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21
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Finashina E.D.
, Kustov L.M.
, Krasovskii V.G.
, Formenova E.I.
Carboxylation of 2-methylbutyn-3-ol-2 on Ag- and Cu-containing catalysts
Russian Journal of Physical Chemistry A. 2016.
V.90. N9. P.1729-1732. DOI: 10.1134/s0036024416090089
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22
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Mishanin I.I.
, Kalenchuk A.N.
, Maslakov K.I.
, Lunin V.V.
, Koklin A.E.
, Finashina E.D.
, Bogdan V.I.
Deactivation of a mixed oxide catalyst of Mo–V–Te–Nb–O composition in the reaction of oxidative ethane dehydrogenation
Russian Journal of Physical Chemistry A. 2016.
V.90. N6. P.1132-1136. DOI: 10.1134/s0036024416060133
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23
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Greish A.A.
, Finashina E.D.
, Tkachenko O.P.
, Shuvalova E.V.
, Kustov L.M.
Synthesis of dimethyl carbonate from methanol and CO2 on the SnO2/Al2O3-based catalyst
Mendeleev Communications. 2016.
V.26. N6. P.497-499. DOI: 10.1016/j.mencom.2016.11.012
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24
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Finashina E.D.
, Kramareva N.V.
, Kucherov A.V.
, Tkachenko O.P.
, Kustov L.M.
Preparation, characterization, and catalytic testing of different Me–chitosan complexes for triglycerides transesterification
Research on Chemical Intermediates. 2016.
V.42. N5. P.4907-4920. DOI: 10.1007/s11164-015-2330-9
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25
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Finashina E.D.
, Tkachenko O.P.
, Startseva A.Y.
, Krasovsky V.G.
, Kustov L.M.
, Beletskaya I.P.
Three-component Au—Chitosan—SiO2 systems as heterogeneous catalysts for intramolecular cyclization of 2-(2-phenylethynyl)aniline
Russian Chemical Bulletin. 2015.
V.64. N12. P.2816-2820. DOI: 10.1007/s11172-015-1232-8
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26
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Finashina E.D.
, Tkachenko O.P.
, Startseva A.Y.
, Redina E.A.
, Krasovsky V.G.
, Kustov L.M.
, Beletskaya I.P.
Intramolecular hydroamination of 2-(2-phenylethynyl)aniline catalyzed by gold nanoparticles
Russian Chemical Bulletin. 2015.
V.64. N12. P.2821-2829. DOI: 10.1007/s11172-015-1233-7
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27
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Finashina E.D.
, Tkachenko O.P.
, Startseva A.Y.
, Krasovsky V.G.
, Kustov L.M.
, Beletskaya I.P.
Incorporation of carbon dioxide into molecules of acetylene hydrocarbons on heterogeneous Ag-containing catalysts
Russian Chemical Bulletin. 2015.
V.64. N12. P.2796-2801. DOI: 10.1007/s11172-015-1228-4
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28
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Finashina E.D.
, Kustov L.M.
, Tkachenko O.P.
, Krasovskiy V.G.
, Formenova E.I.
, Beletskaya I.P.
Carboxylation of phenylacetylene by carbon dioxide on heterogeneous Ag-containing catalysts
Russian Chemical Bulletin. 2014.
V.63. N12. P.2652-2656. DOI: 10.1007/s11172-014-0794-1
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29
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Kustov L.M.
, Al-Abed S.R.
, Virkutyte J.
, Kirichenko O.A.
, Shuvalova E.V.
, Kapustin G.I.
, Mishin I.V.
, Nissenbaum V.D.
, Tkachenko O.P.
, Finashina E.D.
Novel Fe-Pd/SiO2 catalytic materials for degradation of chlorinated organic compounds in water
Pure and Applied Chemistry. 2014.
V.86. N7. P.1141-1158. DOI: 10.1515/pac-2014-0207
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30
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Kustov L.M.
, Kucherov A.V.
, Finashina E.D.
Oxidative dehydrogenation of C2–C4 alkanes into alkenes: Conventional catalytic systems and microwave catalysis
Russian Journal of Physical Chemistry A. 2013.
V.87. N3. P.345-351. DOI: 10.1134/s0036024413030151
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31
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Finashina E.D.
, Kucherov A.V.
, Kustov L.M.
Effect of the conditions of preparing mixed oxide catalyst of Mo-V-Te-Nb-O composition on its activity in the oxidative dehydrogenation of ethane
Russian Journal of Physical Chemistry A. 2013.
V.87. N12. P.1983-1988. DOI: 10.1134/s0036024413120078
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32
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Orekhova N.V.
, Kustov L.M.
, Kucherov A.V.
, Finashina E.D.
, Ermilova M.M.
, Yaroslavtsev A.B.
Membrane catalytic systems for C2-C4 alkane conversion
Nanotechnologies in Russia. 2012.
V.7. N11-12. P.560-574. DOI: 10.1134/s1995078012060109
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33
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Kustov L.M.
, Finashina E.D.
, Shuvalova E.V.
, Tkachenko O.P.
Pd–Fe nanoparticles stabilized by chitosan derivatives for perchloroethene dechlorination
Environment International. 2011.
V.37. N6. P.1044-1052. DOI: 10.1016/j.envint.2011.05.003
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34
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Greish A.A.
, Glukhov L.M.
, Finashina E.D.
, Kustov L.M.
, Sung J-S.
, Choo K-Y.
, Kim T-H.
Oxidative coupling of methane in the redox cyclic mode over the catalysts on the basis of CeO2 and La2O3
Mendeleev Communications. 2010.
V.20. N1. P.28-30. DOI: 10.1016/j.mencom.2010.01.011
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35
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Greish A.A.
, Glukhov L.M.
, Finashina E.D.
, Kustov L.M.
, Sung J-S.
, Choo K-Y.
, Kim T-H.
Oxidative coupling of methane in the redox cyclic mode over the Ag–La2O3/SiO2 catalytic system
Mendeleev Communications. 2010.
V.20. N2. P.92-94. DOI: 10.1016/j.mencom.2010.03.009
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36
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Sung J.S.
, Choo K.Y.
, Kim T.H.
, Greish A.
, Glukhov L.
, Finashina E.
, Kustov L.
Peculiarities of oxidative coupling of methane in redox cyclic mode over Ag–La2O3/SiO2 catalysts
Applied Catalysis A: General. 2010.
V.380. N1-2. P.28-32. DOI: 10.1016/j.apcata.2010.03.015
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37
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Greish A.A.
, Glukhov L.M.
, Finashina E.D.
, Kustov L.M.
, Sung J-S.
, Choo K-Y.
, Kim T-H.
Comparison of activities of bulk and monolith Mn–Na2WO4/SiO2 catalysts in oxidative coupling of methane
Mendeleev Communications. 2009.
V.19. N6. P.337-339. DOI: 10.1016/j.mencom.2009.11.015
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38
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Gulyukina N.S.
, Bondarenko G.N.
, Averin A.D.
, Isaeva V.I.
, Finashina E.D.
, Kustov L.M.
, Beletskaya I.P.
Hydrogenation of α-oxophosphonates with molecular hydrogen catalyzed by palladium on carbon carrier as synthesis procedure for α-hydroxyphosphonates
Russian Journal of Organic Chemistry. 2007.
V.43. N8. P.1180-1185. DOI: 10.1134/s1070428007080167
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39
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Finashina E.D.
, Isaeva V.I.
, Kustov L.M.
, Gulyukina N.S.
, Bondarenko G.N.
, Beletskaya I.P.
Catalytic synthesis of 1-arylethylphosphonates by the hydrogenation of unsaturated precursors in the presence of chitosan-based palladium catalysts
Russian Journal of Organic Chemistry. 2006.
V.42. N7. P.990-995. DOI: 10.1134/s1070428006070116
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40
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Finashina E.D.
, Kramareva N.V.
, Evstigneeva E.M.
, Flid V.R.
, Belov A.P.
Transformations of β-Hydroxo-Substituted η3-Allyl Pd Complexes in Neutral and Weakly Acidic Solutions
Russian Journal of Coordination Chemistry. 2005.
V.31. N10. P.685-694. DOI: 10.1007/s11173-005-0156-5
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