3S2 were determined from powder X-ray diffraction data. Magnetic measurements were performed for Ce2Fe2O3S2 and revealed behavior very similar to that of isostructural oxide chalcogenides of iron and pnictides of titanium. In particular, no superconductivity was observed down to 4 K. Crystal chemical factors determining the stability of the La2Fe2O3Se2 structure type are discussed.  相似文献   

5.
Investigations of phase relations in the Ba-rich part of the In2O3–BaO(CO2)–CuO pseudo-ternary system at 900 °C have revealed the existence of new indium–copper oxycarbonate – Ba4In0.8Cu1.6(CO3)0.6O6.2. Rietveld refinement of the X-ray powder diffraction data combined with infrared studies gives evidence that this phase is a oxycarbonate crystallising in the tetragonal structure (space group I4/mmm) with unit cell parameters: a=4.0349(1) Å and c=29.8408(15) Å. In the binary part of the In2O3–BaO(CO2) system we have identified the occurrence of Ba4In2−x(CO3)1+xO6−2.5x oxycarbonate solid solution showing a crystal structure also described by I4/mmm space group, but with the unit cell parameters: a=4.1669(1) Å and c=29.3841(11) Å for x=1. The existence range of this phase, −0.153<x<0.4, includes chemical compositions of earlier found phases: Ba5In2+xO8+0.5x with 0≤x≤0.45 (known as the -solid solution), as well as the binary Ba4In2O7 phase. The crystal structures of both new oxycarbonates are isomorphic and related to n=3 member of the Ruddlesden–Popper family.  相似文献   

6.
Magnetic BaxFe3−xO4 (x  0.23) with spinel structure was fabricated by ball milling of mixture of BaCO3 and nonmagnetic α-Fe2O3 powders, and the molar ratio of BaCO3 and α-Fe2O3 is 1:6. In the milling process, a mechanochemical reaction took place between BaCO3 and α-Fe2O3, and Ba cation incorporated into α-Fe2O3 with rhombohedral structure to form a α-(Fe,Ba)2O3 solid solution. The Ba content in the α-(Fe,Ba)2O3 increased with increasing milling time, when the Ba content exceeded a limited solubility, the α-(Fe,Ba)2O3 transformed into a phase of BaxFe3−xO4 with spinel structure, where the Ba cation occupied an octahedral site or tetrahedral site. The product obtained in the balling process was different from that prepared in the annealing process at atmospheric pressure, which was BaFe2O4 with orthorhombic structure. Accompanying the crystal structure transition from α-(Fe,Ba)2O3 to BaxFe3−xO4, the magnetic properties also changed from nonmagnetism into ferromagnetism. The saturation magnetization was 53.3 emu/g and coercivity was 113.7 Oe. The mechanism of transitions of the crystal structure was discussed in the present work.  相似文献   

7.
A new langasite type single crystal Ca3NbGa3Si2O14 (CNGS) was grown by Czochralski (CZ) method. The structure of CNGS crystal was determined by X-ray powder diffraction, the lattice parameters were a=0.8087 ± 0.0001 nm, c=0.4974 ± 0.0002 nm, V=0.2817 ± 0.0002 nm3; The congruency of CNGS was examined by measuring the chemical composition of the grown crystal by quantitative X-ray fluorescent (XRF) analysis. The melting point of CNGS crystal was measured by using the differential scanning calorimetry (DSC). Dielectric properties of (1 1 0) wafer plate were studied in the temperature range from 298.15 to 873.15 K; the frequency dependence of dielectric loss in the frequency range 10 Hz–13 MHz was measured.  相似文献   

8.
Yb3+ absorption and fluorescent emissions were investigated for NaYbP2O7 diphosphate single crystals. The interpretation of electronic energy level positions has been done by using the comparison of absorption and emission spectra with those of vibronic sideband energy positions from Raman and IR absorption spectroscopies. The Yb3+ energy levels scheme in this host was drawn. The decay time for infrared Yb3+ (5F5/2 excited state) fluorescence was in the range of 1–2 ms. The interest feature is leading to broad emission band at room temperature from 940 nm to 1100 nm, which seems of high interest for ultra-short laser pulse production.  相似文献   

9.
Crystals of Ba3NaRu2O9−δ (δ≈0.5) and Ba3(Na, R)Ru2O9−δ (R=Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm and Yb) were grown by an electrochemical method, and their crystallographic, magnetic, and electric properties were studied. All crystals have a hexagonal structure of space group P63mmc. Ba3NaRu2O9−δ and Ba3(Na, R)Ru2O9−δ (except Ce) have a negative asymptotic Curie temperature suggesting the existence of an antiferromagnetic order; however, they are paramagnetic at temperatures above 1.7 K. Ba3NaRu2O9−δ has an effective magnetic moment Peff of 0.91 μB, while Peff of Ba3(Na, R)Ru2O9−δ (except Ce) reflects the large free-ion moment of the rare earth ions. Ba3(Na, Ce)Ru2O9−δ shows peculiar magnetic behavior that differs from the magnetism of other Ba3(Na, R)Ru2O9−δ crystals. The resistivity of all crystals exhibits an activation-type temperature dependence with an activation energy in the range of 0.10.2 eV.  相似文献   

10.
Mg0.4Al2.4O4 single crystals with good optical quality were successfully grown by the Czochralski method. The transmission spectrum indicated that the absorption edge of the crystal was at 220 nm, while no apparent absorption peaks were found. The X-ray diffraction and DSC curve analysis showed that Mg0.4Al2.4O4 crystal was stable at room temperature. While after annealing in the air and hydrogen atmosphere at about 1200 °C, Mg0.4Al2.4O4 decomposed into Al2O3 and (MgO)0.4(Al2O3)x (0.4 < x < 1.2). The reaction mainly occurred on the crystal surface, barely inside.  相似文献   

11.
The crystal structure of the R3Ag1−δSiS7 (R = La, Ce, Pr, Nd, Sm, δ = 0.10–0.23, space group P63, Pearson symbol hP23.80 − 23.54) compounds were determined by means of X-ray single crystal diffraction (a = 1.04168(8) nm, c = 0.57825(4) nm, R1 = 0.0116 for La3Ag0.90SiS7; a = 1.0312(1) nm, c = 0.57395(7) nm, R1 = 0.0152 for Ce3Ag0.82SiS7; a = 1.0248(1) nm, c = 0.57223(5) nm, R1 = 0.0105 for Pr3Ag0.85SiS7; a = 1.0192(1) nm, c = 0.57020(6) nm, R1 = 0.0292 for Nd3Ag0.81SiS7, a = 1.0100(1) nm, c = 0.56643(6) nm, R1 = 0.0208 for Sm3Ag0.77SiS7. Gradual decrease of the silver amount in the series of chalcogenides was found.  相似文献   

12.
The La1−xKxCo1−xNbxO3 system was performed by conventional solid state reaction technique using metal oxides. By DSC analysis, the activation energy of crystallization of the powders with x = 0.3 is 388.4 kJ/mol. The crystal structure of the compound reveals a transition from rhombohedral to cubic, and then to orthorhombic structure as the amount of the potassium niobate (KNbO3) increases. It is found that the structure of the samples with x < 0.3 is similar to that of lanthanum cobaltate (LaCoO3), while at the compositions with 0.7 ≥ x ≥ 0.3, the structure transforms to cubic. Finally, with x ≥ 0.7, the structures were similar to that of KNbO3. According to the results of selected-area-diffraction (SAD) patterns and X-ray diffraction (XRD) identifications, the lattice parameters were calculated. The direction of superlattice structure along [2 1 0] was found for x = 0.5 as identified from SAD patterns. The dielectric constants were measured with cubic structure. Dielectric constant (K) decreases with increasing x.  相似文献   

13.
We present structural and magnetic data on ZnV2O4 single crystals. Single crystal X-ray diffraction shows the measured crystals to be of very high quality, especially with respect to atomic order. The measured magnetic susceptibility resembles to that of a spin glass system, surprising for a translational invariant structure. The results are discussed in the framework of disorder in a magnetically frustrated lattice.  相似文献   

14.
The structural and magnetic properties of doubly substituted Nd2Fe17−xyTixGay (0  x  1.0, 0  y  3) compounds have been investigated by a combined technique of X-ray diffraction, neutron diffraction and magnetic measurements. Rietveld refinements of the diffraction data indicate that all the samples crystallize in the rhombohedral Th2Zn17-type structure. For a given Ti content (x), the lattice parameters a and c, and unit cell volume V of Nd2Fe17−xyTixGay all increase linearly with increasing Ga content. The addition of Ti initially has a considerably positive effect on the increasing rates of a, c, and unit cell volume V, but later the effect becomes very slight and even negative with the further increase of Ti content. The site occupancies of Ti and Ga in the crystallographic sites change a little compared to what is observed in the corresponding singly substituted compounds. The effects of Ti and Ga on the bond lengths of the doubly substituted compounds are quite different from that of the singly substituted compounds. Magnetic measurements show the TC of Nd2Fe17−xyTixGay increases with increasing Ti content for a low Ga content while it behaves conversely for a higher Ga content. The TC of Nd2Fe17−xyTixGay increases with increasing Ga content for a particular Ti content, while the addition of Ti results in a slower increase of TC on the Ga content (y  3). For a given Ti content, the Ms of Nd2Fe17−xyTixGay first increases a little and then decreases with the increase of Ga content, while for a given Ga content the Ms of Nd2Fe17−xyTixGay decreases with the increase of Ti content.  相似文献   

15.
The copper borate Li2Pb2CuB4O10 has been synthesized in air by the standard solid-state reaction at temperature in the range 550-650 °C and the structure of Li2Pb2CuB4O10 was determined by single-crystal X-ray diffraction. Li2Pb2CuB4O10 crystallizes in the monoclinic space group C2/c (no. 15) with a = 16.8419(12), b = 4.7895(4), c = 13.8976(10) Å, and β = 125.3620(10)°, V = 914.22(12) Å3, and Z = 4, as determined by single-crystal X-ray diffraction. The Li2Pb2CuB4O10 structure exhibits isolated units of stoichiometry [CuB4O10]6− that are built from CuO4 distorted square planes and triangular BO3 groups. The IR spectroscopy and thermal analysis investigations of Li2Pb2CuB4O10 are also presented.  相似文献   

16.
La3M4+Ga5O14 (M=Ti, Zr, Hf) compounds were crystallized using the micro-pulling down and Czochralski techniques. Both growth methods showed that these three crystals are peritectic compounds. The structure of La3TiGa5O14 (LTiG) crystal was refined using single-crystal X-ray diffraction data. LTiG was observed to be isostructural to Ca3Ga2Ge4O14 (P321 (No.150), Z=1) and the lattice parameters are a=8.223(1), c=5.109(1) Å. The Ti atoms were found to occupy octahedral (1a) and tetrahedral (3f) sites coordinated by six and four oxygen atoms, respectively.  相似文献   

17.
We report the crystal structure and magnetic properties of new ternary actinide compounds UPd5Al2 and NpPd5Al2. Both compounds crystallize in the body-centered tetragonal ZrNi2Al5-type tetragonal structure (I 4/mmm). Although the magnetic susceptibility of both compounds follows the Curie–Weiss behavior at high temperature, no magnetic phase transition was observed. UPd5Al2 has a nonmagnetic ground state where the magnetic susceptibility saturates at low temperature, while NpPd5Al2 superconducts below 4.9 K as reported recently.  相似文献   

18.
Single crystals of Cu2Zn/Cd/SnSe4 were grown using a solution-fusion method. The crystal structure of the Cu2Zn/Cd,Hg/SnSe4 compounds were investigated using X-ray powder diffraction. These compounds crystallize in the stannite structure (space group I 2m) with the lattice parameters: a=0.56882(9), c=1.13378(9) nm, c/a=1.993 (Cu2ZnSnSe4), a=0.58337(2), c=1.14039(4) nm, c/a=1.955 (Cu2CdSnSe4) and a=0.58288(1), c=1.14179(2) nm, c/a=1.959 (Cu2HgSnSe4). Atomic parameters were refined in the isotropic approximation (RI=0.0517, RI=0.0511 and RI=0.0695 for Cu2ZnSnSe4, Cu2CdSnSe4 and Cu2HgSnSe4, respectively).  相似文献   

19.
By means of synchrotron X-ray powder diffraction (SXPD) and Raman spectroscopy, we have detected, in a series of nanocrystalline and compositionally homogeneous ZrO2-Y2O3 solid solutions, the presence at room temperature of three different phases depending on Y2O3 content, namely two tetragonal forms and the cubic phase. The studied materials, with average crystallite sizes within the range 7-10 nm, were synthesized by a nitrate-citrate gel-combustion process. The crystal structure of these phases was also investigated by SXPD. The results presented here indicate that the studied nanocrystalline ZrO2-Y2O3 solid solutions exhibit the same phases reported in the literature for compositionally homogeneous materials containing larger (micro)crystals. The compositional boundaries between both tetragonal forms and between tetragonal and cubic phases were also determined.  相似文献   

20.
The crystal structure of sodium pentamolybdyl tetradiphosphate Nax(MoO)5(P2O7)4 has been determined from synchrotron diffraction data collected at 293 K on two microcrystals. The compound crystallizes in a monoclinic space group I 1 1 2/a (no. 15, setting 11), with unit cell parameters a = 22.905(3), b = 23.069(2), c = 4.8537(2) Å, γ = 90.641(9)° and a = 22.898(3), b = 23.056(2), c = 4.8551(2) Å, γ = 90.82(1)°, for crystals I and II, respectively. The structure is pseudo-tetragonal, and the crystals are pseudo-merohedrally twinned by 90° rotation around the c-axis. The structure closely resembles the previously reported Li-deintercalated Mo1.3OP2O7 [V.V. Lisnyak, N.V. Stus, P. Popovich, D.A. Stratiychuk, Ya. Filinchuk, V.M. Davydov, J. Alloys Compd. 360 (2003) 81–84]. Comparison of the two structures led us to conclude that the Mo2 and Mo3 clusters were erroneously identified in Mo1.3OP2O7. A revised structure of Mo1.3OP2O7 contains a fully occupied oxygen site instead of the 16% occupied Mo(2) site, thus the revised formulae for the Li-deintercalated compound is (MoO)5(P2O7)4. In both structures, the (MoO)5(P2O7)4 framework strongly resembles the one in the earlier reported Ag(MoO)5(P2O7)4, while the location of Na and Ag atoms differ.  相似文献   

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