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Zeolite nanocomposites with variable acid and basic properties: effective catalysts for fine chemical synthesis and industrial reaction.
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- Applied Nanoscience, 2023, v. 13, n. 12, p. 7545, doi. 10.1007/s13204-023-02955-7
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- Article
Baeyer–Villiger oxidation of cyclic ketones with H<sub>2</sub>O<sub>2</sub> over mesoporous Sn- and Zr-BEA zeolites.
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- Applied Nanoscience, 2023, v. 13, n. 10, p. 6919, doi. 10.1007/s13204-023-02816-3
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Experimental and quantum-chemical studies of electronic and spectral properties of titanium dioxide, modified with tin and lanthanum.
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- Applied Nanoscience, 2023, v. 13, n. 7, p. 5345, doi. 10.1007/s13204-023-02797-3
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Mg-, Ti-, Zn-containing beta zeolites in the Gewald reaction.
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- Applied Nanoscience, 2023, v. 13, n. 7, p. 5125, doi. 10.1007/s13204-022-02711-3
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- Article
Synthesis of zinc molybdate nanostructures via an alternative green approach.
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- Applied Nanoscience, 2023, v. 13, n. 7, p. 4873, doi. 10.1007/s13204-022-02640-1
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- Article
Effect of the C and S additives on structural, optical, and photocatalytic properties of TiO<sub>2</sub>.
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- Applied Nanoscience, 2019, v. 9, n. 5, p. 695, doi. 10.1007/s13204-018-0838-1
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- Article
IR SPECTRAL MANIFESTATION OF TIN IMPURITY SITES IN TITANIUM DIOXIDE.
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- Chemistry, Physics & Technology of Surface / Khimiya, Fizyka ta Tekhnologiya Poverhni, 2021, v. 12, n. 3, p. 184, doi. 10.15407/hftp12.03.184
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nTHE INFLUENCE OF TITANIUM DIOXIDE MODIFICATION BY SULFUR AND CARBON ON PHYSICO-CHEMICAL AND PHOTOCATALYTIC PROPERTIES.
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- Chemistry, Physics & Technology of Surface / Khimiya, Fizyka ta Tekhnologiya Poverhni, 2019, v. 10, n. 4, p. 377, doi. 10.15407/hftp10.04.377
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Matrix and bulk synthesis, activation and functionalization of nanoporous carbon adsorbents.
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- Chemistry, Physics & Technology of Surface / Khimiya, Fizyka ta Tekhnologiya Poverhni, 2015, v. 6, n. 1, p. 97, doi. 10.15407/hftp06.01.097
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- Article
Catalytic Properties of Hierarchical CsAlTi-BEA Zeolites in the Process of Conversion of Styrene with Co<sub>2</sub> for Cyclic Carbonate Formation.
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- Theoretical & Experimental Chemistry, 2023, v. 59, n. 5, p. 350, doi. 10.1007/s11237-024-09794-9
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Physical and Chemical Characteristics and Functional Properties of Carbon Nitride Materials Obtained by Template Synthesis.
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- Theoretical & Experimental Chemistry, 2020, v. 55, n. 6, p. 392, doi. 10.1007/s11237-020-09631-9
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- Article
Mechanochemical Preparation of Nanodispersed Mo3@CeO2 Composite and Its Catalytic Properties in Oxidation of Ethanol.
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- Theoretical & Experimental Chemistry, 2019, v. 55, n. 3, p. 215, doi. 10.1007/s11237-019-09611-8
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- Article
New Approaches to Creation of Micro- and Mesoporous Functional Materials.
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- Theoretical & Experimental Chemistry, 2017, v. 53, n. 5, p. 327, doi. 10.1007/s11237-017-9532-8
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- Article
Influence of SBA-15 Zeolitization Conditions on Structural-Sorption and Acidic Properties of Micro-Mesoporous AluminosilicateS SBA-15/ZSM-5.
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- Theoretical & Experimental Chemistry, 2017, v. 53, n. 1, p. 60, doi. 10.1007/s11237-017-9502-1
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- Article
Porosity Enhancement of Silicon Carbide by Preparation in Micro-Mesoporous Zeolite-Like Matrices.
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- Theoretical & Experimental Chemistry, 2017, v. 52, n. 6, p. 358, doi. 10.1007/s11237-017-9490-1
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Preparation, Physicochemical Properties, and Functional Characteristics of Carbon Nitride: a Review.
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- Theoretical & Experimental Chemistry, 2016, v. 52, n. 5, p. 265, doi. 10.1007/s11237-016-9478-2
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- Article
Effect of the Structure and Acidity of Micro-Mesoporous Alumosilicates on Their Catalytic Activity in Cumene Cracking.
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- Theoretical & Experimental Chemistry, 2016, v. 52, n. 4, p. 212, doi. 10.1007/s11237-016-9470-x
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Preparation, Physicochemical Properties and Functional Characteristics of Micromesoporous Zeolite Materials.
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- Theoretical & Experimental Chemistry, 2016, v. 51, n. 6, p. 339, doi. 10.1007/s11237-016-9435-0
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- Article
Structure and Porosity of Silicon Carbide Produced by Matrix Method.
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- Theoretical & Experimental Chemistry, 2015, v. 51, n. 5, p. 320, doi. 10.1007/s11237-015-9432-8
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- Article
Effect of Dual Template Synthesis Conditions on Structural/Sorption Properties and Acidity of Microporous/Mesoporous ZSM-5/MCM-41 Aluminosilicates.
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- Theoretical & Experimental Chemistry, 2013, v. 49, n. 4, p. 261, doi. 10.1007/s11237-013-9325-7
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- Article
Photocatalytic Reduction of CO Using Titanium Dioxide and Metal-Semiconductor Nanostructures Made from Titanium Dioxide.
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- Theoretical & Experimental Chemistry, 2013, v. 49, n. 3, p. 172, doi. 10.1007/s11237-013-9311-0
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Photochemical reduction of graphene oxide in colloidal solution.
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- Theoretical & Experimental Chemistry, 2012, v. 48, n. 1, p. 2, doi. 10.1007/s11237-012-9235-0
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- Article
The Influence of Sulphur Dopants on Optical, Textural, Structural, and Photocatalytic Properties of Titanium Dioxide.
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- Nanosistemi, Nanomateriali, Nanotehnologii, 2020, v. 18, n. 3, p. 681, doi. 10.15407/nnn.18.03.681
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Physicochemical and photocatalytic properties of tin dioxide supported onto silica gel.
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- Journal of Thermal Analysis & Calorimetry, 2020, v. 140, n. 5, p. 2131, doi. 10.1007/s10973-019-08896-0
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- Article
Preparation of Betulone Via Betulin Oxidation Over Ru Nanoparticles Deposited on Graphitic Carbon Nitride.
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- Catalysis Letters, 2019, v. 149, n. 3, p. 723, doi. 10.1007/s10562-018-02649-8
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PLANE TORSION WAVES IN THE POINCARÉ GAUGE GRAVITATION THEORY.
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- Russian Physics Journal, 2012, v. 55, n. 6, p. 726, doi. 10.1007/s11182-012-9873-7
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Low temperature radiolysis of fullerene C<sub>60</sub> and its solutions in isopropylbenzene and N-vinylpyrrolidone.
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- High Energy Chemistry, 2009, v. 43, n. 5, p. 354, doi. 10.1134/S001814390905004X
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Photocatalytic hydrogen evolution and Rifampicinum destruction over carbon-modified TiO<sub>2</sub>.
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- Research on Chemical Intermediates, 2022, v. 48, n. 1, p. 13, doi. 10.1007/s11164-021-04609-1
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Transition metal oxides supported onto silica gel as visible light-driven photocatalysts.
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- Research on Chemical Intermediates, 2020, v. 46, n. 9, p. 3997, doi. 10.1007/s11164-020-04187-8
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- Article
Cerium-doped mesoporous BaTiO<sub>3</sub>/TiO<sub>2</sub> nanocomposites: structural, optical and photocatalytic properties.
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- Research on Chemical Intermediates, 2019, v. 45, n. 8, p. 4029, doi. 10.1007/s11164-019-03888-z
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