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1.
Инвентарный номер: нет.
   
   V 86


    Volkova, E. G.
    Synthesis and Morphology of Nanodimensional Structures of Vanadium Oxide Doped with Lithium / E. G. Volkova, V. L. Volkov, N. V. Podval'naya // Inorganic Materials. Aplied Research. - 2010. - vol. 1, № 1. - P. 54-56 : il. - Bibliogr. : p. 56 (7 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
НАНОСТРУКТУРЫ -- СИНТЕЗ -- ВАНАДИЙ -- ЛИТИЙ
Аннотация: Nanodimensional powders of lithium-doped vanadium oxide of the formula Li0.4V2O5 · H2O are produced under hydrothermal conditions by the templateless synthesis method at 180°C from LiVO3–VOSO4–H2O solutions at pH = 3. The structure of the rods and the tubes formed by this method is examined by an electron microscopy method. The rods (up to 3 μm long and 25–50 nm in diameter) and the tubes (20–50 nm in outer and 2–6 nm in inner diameter) are oriented in the [010] direction. The distance between the layers is 10.30 ± 0.08 Å and 10.29 Å according to X-ray and electron diffraction data, respectively

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2.
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   P 78


    Podval'naya, N. V.
    Hydrolytic Precipitation of Magnesium Polyvanadates in Vanadium (IV, V) Solutions / N. V. Podval'naya, V. L. Volkov // Russian Journal of Inorganic Chemistry. - 2010. - Vol. 55, № 2. - P305-311 : il. - Bibliogr. : p. 311 (19 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ПОЛИВАНАДАТ МАГНИЯ -- РАСТВОРЫ ВАНАДИЯ
Аннотация: The phase and chemical composition of precipitates formed in Mg(VO3)2–VOSO4–H2O system at initial pH from 1 to 7 and temperature from 80 to 90°C was studied. Polyvanadates of variable composition MgxV(4+)V(5+)12-y O31 – δ · nH2O (0.7 ≤ x ≤ 1.3, 1.2 ≤ y ≤ 2.4, 0.7 ≤ δ ≤ 1.4) were formed at pH from 1 to 4 and V4+/V5+ ratios from 0.43 to 9. Compounds with the general formula MgxV V O16 – δ. nH2O (0.7 ≤ x ≤ 0.65, y = 1.0, 0.8 ≤ δ ≤ 0.85) were formed at pH from 6.0 to 7.0 and V4+/V5+ ratios from 0.11 to 0.25. The maximum V4+ concentration (y = 2.4) in the precipitates was achieved at the VV4+/V5+ solution ratio of 1.0 and H = 3. The precipitates in solutions with pH 3 were formed only upon addition of VO2+ ions with the maximum rate at a V4+/V5+ ratio of 0.33. These processes were limited by second order reactions on the surface of polyvanadates

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3.
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   B 17


    Bakhteeva, Yu. A.
    Gas-Sensing Properties of Nanostructured MxV2O5 (M = Na, K, Rb, Cs) Oxides / Yu. A. Bakhteeva, N. V. Podval'naya, V. L. Volkov // Inorganic Materials. - 2010. - Vol. 46, № 10. - P. 1112-1114 : il. - Bibliogr. : p. 1114 (7 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
НАНОСТРУКТУРИРОВАНННЫЕ ОКСИДЫ -- ОКСИД ВАНАДИЯ -- ЩЕЛОЧНЫЕ МЕТАЛЛЫ -- ГАЗОСЕНСОРНЫЕ СВОЙСТВА
Аннотация: The gas-sensing properties of nanostructured vanadium oxide doped with alkali-metal cations (MxV2O5 with M = Na, K, Rb, and Cs) have been studied by measuring the resistance of films as a function of analyte content using an impedance meter. The results show that the doped vanadium oxide is sensitive to hydrogen, carbon monoxide, and ammonia in the concentration ranges 0.1–80, 0.1–5, and 0.1–5 vol %, respectively. The strongest gas response is offered by Rb0.47V2O5, which is due to the smallest interlayer spacing in the structure of this nanomaterial and to its larger specific surface area

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4.
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   P 78


    Podval'naya, N. V.
    Ion-Selective Properties of Nanostructured Alkali-Metal-Doped Vanadium Oxide / N. V. Podval'naya, Yu. A. Bakhteeva // Inorganic Materials. - 2010. - Vol. 46, № 1. - P. 47-50 : il. - Bibliogr. : p. 50 (11 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ИОНО-СЕЛЕКТИВНЫЕ СВОЙСТВА -- ОКСИД ВАНАДИЯ -- ЩЕЛОЧНЫЕ МЕТАЛЛЫ
Аннотация: We have studied thin film electrodes based on nanoparticulate vanadium oxide doped with alkali- metal cations. The hydrogen function of the electrodes manifests itself in the pH range 2–5, with a slope of 55, 54, and 54 ± 2 mV/pH for MxV2O5 - nH2O with M = Li, Na, and K, respectively. Their sensitivity range is 10–4 to 10–1 mol/l. The electrode potential as a function of concentration follows the Nernst equation with a slope of 55, 55, and 57 ± 2 mV/pC for M = Li, Na, and K, respectively. The Li+, Na+, K+, Mg2+, Ca2+, Sr2+, and Ba2+ selectivity coefficients of the electrodes are determined

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5.
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   V 86


    Volkov, V. L.
    Phase Composition, Formation Parameters, and Morphology of Precipitates in the LiVO4-VOSO4-H2O System / V. L. Volkov, N. V. Podval'naya, E. G. Volkova // Russian Journal of Inorganic Chemistry. - 2009. - Vol. 54, № 3. - P350-355 : il. - Bibliogr. : p. 354-355 (18 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ОКСИД ВАНАДИЯ -- ПОЛИВАНАДАТЫ
Аннотация: The phase and chemical compositions of the precipitates formed in the LiVO3–VOSO4–H2O system at initial pH within 1≤pH≤4 and 90°C were studied. The following phases were prepared: an α phase Li1.4(VO)1.3[H2V10O28]· nH2O and a β phase Li0.6 – xH1.4 + x[V12O31 – y/2] · nH2O (0 ≤ x ≤ 0.5, 1.3 ≤ y ≤ 2.0) with a layered structure. Li0.4V2O5 · H2O nanorods with the interlayer distance 10.30 ± 0.08 Å were synthesized at 180°C in an autoclave. The morphology, IR spectra, and main formation processes for these polyvanadates were studied

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6.
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   V 86


    Volkov, V. L.
    Thermal expansion and electrical conductivity of M4±xV6O16±x (M = K, Rb, Cs) polyvanadates [Text] / V. L. Volkov, N. V. Podval'naya // Inorganic Materials. - 2008. - Vol. 44, № 2. - P176-180. - Библиогр.: с. 179-180 (11 назв.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ТЕРМИЧЕСКОЕ РАСШИРЕНИЕ -- ПОЛИВАНАДАТЫ -- ЭЛЕКТРОПРОВОДНОСТЬ -- СТЕХИОМЕТРИЯ
Аннотация: The thermal expansion coefficient of the M4±xV6O16±x(M = K, Rb, Cs) polyvanadates is a nonmonotonic function of temperature, with sharp minima at 663, 558, and 713 K, respectively, which are accompanied by no changes in cell symmetry (tetragonal) or a /c axial ratio. The polyvanadates are shown to be ionic–electronic conductors. The activation energy for electronic conduction in the three polyvanadates is 0.43±0.02eV. In the range 675–740 K, the conductivity of K4.2V6O16.2 shows metallic behavior. Rubidium polyvanadate has a narrower temperature range of unactivated conduction, and Cs3.8V6O15.8 has no such range. The conclusion is made that these phases undergo cation disordering due to deviations from the M4V6O16 stoichiometry

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7.
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   S 70


   
    Sodium-Doped Vanadium Oxide Nanorods / V. L. Volkov, G. S. Zakharova, N. V. Podval'naya, M. V. Kuznetsov // Russian Journal of Inorganic Chemistry. - 2008. - Vol. 53, № 6. - P854-857 : il. - Bibliogr. : p. 857 (15 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ОКСИД ВАНАДИЯ -- НАНОВОЛОКНА
Аннотация: Sodium-doped vanadium oxide nanorods of composition Na0.44V2O5·1.6H2O were manufactured under hydrothermal conditions (T= 150–180°C,τ= 30–50 h). Particle diameters are 20–80 nm; lengths are 0.25–1.5 μm. Particles have a layered structure with interlayer distances of 10.71±0.03Å. X-ray photoelectron and IR spectra, electrical conductivity, and thermal properties of nanorods were studied

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8.
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   I-76


   
    Ion State of Atoms and the Properties of Perovskite-Like Compound CaCu3V4O12 / V. L. Volkov, N. I. Kadyrova, G. S. Zakharova, M. V. Kuznetsov, N. V. Podval'naya, K. N. Mikhalev, Yu. G. Zainulin // Russian Journal of Inorganic Chemistry. - 2007. - Vol. 52, № 3. - P329-333 : il. - Bibliogr. : p. 333 (16 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ПЕРОВСКИТОПОДОБНЫЕ СОЕДИНЕНИЯ -- СТЕХИОМЕТРИЯ
Аннотация: The binding energies and valence state of atoms in the perovskite-like compound CaCu3V4O12 have been determined using XPS spectroscopy. The stoichiometry of this phase is formulated as Ca2+Cu2+(V2(5+)V2(4+)O12). Under an air atmosphere, the phase interacts with water vapor and oxygen. As a result, Ca(OH)2 is formed on its surface, the Cu+ and V4+ ion concentrations decrease, and the Cu2+ and V5+ concentrations increase in association. Raman spectra show shortened cation–anion bond lengths and cation–anion–cation bond angles in CaCu3V4O12 compared to perovskite CuVO3; the two structures are alike. The electrical conductivity, magnetic susceptibility, thermal and sensor properties of CaCu3V4O12 in aqueous salt solutions have been studied

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9.
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   I-76


   
    Ion state of atoms and the properties of perovskite-like compound CaCu3V4O12 [Текст] / V. L. Volkov, N. I. Kadyrova, G. S. Zakharova, M. V. Kuznetsov, N. V. Podval'naya, K. N. Mikhalev, Yu. G. Zainulin // Zhurnal Neorganicheskoi Khimii. - 2007. - Vol. 52, № 3. - С. 378-383
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ

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10.
Инвентарный номер: нет.
   
   S 98


   
    Synthesis, VKβ5'' Spectra, and Magnetic Properties of M4±xV6O16±x • nH2O (M = K, Rb, Cs) Polyvanadates / V. L. Volkov, N. V. Podval'naya, V. M. Cherkashenko, S. N. Nemnonov // Russian Journal of Inorganic Chemistry. - 2007. - Vol. 52, № 8. - P1189-1193 : il. - Bibliogr. : p. 1193 (15 ref.)
ББК 54
Рубрики: ХИМИЧЕСКИЕ НАУКИ
Кл.слова (ненормированные):
ПОЛИВАНАДАТЫ -- МАГНИТНАЯ ВОСПРИИМЧИВОСТЬ
Аннотация: Tetragonal polyvanadates M4±xV6O16±x·nH2O (M = K, Rb, Cs) have been synthesized under hydrothermal conditions. According to the VKβ5β''spectra of the hydrates, vanadium atoms have an average valence state (the V5+V4+ charge-fluctuation frequency is higher than 10–15 s). After dehydration, the phases do not change their crystal system. The thermal properties of the compounds have been studied in air and under an inert atmosphere. K4.2V6O16.2 and Rb4,1V6O16.1 melt congruently at 720 and 690°ë, respectively. Cs3.8V6O15.8 melts incongruently at 675°ë. The magnetic susceptibility of all phases obeys the Curie–Weiss law in the range from 77 to 673 K

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