1
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Mironenko R.M.
, Belskaya O.B.
, Raiskaya E.A.
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, Kokhanovskaya O.A.
, Knyazheva O.A.
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2
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Knyazheva O.A.
, Kokhanovskaya O.A.
, Vasilevich A.V.
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, Bukhtiyarov A.V.
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Thermal Stability of Sulfonated Carbon Black
Thermochimica Acta. 2023.
V.728. 179593
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3
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Knyazheva O.A.
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, Drozdov V.A.
, Baklanova O.N.
, Arbuzov A.B.
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Morphology and Particle Size Distribution of Sulfonated Сarbon Black
Protection of Metals and Physical Chemistry of Surfaces. 2023.
V.59. N1. P.42-49. DOI: 10.1134/s207020512270006x
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4
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Kokhanovskaya O.A.
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, Lavrenov A.V.
, Drozdov V.A.
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Thermal-Oxidative Treatment to Control the Texture Characteristics of Carbon Black
Chemistry for Sustainable Development. 2023.
V.31. N1. P.32-39. DOI: 10.15372/CSD2023
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Knyazheva O.A.
, Baklanova O.N.
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, Arbuzov A.B.
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, Moiseenko M.A.
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Solid-Phase Synthesis of Nickel–Molybdenum Catalysts for Propylene Metathesis under Mechanical Activation
Catalysis in Industry. 2023.
V.15. N3. P.278-287. DOI: 10.1134/S2070050423030042
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6
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Baklanova O.N.
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Effect of the Aggregates Size and Oxygen Content of Carbon Black on Elastic Characteristics of Rubber
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V.79. P.9503-9521. DOI: 10.1007/s00289-021-03894-5
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7
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Baklanova O.N.
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Mechanochemical Activation as an Efficient Way to Obtain Catalytic Materials
Chemistry for Sustainable Development. 2022.
V.30. N1. P.15-25. DOI: 10.15372/CSD2022354
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8
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Kokhanovskaya O.A.
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Changes of the Physicochemical and Functional Properties of Carbon Black during Oxidative Treatment by the Ozone – Oxygen Mixture
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9
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Knyazheva O.A.
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Oxidative Dehydrogenation of Ethane to Ethylene on the Carbocatalyst
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Knyazheva O.A.
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Knyazheva O.A.
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Catalytic Dehydrogenation on Carbon
Solid Fuel Chemistry. 2020.
V.54. N6. P.345-353. DOI: 10.3103/S0361521920060051
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12
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Baklanova O.N.
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Influence of Mechanical Activation on the Properties of Oil Refining Supports and Catalysts
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V.90. N3. P.523-531. DOI: 10.1134/S1070363220030287
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13
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Baklanova O.N.
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From Mesopores to Micropores: a New Way to Control the Porous Structure of Carbon-Carbon Composites
AIP Conference Proceedings. 2019.
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14
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Knyazheva O.A.
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Physico-Mechanical Properties and Electrical Conductivity of Compositions Polypropylene – Carbon Black
AIP Conference Proceedings. 2019.
V.2141. 040020
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15
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Baklanova O.N.
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Mechanical Treatment as Highly Effective Method of Physico-Chemical Properties Control of Carbon Black
Microporous and Mesoporous Materials. 2019.
V.279. P.193-200. DOI: 10.1016/j.micromeso.2018.12.013
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16
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Baklanova O.N.
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Mechanochemistry of Carbon: Surface Functionalization and Formation of Carbides
AIP Conference Proceedings. 2019.
V.2143. 020046
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17
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Knyazheva O.A.
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Changes in the Morphology and Size of Carbon Black Agglomerates upon Mechanical Activation
Russian Journal of Applied Chemistry. 2017.
V.90. N12. P.1953-1960. DOI: 10.1134/S1070427217120096
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18
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Baklanova O.N.
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, Arbuzov A.B.
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Influence of Mechanical Activation Parameters on the Aggregate Size, Texture, and Functional Composition of the Surface of Carbon Black
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V.90. N12. P.1982-1989. DOI: 10.1134/S1070427217120138
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Afonasenko T.N.
, Bulavchenko O.A.
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, Tsybulya S.V.
, Tsyrulʹnikov P.G.
Effect of the Mechanical Activation of a Mixture of MnCO3 ⋅ mMn(OH)2 ⋅ nH2O and AlOOH as a Stage of the Preparation of a MnOx–Al2O3 Catalyst on Its Phase Composition and Catalytic Activity in CO Oxidation
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V.56. N3. P.359-368. DOI: 10.1134/S0023158415030015
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Bulavchenko O.A.
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MnO x -Al2O3 Catalysts for Deep Oxidation Prepared with the Use of Mechanochemical Activation: The Effect of Synthesis Conditions on the Phase Composition and Catalytic Properties
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V.55. N5. P.639-648. DOI: 10.1134/S0023158414050048
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Synthesis and Characterization of Massive Molybdenum Carbides and Supported CarbideContaining Catalysts Mo2C/C Prepared through Mechanical Activation
Catalysis in Industry. 2014.
V.14. N6. P.8-16. DOI: 10.1134/S2070050414010127
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Knyazheva O.A.
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Mechanochemical Synthesis of Nanocrystalline Nickel–Molybdenum Compounds and Their Morphology and Application in Catalysis: II. Effect of Mechanochemical Activation Parameters — Process Power Density and Exposure Time — on the Composition and Structure of Nickel–Molybdenum Compounds
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Knyazheva O.A.
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Mechanochemical Synthesis of Nanocrystalline Nickel–Molybdenum Compounds and Their Morphology and Application in Catalysis: III. Catalytic Properties of Massive Ni–Mo Sulfide Catalysts Synthesized Using Mechanochemical Activation
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V.55. N1. P.130-138. DOI: 10.1134/S0023158414010054
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24
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Pʹyanova L.G.
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Studies of the Effect of Surface Modification of Carbon Sorbents by Poly-N-vinylpyrrolidone Using a Complex of Physicochemical and Microbiological Methods
Protection of Metals and Physical Chemistry of Surfaces. 2013.
V.49. N4. P.430-439. DOI: 10.1134/S2070205113040114
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Likholobov V.A.
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Composition and Properties of Functional Groups on Surface of Carbon Sorbents Modified by Aminocaproic Acid
Protection of Metals and Physical Chemistry of Surfaces. 2011.
V.47. N2. P.181-190. DOI: 10.1134/S2070205111020134
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Likholobov V.A.
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Control of the Adsorption Capacity of a Carbon Sorbent with Respect to Protein Molecules by Surface Modification
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V.83. N3. P.406-413. DOI: 10.1134/S1070427210030079
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