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Skobelev I.Y.
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, Zalomaeva O.V.
, Albrieux F.
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Chemical Communications. 2013.
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22
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Maksimchuk N.V.
, Zalomaeva O.V.
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, Kovalenko K.A.
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Metal–Organic Frameworks of the MIL-101 Family as Heterogeneous Single-Site Catalysts
Proceedings of the Royal Society A: Mathematical, Physical & Engineering Sciences. 2012.
V.468. N2143. P.2017-2034. DOI: 10.1098/rspa.2012.0072
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23
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Maksimchuk N.V.
, Zalomaeva O.V.
, Skobelev I.Y.
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Metal-Organic Frameworks of the MIL-101 Family as Heterogeneous Single-Site Catalysts
Cheminform. 2012.
V.43. N43. 248
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24
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Kholdeeva O.A.
, Ivanchikova I.D.
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, Sorokin A.B.
, Skobelev I.Y.
, Talzi E.P.
Mechanistic Insights into Oxidation of 2-Methyl-1-naphthol with Dioxygen: Autoxidation or a Spin-Forbidden Reaction?
The Journal of Physical Chemistry B. 2011.
V.115. N42. P.11971-11983. DOI: 10.1021/jp2055975
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25
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Zalomaeva O.V.
, Kovalenko K.A.
, Chesalov Y.A.
, Melʹgunov M.S.
, Zaikovskii V.I.
, Kaichev V.V.
, Sorokin A.B.
, Kholdeeva O.A.
, Fedin V.P.
Iron Tetrasulfophthalocyanine Immobilized on Metal Organic Framework MIL-101: Synthesis, Characterization and Catalytic Properties
Dalton Transactions. 2011.
V.40. N7. P.1441-1444. DOI: 10.1039/c0dt01474e
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26
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Zalomaeva O.V.
, Sorokin A.B.
, Kholdeeva O.A.
Clean Catalytic Oxidation of 8-Hydroxyquinoline to Quinoline-5,8-dione with tBuOOH in the Presence of Covalently Bound FePcS-SiO2 Catalysts
Green Chemistry. 2010.
V.12. N6. P.1076-1082. DOI: 10.1039/b923674k
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27
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Zalomaeva O.V.
, Ivanchikova I.D.
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Kinetics and Mechanism of the Oxidation of Alkyl Substituted Phenols and Naphthols with tBuOOH in the Presence of Supported Iron
New Journal of Chemistry. 2009.
V.33. N5. P.1031-1037. DOI: 10.1039/b821534k
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28
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Заломаева О.В.
, Иванчикова И.Д.
, Холдеева О.А.
, Сорокин А.Б.
Экологически чистые методы получения витаминов и функционализированных хинонов
Российский химический журнал. 2008.
Т.52. №1. С.57-66.
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29
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Kholdeeva O.A.
, Zalomaeva O.V.
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, Rossi M.
New Routes to Vitamin K3
Catalysis Today. 2007.
V.121. N1-2. P.58-64. DOI: 10.1016/j.cattod.2006.11.011
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30
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Zalomaeva O.V.
, Kholdeeva O.A.
, Sorokin A.B.
Preparation of 2-Methyl-1,4-Naphthoquinone (vVitamin K3) by Catalytic Oxidation of 2-Methyl-1-Naphthol in the Presence of Iron Phthalocyanine Supported Catalyst
Comptes Rendus Chimie. 2007.
V.10. N7. P.598-603. DOI: 10.1016/j.crci.2007.02.001
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31
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Zalomaeva O.V.
, Trukhan N.N.
, Ivanchikova I.D.
, Panchenko A.A.
, Roduner E.
, Talsi E.P.
, Sorokin A.B.
, Rogov V.A.
, Kholdeeva O.A.
EPR Study on the Mechanism of H2O2-Based Oxidation of Alkylphenols over Titanium Single-Site Catalysts
Journal of Molecular Catalysis A: Chemical. 2007.
V.277. N1-2. P.185-192. DOI: 10.1016/j.molcata.2007.07.047
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32
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Zalomaeva O.V.
, Kholdeeva O.A.
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H2O2-Based Oxidation of Functionalized Phenols Containing Several Oxidizable Sites to p-Quinones Using a Mesoporous Titanium-Slicate Catalyst
Green Chemistry. 2006.
V.8. N10. P.883-886. DOI: 10.1039/b606120f
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33
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Zalomaeva O.V.
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Access to Functionalized Quinones via the Aromatic Oxidation of Phenols Bearing an Alcohol or Olefinic Function Catalyzed by Supported Iron Phthalocyanine
New Journal of Chemistry. 2006.
V.30. N12. P.1768-1773. DOI: 10.1039/b608834a
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34
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Kholdeeva O.A.
, Zalomaeva O.V.
, Shmakov A.N.
, Melgunov M.S.
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Oxidation of 2-Methyl-1-Naphthol with H2O2 over Mesoporous Ti-MMM-2 Catalyst
Journal of Catalysis. 2005.
V.236. N1. P.62-68. DOI: 10.1016/j.jcat.2005.09.022
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35
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Гаврилов В.Ю.
, Зенковец Г.А.
, Заломаева О.В.
, Цыбуля С.В.
Формирование пористой структуры оксидных ванадий-титан-фосфорных катализаторов при термообработке
Кинетика и катализ. 2004.
Т.45. №5. С.742-747.
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36
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Gavrilov V.Y.
, Zenkovets G.A.
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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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