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21
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Shefer K.I.
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Influence of a Synthesis Method and a Support Nature on Physicochemical and Catalytic Properties of Supported Rhodium Catalysts for the Partial Oxidation of Hydrocarbons. I. Chloride Series
Molecular Catalysis. 2021.
V.508. 111605
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22
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Chernov A.N.
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Liquid Versus Gas Phase Dehydrogenation of Formic Acid over Co@N-Doped Carbon Materials. The Role of Single Atomic Sites
Molecular Catalysis. 2021.
V.504. 111457
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23
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Zima A.M.
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Non-Heme Perferryl Intermediates: Effect of Spin State on the Epoxidation Enantioselectivity
Molecular Catalysis. 2021.
V.502. 111403
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24
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Serdyukov S.I.
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A New Precursor for Synthesis of Nickel-Tungsten Sulfide Aromatic Hydrogenation Catalyst
Molecular Catalysis. 2021.
V.502. 111357
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25
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Nuzhdin A.L.
, Simonov P.A.
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Reductive Amination of 5-acetoxymethylfurfural over Pt/Al2O3 Catalyst in a Flow Reactor
Molecular Catalysis. 2021.
V.499. 111297
:1-5. DOI: 10.1016/j.mcat.2020.111297
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26
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Ulitin N.V.
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, Nurmurodov T.S.
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The cumene oxidation and cumene hydroperoxide decomposition in the presence of Zn, Cd or Hg 2-ethylhexanoate: Kinetic model and analysis of its sensitivity
Molecular Catalysis. 2021.
V.515. 111886
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27
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Karpova T.
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Direct Conversion of Ethylene to Propylene Based on Molybdenum Catalysts
Molecular Catalysis. 2021.
V.499. 111316
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28
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Glyzdova D.V.
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Effect of Pretreatment with Hydrogen on the Structure and Properties of Carbon-Supported Pd-Ag-Nanoalloys for Ethylene Production by Acetylene Hydrogenation
Molecular Catalysis. 2021.
V.511. 111717
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29
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Egorova S.R.
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, Gizyatullov R.N.
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Stabilizing effect of α-Cr2O3 on highly active phases and catalytic performance of a chromium alumina catalyst in the process of isobutane dehydrogenation
Molecular Catalysis. 2021.
V.509. 111610
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30
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Serykh A.I.
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On the nature of active sites in alumina-supported zinc propane dehydrogenation catalysts
Molecular Catalysis. 2020.
V.493. 111055
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31
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Rajabi F.
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Highly ordered mesoporous functionalized pyridinium protic ionic liquids framework as efficient system in esterification reactions for biofuels production
Molecular Catalysis. 2020.
V.498. 111238
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32
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Nuzhdin A.L.
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Flow Hydrogenation of 5-acetoxymethylfurfural over Cu-Based Catalysts
Molecular Catalysis. 2020.
V.494. 111132
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33
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Zima A.M.
, Lyakin O.Y.
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Corrigendum to “Aromatic C-H Oxidation by Non-Heme Iron(V)-oxo Intermediates Bearing Aminopyridine Ligands” [Mol. Catal. 483 (2020), 110708]
Molecular Catalysis. 2020.
V.493. 111039
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34
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Koskin A.P.
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Perfluorosulfonic Acid Polymer Composites: Effect of the Support and Synthesis Method on the Acid and Catalytic Properties
Molecular Catalysis. 2020.
V.492. 111006
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35
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Semikolenova N.V.
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Study of Supported Catalysts, Prepared via Binding of Fe(II) bis(imino)pyridyl Complex with Silica, Modified by Alumina: Effect of Surface Lewis Acidic Sites on Catalyst Composition and Activity in Ethylene Polymerization
Molecular Catalysis. 2020.
V.486. 110878
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36
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Zima A.M.
, Lyakin O.Y.
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Aromatic C-H Oxidation by Non-heme Iron(V)-oxo Intermediates Bearing Aminopyridine Ligands
Molecular Catalysis. 2020.
V.483. 110708
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37
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Andrushkevich T.V.
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The Role of Water in Selective Heterogeneous Catalytic Oxidation of Hydrocarbons
Molecular Catalysis. 2020.
V.484. 110734
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38
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Ivanin I.A.
, Ali-Zade A.G.
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CuCl-based SILCs in the thiophene oxidation – Experimental and DFT-assisted study
Molecular Catalysis. 2019.
V.484. 110727
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39
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Prikhod’ko S.A.
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Effects Arising from the Replacement of Aprotic Dipolar Solvents with Ionic Liquids in the Nickel-Catalyzed Reduction of Aryl Chlorides
Molecular Catalysis. 2018.
V.461. P.19-25. DOI: 10.1016/j.mcat.2018.09.022
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40
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Sukulova V.V.
, Barabanov A.A.
, Mikenas T.B.
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, Zakharov V.A.
Effect of Hydrogen on the Number of Active Centers and the Propagation Rate Constant at Ethylene Polymerization over Titanium-Magnesium Ziegler-Natta Catalysts
Molecular Catalysis. 2018.
V.445. P.299-306. DOI: 10.1016/j.mcat.2017.11.017
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