1
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Boldyreva N.N.
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Effect of Lithium Nitrate Doping on the Phase Composition of Alumina–Chromium Catalysts
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V.61. N3. P.473-479. DOI: 10.1134/s0023158420030076
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2
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Shikina N.V.
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Effect of the Conditions of Solution Combustion Synthesis on the Properties of Monolithic Pt–MnOx Catalysts for Deep Oxidation of Hydrocarbons
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V.61. N5. P.809–823. DOI: 10.1134/S0023158420050110
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3
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Chesnokov V.V.
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Effects of Alkali Element Doping and Synthesis Conditions on the Genesis of the Phase Composition of Alumina–Chromium Catalysts
Kinetics and Catalysis. 2019.
V.60. N1. P.96-105. DOI: 10.1134/s0023158419010026
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4
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Shikina N.V.
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Effect of Glycine Addition on Physicochemical and Catalytic Properties of Mn, Mn–La and Mn–Ce Monolithic Catalysts Prepared by Solution Combustion Synthesis
Catalysis Letters. 2019.
V.149. N9. P.2535-2551. DOI: 10.1007/s10562-019-02841-4
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5
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Shikina N.V.
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Formation of Active Structures in Monolith Copper–Manganese Oxide Catalysts for Air-Heating Devices
Kinetics and Catalysis. 2018.
V.59. N4. P.532-543. DOI: 10.1134/s0023158418040122
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6
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Plyasova L.M.
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Effect of Synthesis Conditions on the Formation of the CuCrAlO4 Spinel Structure
Journal of Structural Chemistry. 2018.
V.59. N7. P.1639-1647. DOI: 10.1134/s0022476618070168
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7
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Yashnik S.A.
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The Nature of Synergetic Effect of Manganese Oxide and Platinum in Pt–MnOX–Alumina Oxidation Catalysts
Topics in Catalysis. 2017.
V.60. N1-2. P.52-72. DOI: 10.1007/s11244-016-0722-8
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8
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Pinaeva L.G.
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Monolithic FeОx/Al2O3 Catalysts for Ammonia Oxidation and Nitrous Oxide Decomposition
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V.58. N2. P.167-178. DOI: 10.1134/S0023158417020100
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9
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Malakhov V.V.
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New Stoichiographic Methods for Separation and Determination of Components in Catalytic Processes
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V.8. N3. 1000372
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10
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Valeev K.R.
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Determination of the Phase Composition of the Intermediate and Final Products of the Synthesis of Cu–Al Cermets by a Differential Dissolution Stoichiographic Method
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V.52. N3. P.331-337. DOI: 10.1134/S0020168516030146
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11
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Pinaeva L.G.
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MeOx/Al2O3 and MeOx/CeO2 (Me = Fe, Co, Ni) Catalysts for High Temperature N2O Decomposition and NH3 Oxidation
Catalysis Science and Technology. 2016.
V.6. N7. P.2150-2161. DOI: 10.1039/C5CY01381J
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12
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Effect of the Oxidation State of Manganese in the Manganese Oxides Used in the Synthesis of Mn-Substituted Cordierite on the Properties of the Product
Kinetics and Catalysis. 2016.
V.57. N2. P.255-262. DOI: 10.1134/S0023158416020142
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13
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Simentsova I.I.
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Heat Treatment-Induced Compositional and Structural Changes in the Preparation of CuCrAlO4 and CuFeAlO4
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V.52. N12. P.1259-1265. DOI: 10.1134/S0020168516120116
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14
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Dovlitova L.S.
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Determination of Chemical and Phase Compositions of Mixed Oxides with the Perovskite-Like Structure Based on Strontium Titanates by Differential Dissolution Method
Journal of Structural Chemistry. 2015.
V.56. N4. P.689-697. DOI: 10.1134/s0022476615040125
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15
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Dovlitova L.S.
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Determination of the Phase Composition of Amorphous and Crystalline Copper Ferrite–Chromite Samples by a Reference-Free Method of Differentiating Dissolution
Journal of Analytical Chemistry. 2015.
V.70. N10. P.1229-1235. DOI: 10.1134/S1061934815100081
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16
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Larina T.V.
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Influence of the Surface Layer of Hydrated Silicon on the Stabilization of Co2+ Cations in Zr–Si Fiberglass
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V.5. P.79898-79905. DOI: 10.1039/c5ra12551k
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17
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Simonova L.G.
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Study of Leaching of Sodium Aluminosilicate Fiberglass Materials
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V.60. N9. P.1052-1058. DOI: 10.1134/S003602361509017X
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18
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The Structure and Catalytic Properties of Amorphous Phase in MoVTeO Catalysts for Propane Ammoxidation
Applied Catalysis A: General. 2014.
V.476. P.91-102. DOI: 10.1016/j.apcata.2014.02.022
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19
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Ivanov D.V.
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Oxidative Methane Coupling over Mg, Al, Ca, Ba, Pb-Promoted SrTiO3 and Sr2TiO4: Influence of Surface Composition and Microstructure.
Applied Catalysis A: General. 2014.
V.485. P.10-19. DOI: 10.1016/j.apcata.2014.07.024
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Dovlitova L.S.
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Determination of the Phase Composition of Catalyst Precursors for Multiwall Carbon Nanotubes by the Stoichiographic Differential Dissolution Method
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V.55. N6. P.1166-1171. DOI: 10.1134/S0022476614060274
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21
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Dovlitova L.S.
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Determination of the Chemical Composition of Modified Fiber Glass Silicate Materials by Differential Dissolution
Journal of Analytical Chemistry. 2013.
V.68. N1. P.72-79. DOI: 10.1134/S1061934813010061
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22
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Yakovleva I.S.
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Microwave Synthesis of LaMO3 (M = Mn, Co, Fe) Perovskites from Crystalline Hydrates of Nitrates
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V.54. N1. P.119-129. DOI: 10.1134/S002315841301014X
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23
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Ivanov D.V.
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24
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Dovlitova L.S.
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Determination of the Chemical Composition of Supported Vanadium-Containing Oxide Catalysts by the Differential Dissolution Method
Journal of Analytical Chemistry. 2011.
V.66. N1. P.88-93. DOI: 10.1134/S1061934810111012
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25
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Dovlitova L.S.
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Determination of the Chemical Composition of Fiberglass Silicate Materials by the Differential Dissolution Method
Journal of Analytical Chemistry. 2011.
V.66. N10. P.981-990. DOI: 10.1134/S1061934811080090
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26
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Malakhov V.V.
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Methodology and Procedure of the Stoichiographic Analysis of Solid Inorganic Substances and Materials
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V.66. N5. P.458-464. DOI: 10.1134/S1061934811030117
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27
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Kardash T.Y.
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M5O14-Like V-Mo-Nb Oxide Catalysts: Structure and Catalytic Performance
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Catalysis in Industry. 2010.
V.2. N4. P.291-298. DOI: 10.1134/S207005041004001X
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Lomovsky O.I.
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Mechanochemical Synthesis of Amorphous and Crystalline Magnesium Diboride
Inorganic Materials. 2010.
V.46. N1. P.22-27. DOI: 10.1134/S0020168510010061
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30
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Popova G.Y.
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The Investigation of Chemical and Phase Composition of Solid Precursor of MoVTeNb Oxide Catalyst and Its Transformation During the Thermal Treatment
Applied Catalysis A: General. 2009.
V.353. N2. P.249-257. DOI: 10.1016/j.apcata.2008.10.060
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Catalysis Today. 2009.
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Detection, Identification, and Quantitative Determination of Minor Phases in Solid Multielement Multiphase
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Inorganic Materials. 2009.
V.45. N14. P.1571-1579. DOI: 10.1134/S0020168509140118
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In situ XRD Study of Nanocrystalline Cobalt Oxide Reduction
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Heterogeneous Selective Oxidation of Formaldehyde to Formic Acid on V/Ti Oxide Catalysts: The Role of Vanadia Species
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Formation of Intermetallic Phases during Mechanical Alloying and Annealing of Cr + 20 wt % Al Mixtures
Inorganic Materials. 2008.
V.44. N6. P.587-591. DOI: 10.1134/S0020168508060083
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Bimetallic Palladium(II) and Iron(III), Titanium(IV), Vanadium(V), Cobalt(II), and Copper(II) Complexes
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V.53. N5. P.690-695. DOI: 10.1134/S0036023608050057
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Dissolution Kinetics of CsHSO4 and CsHSO4 /SiO2 Composites in Aqueous Solutions
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Ammoxidation of Ethane on V-Mo-Nb Oxide Catalysts
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Analytical Chemistry of Phases of Variable Composition and the Principles of Stoichiographic Determination
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44
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Bondareva V.M.
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Methylpyrazine Ammoxidation over Binary Oxide Systems: V. Effect of Phosphorus Additives on the Physicochemical and Catalytic Properties of a Vanadium-Titanium Catalyst in Methylpyrazine Ammoxidation
Kinetics and Catalysis. 2004.
V.45. N1. P.104-113. DOI: 10.1023/B:KICA.0000016110.21537.0a
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45
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Malakhov V.V.
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Methods of Stoichiography in Geochemistry and Mineralogy
Spectrochimica Acta Part B: Atomic Spectroscopy. 2003.
V.58. N2. P.373-386. DOI: 10.1016/S0584-8547(02)00148-9
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46
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Bondareva V.M.
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Lapina O.B.
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Vlasov A.A.
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Ammoxidation of Methylpyrazine over Vanadium-Titanium Catalysts Modified by Alkali Additives
Reaction Kinetics and Catalysis Letters. 2003.
V.78. N2. P.355-363. DOI: 10.1023/A:1022698230437
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47
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Bondareva V.M.
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Lapina O.B.
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Ammoxidation of Methylpyrazine over Phosphorus-Modified Vanadium-Titanium Catalysts
Reaction Kinetics and Catalysis Letters. 2003.
V.79. N1. P.165-173. DOI: 10.1023/A:1024180322453
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48
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Detusheva L.G.
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Study of the Equilibrium of Formation of Arsenic(III) Lacunar Heteropolytungstates by Raman Spectroscopy
Russian Chemical Bulletin. 2003.
V.52. N2. P.370-374. DOI: 10.1023/A:1023454715292
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49
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Detusheva L.G.
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Fedotov M.A.
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Vlasov A.A.
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50
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Malakhov V.V.
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Determination of the Phase Composition of Atmospheric Aerosol Using the Reference-Free Method of Differentiating Dissolution
Chemistry for Sustainable Development. 2002.
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