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1.
The ternary system La2O3–K2O–P2O5 has been examined by thermal, X-ray, IR and microscopic methods. The existence of three double potassium-lanthanum phosphates, K3La(PO4)2, KLa(PO3)4 and K2La(PO3)5 has been confirmed, and the phase diagram of the ternary system La2O3–K2O–P2O5 over the composition range LaPO4–K3PO4–P2O5 has been determined. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

2.
Zusammenfassung Die Systeme GeO2–Na2O, –K2O und –Rb2O werden röntgenographisch und differentialthermoanalytisch untersucht. Die früher beschriebene Verbindung Na2Ge4O9 (I) erweist sich als identisch mit dem vonJ. F. White und Mitarbeitern angegebenen Na4Ge9O20. Von der dargestellten isotypen Kalium-Verbindung werden die Gitterkonstanten ermittelt. Im analogen Rubidium-System läßt sich ein isotypes Enneagermanat bisher nicht nachweisen. Einkristallaufnahmen von Natriumtetragermanat [Na2Ge4O9 (II)] ergeben eine hexagonale Elementarzelle mit 6 Formeleinheiten Na2Ge4O9. Ebenso werden von den isotypen Kalium-und Rubidiumtetragermanaten die Gitterparameter bestimmt. Im Natrium-System stellt offensichtlich das Enneagermanat die stabile Phase dar, während das Tetragermanat nur durch rasches Abkühlen aus der Schmelze erhalten wird. Bei den Kaliumgermanaten ist dagegen das Tetragermanat die stabile Phase.Mit 2 Abbildungen  相似文献   

3.
A phase equilibria diagram of the partial system NdPO4–K3PO4–KPO3 has been developed as part of the research aimed at determining the phase equilibrium relationships in the oxide system Nd2O3–K2O–P2O5. The investigations were conducted using thermoanalytical techniques, X-ray powder diffraction analysis and reflected-light microscopy. Three isopleths existing between: K3Nd(PO4)2–K4P2O7, NdPO4–K5P3O10 and NdPO4–K4P2O7 have been identified in the partial NdPO4–K3PO4–KPO3 system. Previously unknown potassium-neodymium phosphate “K4Nd2P4O15” has been discovered in the latter isopleth section. This phosphate exists in the solid phase up to a temperature of 890 °C at which it decomposes into the parent phosphates NdPO4 and K4P2O7. Four invariant points: two quasi-ternary eutectics, E1 (1057 °C) and E2 (580 °C) and two quasi-ternary peritectics, P1 (1078 °C) and P2 (610 °C), occur in the NdPO4–K3PO4–KPO3 region.  相似文献   

4.
The pressure dependent Raman scattering in the potassium molybdenum oxide hydrate crystal, K2Mo2O7·H2O, was measured. The high pressure Raman study showed, that the compound remains in the triclinic structure within the 0.0–3.81 GPa range and undergoes a structural phase transition between 3.81 and 4.13 GPa. This particular phase transition is most likely connected with changes in the Raman spectrum, in which the number of modes associated originally with the stretching vibrations in the MoO5 and MoO6 units is increased. However, the phase at atmospheric pressure shows bands due to the presence of only one equivalent site, while in the high-pressure phase, two bands are associated with the stretching modes. Continuing the pressure evolution up to 17.04 GPa, two further phase transitions occurred in this crystal in the 6.3–8.1 GPa and the 12.3–14.0 GPa range, respectively. The Raman spectra measured at about 17.04 GPa presented a crystal structure, which experienced a pre-amorphization with a total loss of all lattice modes. This particular result is indicative that this material may have undergone a complete amorphization at pressures larger than 17.04 GPa. Then, the reversible character in the triclinic P-1 (Ci1) structure was recovered after releasing the pressure.  相似文献   

5.
It was earlier found from nuclear quadrupole resonance (NQR) measurements and computer modeling that -Bi2O3, Bi3O4Br and mixed oxides Bi2O3· 2Al2O3, Bi2O3· 2Ga2O3, Bi2O3· 3GeO2, and 2Bi2O3· 3GeO2exhibit local ordered magnetic fields from 30 to 200 G. It thus follows that these compounds are not diamagnets in a conventional sence of the word. With the aim of revealing previously unknown magnetic properties in bismuth(III) oxide-based Main Group element compounds, the mixed bismuth–boron oxides 2Bi2O3· B2O3, 3Bi2O3· 5B2O3, and Bi2O3· 3B2O3were prepared and studied using 209Bi NQR. The quadrupole interactions of the 209Bi nuclei and their electronic environment were studied, the crystallochemical features of the compounds were discussed, and the conformity of the 209Bi results to the X-ray structure data was verified. The preliminary tests in the field of a permanent magnet showed that the resonance intensities increase in external magnetic fields, indicating that a magnetism of unknown nature develops in the titled compounds. It was found reasonable to continue studies of the magnetic properties of these compounds using single-crystal 209Bi NQR in external magnetic fields.  相似文献   

6.
A systematic study of compound and solid-solution formation in the system Li2ONb2O5TiO2 has been made. Several solid-solution series, based on LiNbO3, LiNb3O8, Li2Nb28O71, Li2TiO3, phase M, Li2Ti3O7, and TiO2, have been characterized. In all cases, the principal solid-solution mechanism appears to involve stoichiometric formulae with constant overall cation content. One new phase, of approximate formula Li13TiNb5O21, has been prepared. A subsolidus phase diagram for the ternary system is presented.  相似文献   

7.
The phase equilibria established in the V2O5–MoO3–α-Sb2O4 system in the solid state in an air atmosphere were examined by using XRD and DTA methods. The obtained results allowed us to find that in this system a novel compound is formed involving three oxides. Its formula can be written as Sb3V2Mo3O21. The synthesis of this compound requires picking up the atmospheric oxygen. X-ray characteristics of this compound were determined and it was found that it melted incongruently at 740°C. The results obtained until now allow us to divide the investigated V2O5–MoO3–α-Sb2O4 system into five partial subsystems. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

8.
DTA and X-ray phase diffraction methods were used to construct a solidus area projection onto the component concentration triangle plane of the system Fe2 O3-V2 O5-WO3. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

9.
In a previous work (ref. 1) we observed important changes in the 1700–1400 cm−1 region of FTIR spectra in 2H2O solutions when 5′-GMP concentration increases. These changes can be attributed to the self-association of this mononucleotide. Recently, study of this process has been extended to other regions of the spectrum and to H2O solution. Fourier deconvolution has been employed in order to resolve the broad band into component bands. Differences have been observed between spectra in H2O and 2H2O for the same solute concentration. The possible causes of these differences are indicated.  相似文献   

10.
The kinetics of decomposition of hydrogen peroxide in the liquid phase of the ternary system LiOH-H2O2-H2O was studied in the presence the solid phase of Li2O2·H2O and without it. The main kinetic parameters of the processes studied were determined.  相似文献   

11.
DTA and XRD methods used to examine the Cr2O3–α-Sb2O4–MoO3 system have shown that a substitution solid solution of MoO3 in CrSbO4 is formed. A study of all the theoretically possible solid solution models has pointed to the fact that Mo6+ ions are incorporated into the CrSbO4 crystal lattice, in the place of Sb5+ ions and the compensation of redundant charges takes place through cation vacancies arising in an Sb5+ sub-lattice. The solubility limit for MoO3 in CrSbO4 does not exceed 25.00 mol%. CrSbO4(s.s.) is stable to ~1320°C. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

12.
Multiple bonds between boron and transition metals are known in many borylene (:BR) complexes via metal dπ→BR back-donation, despite the electron deficiency of boron. An electron-precise metal–boron triple bond was first observed in BiB2O [Bi≡B−B≡O] in which both boron atoms can be viewed as sp-hybridized and the [B−BO] fragment is isoelectronic to a carbyne (CR). To search for the first electron-precise transition-metal-boron triple-bond species, we have produced IrB2O and ReB2O and investigated them by photoelectron spectroscopy and quantum-chemical calculations. The results allow to elucidate the structures and bonding in the two clusters. We find IrB2O has a closed-shell bent structure (Cs, 1A′) with BO coordinated to an Ir≡B unit, (OB)Ir≡B, whereas ReB2O is linear (C∞v, 3Σ) with an electron-precise Re≡B triple bond, [Re≡B−B≡O]. The results suggest the intriguing possibility of synthesizing compounds with electron-precise M≡B triple bonds analogous to classical carbyne systems.  相似文献   

13.
The exfoliation-reduction of VOPO4·2H2O in l-butanol oriso-butanol alone, and in a l-butanol/ethanol oriso-butanol/ethanol mixture, were conducted. Although all precursors were composed of a lamellar compound with intercalated alcohol molecules, VOHPO4·0.5H2O was formed when the exfoliation-reduction process was carried out in the mixed alcohol. All precursors transformed to a single phase of (VO)2P2O7 under the reaction conditions forn-butane oxidation, but the crystallinity of (VO)2P2O7 was different. The catalyst synthesized iniso-butanol/ethanol was well crystalline (VO)2P2O7, and exhibited higher selectivity to maleic anhydride than that synthesized iniso-butanol alone for then-butane oxidation.  相似文献   

14.
15.
16.
The decomposition kinetics of peroxide products contained in the liquid phase of the LiOH-H2O2-H2O ternary system were studied, and the applicability of the solubility method to studying this system was demonstrated for hydrogen peroxide concentrations in the liquid phase from 2 to 6 wt % and temperatures of 21–33°C. The stabilizing influence of solid Li2O2 · H2O on hydrogen peroxide decomposition was demonstrated. The temperature and concentration boundaries of existence were determined for the Li2O2 · H2O phase, whose identity was verified by chemical analysis and qualitative X-ray powder diffraction analysis.  相似文献   

17.
18.
19.
Cross sections for the production of O 2 ? in charge transfer collisions of fast molecular hydrogen ions (H 2 + , D 2 + , H 3 + , and D 3 + of 10 to 140 keV kinetic energy) with O2 molecules have been determined by means of a time-of-flight mass spectrometer analysing the slow negative product ions from the collisions. Within the measuring accuracy equivelocity H 2 + and D 2 + ions have the same cross sections for the generation of O 2 ? . The projectile velocity dependence curve of the cross section passes through a broad maximum with a peak value of about 6.5×10?18 cm2 around the Bohr velocity (25 keV/u) before showing an asymptotic decrease still within the limited energy range under investigation that is in inverse proportion to the square of velocity. Throughout the examined energy range H 3 + ions yield a cross section which is about 1.4 times larger than that of H 2 + ions of the same velocity. The fragment ion O? has been found to appear with cross sections between 10?19 and 10?18 cm2 upon collisional excitation in the energy range under investigation, with ever decreasing intensity when the energy of the positive hydrogen ions, the proton included, was increased.  相似文献   

20.
《Comptes Rendus Chimie》2002,5(11):751-757
Glasses in the system Li2O–SnO–B2O3 system were prepared by a melt-quenching method. Thermal and viscous properties and local structure of these glasses were investigated. The SnO–B2O3 glasses exhibited relatively low glass-transition temperatures (Tg) around 350 °C and excellent thermal stability against crystallization. Viscosity measurements in the vicinity of Tg indicated that the glasses were considerably fragile compared to alkali borate glasses. Fraction of four-coordinated boron was maximized at the composition with 50 mol% SnO and that of nonbridging oxygen, which is not purely ionic in alkali borate systems but partially covalent, augmented with an increase in the SnO content. Correlation between glass properties and structure was discussed in the SnO–B2O3 binary system.  相似文献   

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