1
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Grenev I.V.
, Gavrilov V.Y.
High-Throughput Screening of Metal−Organic Frameworks for Helium Recovery from Natural Gas
Microporous and Mesoporous Materials. 2024.
V.368. 113021
:1-9. DOI: 10.1016/j.micromeso.2024.113021
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РИНЦ
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2
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Grenev I.V.
, Gavrilov V.Y.
In Silico Screening of Metal−Organic Frameworks and Zeolites for He/N2 Separation
Molecules. 2023.
V.28. N1. 20
:1-18. DOI: 10.3390/molecules28010020
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РИНЦ
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3
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Grenev I.V.
, Gavrilov V.Y.
Low-Temperature N2 and He Separation on a HKUST-1 Membrane
Protection of Metals and Physical Chemistry of Surfaces. 2023.
V.59. N5. P.822–827. DOI: 10.1134/S2070205123700995
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РИНЦ
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4
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Zenkovets G.A.
, Shutilov A.A.
, Gavrilov V.Y.
Heat-Resistant TiO2 Nanocomposites with Anatase Phase as Carriers for Highly Efficient CO Oxidation Catalysts
Materials Research Bulletin. 2022.
V.145. 111538
:1-11. DOI: 10.1016/j.materresbull.2021.111538
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РИНЦ
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5
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Zenkovets G.A.
, Bondareva V.M.
, Shutilov A.A.
, Sobolev V.I.
, Marchuk A.S.
, Tsybulya S.V.
, Prosvirin I.P.
, Suprun E.A.
, Ishchenko A.V.
, Gavrilov V.Y.
Multicomponent MoVSbNbGdOx/SiO2 Catalyst in Oxidative Dehydrogenation of Ethane: Effect of Gd on Catalytic Properties
Applied Catalysis A: General. 2022.
V.633. 118536
:1-11. DOI: 10.1016/j.apcata.2022.118536
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РИНЦ
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6
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Zenkovets G.A.
, Shutilov A.A.
, Bondareva V.M.
, Sobolev V.I.
, Prosvirin I.P.
, Suprun E.A.
, Ishchenko A.V.
, Marchuk A.S.
, Tsybulya S.V.
, Gavrilov V.Y.
Effect of Gadolinium Additives on the Active Phase Morphology and Physicochemical and Catalytic Properties of MoVSbNbGdOx/SiO2 Catalysts in the Oxidative Dehydrogenation of Ethane to Ethylene
Kinetics and Catalysis. 2022.
V.63. N6. P.732–746. DOI: 10.1134/S0023158422060179
Scopus
РИНЦ
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7
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Grenev I.V.
, Klimkin N.D.
, Shamanaeva I.A.
, Shubin A.A.
, Chetyrin I.A.
, Gavrilov V.Y.
A Novel Adsorption-Based Method for Revealing the Si Distribution in SAPO Molecular Sieves: The Case of SAPO-11
Microporous and Mesoporous Materials. 2021.
V.328. 111503
:1-8. DOI: 10.1016/j.micromeso.2021.111503
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РИНЦ
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8
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Grenev I.V.
, Gavrilov V.Y.
Silicon Distribution in SAPO-11 Molecular Sieves: Simulation and Experimental Adsorption Study
Microporous and Mesoporous Materials. 2020.
V.294. 109906
:1-7. DOI: 10.1016/j.micromeso.2019.109906
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РИНЦ
РИНЦ
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9
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Zenkovets G.A.
, Shutilov R.A.
, Sobolev V.I.
, Gavrilov V.Y.
Catalysts Cu/ZSM-5 for N2O Decomposition Obtained with Copper Complexes of Various Structures
Catalysis Communications. 2020.
V.144. 106072
:1-5. DOI: 10.1016/j.catcom.2020.106072
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РИНЦ
РИНЦ
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10
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Zenkovets G.A.
, Shutilov A.A.
, Bondareva V.M.
, Sobolev V.I.
, Marchuk A.S.
, Tsybulya S.V.
, Prosvirin I.P.
, Ishchenko A.V.
, Gavrilov V.Y.
New Multicomponent MoVSbNbCeOx/SiO2 Catalyst with Enhanced Catalytic Activity for Oxidative Dehydrogenation of Ethane to Ethylene
ChemCatChem. 2020.
V.12. N16. P.4149-4159. DOI: 10.1002/cctc.202000489
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РИНЦ
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11
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Shutilov R.A.
, Gavrilov V.Y.
Decomposition of N2O on Cu/ZSM-5 Catalysts Obtained from Copper Complexes of Various Structures
Chemistry for Sustainable Development. 2020.
V.28. N1. P.86–95. DOI: 10.15372/CSD2020207
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РИНЦ
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12
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Zenkovets G.A.
, Shutilov R.A.
, Gavrilov V.Y.
The State of Copper Ions in Aqueous and Aqueous Ammonia Solutions of Copper Acetate
Russian Journal of Inorganic Chemistry. 2018.
V.63. N11. P.1511-1518. DOI: 10.1134/S0036023618110219
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РИНЦ
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13
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Ustinov E.A.
, Gavrilov V.Y.
, Mel’gunov M.S.
, Sokolov V.V.
, Berveno V.P.
, Berveno A.V.
Characterization of Activated Carbons with Low-Temperature Hydrogen Adsorption
Carbon. 2017.
V.121. P.563-573. DOI: 10.1016/j.carbon.2017.06.026
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РИНЦ
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14
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Grenev I.V.
, Gavrilov V.Y.
Calculation of Adsorption Properties of Aluminophosphate and Aluminosilicate Zeolites
Adsorption. 2017.
V.23. N6. P.903-915. DOI: 10.1007/s10450-017-9903-4
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РИНЦ
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15
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Shutilov A.A.
, Zenkovets G.A.
, Gavrilov V.Y.
, Tsybulya S.V.
Effect of Alumina Additives on the Nanostructure and Thermal Stability of TiO2 with Anatase Structure
Materials Today: Proceedings. 2017.
V.4. N11. P.11486-11489. DOI: 10.1016/j.matpr.2017.09.034
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РИНЦ
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16
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Grenev I.I.
, Gavrilov V.Y.
Adsorption Interaction in H2 - ZSM-5 System and Calculation of the Zeolite Microchannel Parameters
Microporous and Mesoporous Materials. 2016.
V.226. P.146-152. DOI: 10.1016/j.micromeso.2015.12.042
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РИНЦ
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17
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Oparin V.N.
, Kiryaeva T.A.
, Gavrilov V.Y.
, Tanashev Y.Y.
, Bolotov V.A.
Initiation of Underground Fire Sources
Journal of Mining Science. 2016.
V.52. N3. P.576-592. DOI: 10.1134/S1062739116030850
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РИНЦ
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18
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Grenev I.V.
, Gavrilov V.Y.
Calculation of Microchannel Parameters in Aluminophosphate Zeolites
Microporous and Mesoporous Materials. 2015.
V.208. P.36-43. DOI: 10.1016/j.micromeso.2015.01.031
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РИНЦ
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19
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Grenev I.V.
, Gavrilov V.Y.
Adsorption Interaction in the Molecular Hydrogen-Aluminophosphate AlPO-5 Zeolite System
Russian Journal of Physical Chemistry A. 2015.
V.89. N3. P.491-496. DOI: 10.1134/S0036024415030139
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РИНЦ
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20
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Shutilov R.A.
, Zenkovets G.A.
, Paukshtis E.A.
, Gavrilov V.Y.
Localization of the Copper-Containing Component in the Pore Volume of Zeolite ZSM-5
Kinetics and Catalysis. 2014.
V.55. N2. P.243-251. DOI: 10.1134/S0023158414020098
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РИНЦ
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21
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Lutz W.
, Shutilov R.A.
, Gavrilov V.Y.
Pore Structure of USY Zeolites in Dependence on Steaming Condition
Zeitschrift fur Anorganische und Allgemeine Chemie. 2014.
V.640. N3-4. P.577-581. DOI: 10.1002/zaac.201300403
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РИНЦ
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22
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Grenev I.V.
, Gavrilov V.Y.
Calculating Henry Adsorption Constants of Molecular Hydrogen at 77 K on Alumophosphate Zeolites with Different Microchannel Sizes
Russian Journal of Physical Chemistry A. 2014.
V.88. N1. P.127-133. DOI: 10.1134/S0036024414010129
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РИНЦ
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23
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Shutilov R.A.
, Zenkovets G.A.
, Gavrilov V.Y.
, Anufrienko V.F.
, Larina T.V.
, Vasenin N.T.
State of the Copper-Containing Component and the Catalytic Properties of Cu/ZSM-5 in Selective NO Reduction with Propane
Kinetics and Catalysis. 2014.
V.55. N5. P.620-629. DOI: 10.1134/S0023158414050152
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РИНЦ
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24
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Oparin V.N.
, Kiryaeva T.A.
, Gavrilov V.Y.
, Shutilov R.A.
, Kovchavtsev A.P.
, Tanaino A.S.
, Efimov V.P.
, Astrakhantsev I.E.
, Grenev I.V.
Interaction of Geomechanical and Physicochemical Processes in Kuzbass Сoal
Journal of Mining Science. 2014.
V.50. N2. P.191-214. DOI: 10.1134/S106273911402001X
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РИНЦ
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25
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Vasenin N.T.
, Anufrienko V.F.
, Shutilov R.A.
, Zenkovets G.A.
, Shubin A.A.
, Gavrilov V.Y.
, Parmon V.N.
Orbital Ordering of Cu2+ Ions in Concentrated Aqueous Ammonia Solutions of Copper Chloride, Sulfate, and Acetate as Probed by ESR
Doklady Physical Chemistry. 2013.
V.450. N1. P.103-106. DOI: 10.1134/S0012501613050035
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РИНЦ
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26
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Shutilov A.A.
, Zenkovets G.A.
, Tsybulya S.V.
, Gavrilov V.Y.
Effect of Silica on the Stability of the Nanostructure and Texture of Fine-Particle Alumina
Kinetics and Catalysis. 2012.
V.53. N1. P.125-136. DOI: 10.1134/S0023158412010120
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РИНЦ
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27
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Shutilov A.A.
, Zenkovets G.A.
, Tsybulya S.V.
, Gavrilov V.Y.
, Kryukova G.N.
Effect of the Microstructure of the Supported Catalysts CuO/TiO2 and CuO/(CeO2-TiO2) on Their Catalytic Properties in Carbon Monoxide Oxidation
Kinetics and Catalysis. 2012.
V.53. N3. P.409-418. DOI: 10.1134/S0023158412030111
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РИНЦ
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28
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Shutilov R.A.
, Grenev I.V.
, Kikhtyanin O.V.
, Gavrilov V.Y.
Adsorption of Molecular Hydrogen on Aluminophosphate Zeolites at 77 K
Kinetics and Catalysis. 2012.
V.53. N1. P.137-144. DOI: 10.1134/S0023158412010119
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РИНЦ
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29
|
Anufrienko V.F.
, Shutilov R.A.
, Zenkovets G.A.
, Gavrilov V.Y.
, Vasenin N.T.
, Shubin A.A.
, Larina T.V.
, Zhuzhgov A.V.
, Ismagilov Z.R.
, Parmon V.N.
The State of Cu2+ Ions in Concentrated Aqueous Ammonia Solutions of Copper Nitrate
Russian Journal of Inorganic Chemistry. 2012.
V.57. N9. P.1285-1290. DOI: 10.1134/S0036023612090033
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РИНЦ
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30
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Anufrienko V.F.
, Zenkovets G.A.
, Shutilov R.A.
, Gavrilov V.Y.
, Vasenin N.T.
, Shubin A.A.
, Ismagilov Z.R.
, Parmon V.N.
Specific Features of Association of Cu2+ Ions in Concentrated Aqueous Ammonia Solutions of Copper Nitrate as Probed by ESR
Doklady Physical Chemistry. 2011.
V.440. N2. P.194-197. DOI: 10.1134/S0012501611100046
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РИНЦ
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31
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Krivoruchko O.P.
, Larina T.V.
, Shutilov R.A.
, Gavrilov V.Y.
, Yashnik S.A.
, Sazonov V.A.
, Molina I.Y.
, Ismagilov Z.R.
Effect of the Electronic State and Copper Localization in ZSM-5 Pores on Performance in NO Selective Catalytic Reduction by Propane
Applied Catalysis B: Environmental. 2011.
V.103. N1-2. P.1-10. DOI: 10.1016/j.apcatb.2010.12.046
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РИНЦ
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32
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Shutilov A.A.
, Zenkovets G.A.
, Gavrilov V.Y.
, Tsybulya S.V.
Effect of Yttrium Oxide on the Formation of the Phase Composition and Porous Structure of Titanium Dioxide
Kinetics and Catalysis. 2011.
V.52. N1. P.111-118. DOI: 10.1134/S0023158411010174
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РИНЦ
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33
|
Gavrilov V.Y.
, Ustinov E.A.
Dihydrogen Adsorption Isotherms (77 K) on Carbon Nanomaterials
Kinetics and Catalysis. 2011.
V.52. N3. P.459-466. DOI: 10.1134/S0023158411030074
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РИНЦ
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34
|
Gavrilov V.Y.
, Krivoruchko O.P.
, Larina T.V.
, Molina I.Y.
, Shutilov R.A.
Distribution of Copper and NickelContaining Modifier Components in the Pore Space of HZSM5 Zeolite
Kinetics and Catalysis. 2010.
V.51. N1. P.88-97. DOI: 10.1134/S0023158410010155
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РИНЦ
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35
|
Zenkovets G.A.
, Tanashev Y.Y.
, Danilevich V.V.
, Tsybulya S.V.
, Gavrilov V.Y.
, Shutilov A.A.
, Parmon V.N.
Physicochemical Properties of TiO2 (Anatase) Prepared by the Centrifugal Thermal Activation of Hydrated Titanium Dioxide
Kinetics and Catalysis. 2010.
V.51. N3. P.444-448. DOI: 10.1134/S0023158410030183
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РИНЦ
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36
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Gavrilov V.Y.
, Zakharov R.S.
Carbon Dioxide Adsorption on Carbon Nanomaterials
Kinetics and Catalysis. 2010.
V.51. N4. P.609-614. DOI: 10.1134/S0023158410040221
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РИНЦ
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37
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Gavrilov V.Y.
, Krivoruchko O.P.
Synthesis and Mesopore–Micropore Structure Characterization of Nanodisperse Fe3+ Hydrogels (Xerogels)
Kinetics and Catalysis. 2009.
V.50. N1. P.122-130. DOI: 10.1134/S0023158409010169
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РИНЦ
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38
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Zenkovets G.A.
, Gavrilov V.Y.
, Shutilov A.A.
, Tsybulya S.V.
Effect of Silicon Dioxide on the Formation of the Phase Composition and Pore Structure of Titanium Dioxide with the Anatase Structure
Kinetics and Catalysis. 2009.
V.50. N5. P.760-767. DOI: 10.1134/S002315840905019X
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РИНЦ
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39
|
Shutilov A.A.
, Zenkovets G.A.
, Kryukova G.N.
, Gavrilov V.Y.
, Paukshtis E.A.
, Boronin A.I.
, Koshcheev S.V.
, Tsybulya S.V.
Effect of the Microstructure of Pt/CeO2–TiO2 Catalysts on Their Catalytic Properties in CO Oxidation
Kinetics and Catalysis. 2008.
V.49. N2. P.271-278. DOI: 10.1134/S0023158408020158
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РИНЦ
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40
|
Volkov V.L.
, Andreikov E.I.
, Zakharova G.S.
, Gavrilov V.Y.
, Kaichev V.V.
, Bukhtiyarov V.I.
Vanadium–Titanium Oxides: Sol–Gel Synthesis and Catalytic Properties in Chlorobenzene Oxidation
Kinetics and Catalysis. 2008.
V.49. N3. P.446-450. DOI: 10.1134/S0023158408030208
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РИНЦ
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41
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Krivoruchko O.P.
, Gavrilov V.Y.
, Molina I.Y.
, Larina T.V.
Distribution of the Cobalt-Containing Component in the Pore Space of HZSM-5 upon a Postsynthetic Modification
of the Zeolite with Hydroxo Compounds of Co2+
Kinetics and Catalysis. 2008.
V.49. N2. P.285-290. DOI: 10.1134/S0023158408020171
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РИНЦ
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42
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Gavrilov V.Y.
Adsorption of Molecular Hydrogen on Ultrafine Microporous/Mesoporous Materials
Kinetics and Catalysis. 2007.
V.48. N6. P.799-802. DOI: 10.1134/S0023158407060067
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РИНЦ
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43
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Zenkovets G.A.
, Shutilov A.A.
, Gavrilov V.Y.
, Tsybulya S.V.
, Kryukova G.N.
Formation of the Structure of Cerium Oxide–Modified Titanium Dioxide
Kinetics and Catalysis. 2007.
V.48. N5. P.742-748. DOI: 10.1134/S0023158407050205
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РИНЦ
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44
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Gavrilov V.Y.
, Sokolov E.E.
Specific Features of the Comparative Adsorption Analysis of the Texture of Ultrafine Microporous/Mesoporous Materials
Kinetics and Catalysis. 2007.
V.48. N6. P.794-798. DOI: 10.1134/S0023158407060055
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РИНЦ
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45
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Zenkovets G.A.
, Kryukova G.N.
, Gavrilov V.Y.
, Tsybulya S.V.
, Anufrienko V.F.
, Larina T.V.
, Khabibulin D.F.
, Lapina O.B.
, Rödel E.
, Trunschke A.
, Ressler T.
, Schlögl R.
The Structural Genesis of a Complex (MoVW)5O14 Oxide During Thermal Treatments and Its RedOx Behavior at Elevated Temperatures
Materials Chemistry and Physics. 2007.
V.103. N2-3. P.295-304. DOI: 10.1016/j.matchemphys.2007.02.029
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РИНЦ
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46
|
Gavrilov V.Y.
Adsorption of Nitrogen, Oxygen, and Argon Vapors on Fine-Pore Oxide Materials
Kinetics and Catalysis. 2005.
V.46. N3. P.403-406. DOI: 10.1007/s10975-005-0092-x
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РИНЦ
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47
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Gavrilov V.Y.
Adsorption of Dihydrogen on Mesoporous Materials at 77 K
Kinetics and Catalysis. 2005.
V.46. N4. P.603-608. DOI: 10.1007/s10975-005-0114-8
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РИНЦ
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48
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Gavrilov V.Y.
, Zenkovets G.A.
, Zalomaeva O.V.
, Tsybulya S.V.
Formation of the Pore Structure of Oxide Vanadium–Titanium–Phosphorus Catalysts in the Course of Thermal Treatment
Kinetics and Catalysis. 2004.
V.45. N5. P.702-707. DOI: 10.1023/B:KICA.0000044982.61360.d0
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РИНЦ
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49
|
Zenkovets G.A.
, Gavrilov V.Y.
, Kryukova G.N.
, Tsybulya S.V.
, Parmon V.N.
Effect of the Conditions of Thermal Treatment of Molybdenum–Titanium and Vanadium–Molybdenum–Titanium Oxide Catalysts on Pore Structure Formation
Kinetics and Catalysis. 2002.
V.43. N4. P.573-579. DOI: 10.1023/A:1019895522569
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РИНЦ
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50
|
Gavrilov V.Y.
Adsorption of Nitrogen, Oxygen, and Argon Vapors on Supermicroporous Oxides
Kinetics and Catalysis. 2002.
V.43. N4. P.580-584. DOI: 10.1023/A:1019847606640
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РИНЦ
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