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Bimetallic Pt-IrO x /g-C 3 N 4 Photocatalysts for the Highly Efficient Overall Water Splitting under Visible Light.
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- Catalysts (2073-4344), 2024, v. 14, n. 4, p. 225, doi. 10.3390/catal14040225
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- Article
Pd-Bi-Based Catalysts for Selective Oxidation of Glucose into Gluconic Acid: The Role of Local Environment of Nanoparticles in Dependence of Their Composition.
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- Catalysts (2073-4344), 2024, v. 14, n. 1, p. 66, doi. 10.3390/catal14010066
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- Article
The Origin of the Size Effect in the Oxidation of CO on Supported Palladium Nanoparticles.
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- Catalysts (2073-4344), 2023, v. 13, n. 11, p. 1435, doi. 10.3390/catal13111435
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The Effect of Support on Catalytic Performance of Ni-Doped Mo Carbide Catalysts in 2-Methylfuran Production.
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- Catalysts (2073-4344), 2023, v. 13, n. 5, p. 870, doi. 10.3390/catal13050870
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- Article
Selectivity Control of CO 2 Reduction over Pt/g-C 3 N 4 Photocatalysts under Visible Light.
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- Catalysts (2073-4344), 2023, v. 13, n. 2, p. 273, doi. 10.3390/catal13020273
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- Article
The Formation of Mn-Ce-Zr Oxide Catalysts for CO and Propane Oxidation: The Role of Element Content Ratio.
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- Catalysts (2073-4344), 2023, v. 13, n. 1, p. 211, doi. 10.3390/catal13010211
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The Catalytic Performance of CO Oxidation over MnOx-ZrO 2 Catalysts: The Role of Synthetic Routes.
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- Catalysts (2073-4344), 2023, v. 13, n. 1, p. 57, doi. 10.3390/catal13010057
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- Article
Atomic Structure of Pd-, Pt-, and PdPt-Based Catalysts of Total Oxidation of Methane: In Situ EXAFS Study.
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- Catalysts (2073-4344), 2021, v. 11, n. 12, p. 1446, doi. 10.3390/catal11121446
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Effect of Temperature on the Hydrotreatment of Sewage Sludge-Derived Pyrolysis Oil and Behavior of Ni-Based Catalyst.
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- Catalysts (2073-4344), 2020, v. 10, n. 11, p. 1273, doi. 10.3390/catal10111273
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- Article
Highly Active CuFeAl-containing Catalysts for Selective Hydrogenation of Furfural to Furfuryl Alcohol.
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- Catalysts (2073-4344), 2019, v. 9, n. 10, p. 816, doi. 10.3390/catal9100816
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- Article
Kinetic and mechanistic study of CO oxidation over nanocomposite Cu−Fe−Al oxide catalysts.
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- ChemCatChem, 2020, v. 12, n. 19, p. 4911, doi. 10.1002/cctc.202000852
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- Article
Carbonized Melamine Cyanurate as a Palladium Catalyst Support for the Dehydrogenation of N-heterocyclic Compounds in LOHC Technology.
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- C, 2023, v. 9, n. 3, p. 83, doi. 10.3390/c9030083
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- Article
Influence of Pt Oxidation State on the Activity and Selectivity of g-C 3 N 4 -Based Photocatalysts in H 2 Evolution Reaction.
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- Applied Sciences (2076-3417), 2023, v. 13, n. 21, p. 11739, doi. 10.3390/app132111739
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- Article
Boron Carbonitride Films with Tunable Composition: LPCVD and PECVD Synthesis Using Trimethylamine Borane and Nitrogen Mixture and Characterization.
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- Applied Sciences (2076-3417), 2023, v. 13, n. 8, p. 4959, doi. 10.3390/app13084959
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- Article
Synthesis of Pt/Zn(OH)/CdZnS for the Photocatalytic Hydrogen Evolution from Aqueous Solutions of Organic and Inorganic Electron Donors Under Visible Light.
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- Topics in Catalysis, 2016, v. 59, n. 15/16, p. 1297, doi. 10.1007/s11244-016-0656-1
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- Article
Effect of Titania Regular Macroporosity on the Photocatalytic Hydrogen Evolution on Cd<sub>1-x</sub>Zn<sub>x</sub>S/TiO<sub>2</sub> Catalysts under Visible Light.
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- ChemCatChem, 2015, v. 7, n. 24, p. 4108, doi. 10.1002/cctc.201500897
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- Article
Efficient Photocatalytic Hydrogen Production over NiS-Modified Cadmium and Manganese Sulfide Solid Solutions.
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- Materials (1996-1944), 2022, v. 15, n. 22, p. 8026, doi. 10.3390/ma15228026
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- Article
Hydrotreatment of Anisole and Furfural as Model Compounds of Bio‐oil over Chromium Modified Nickel‐Based Catalysts.
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- ChemistrySelect, 2019, v. 4, n. 24, p. 7317, doi. 10.1002/slct.201901087
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- Article
The Formation of Mn-Ce Oxide Catalysts for CO Oxidation by Oxalate Route: The Role of Annealing Conditions.
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- Catalysis Letters, 2021, v. 151, n. 10, p. 2906, doi. 10.1007/s10562-021-03542-7
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- Article
Influence of Thermal Activation of Titania on Photoreactivity of Pt/TiO2 in Hydrogen Production.
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- Catalysis Letters, 2021, v. 151, n. 3, p. 748, doi. 10.1007/s10562-020-03321-w
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- Article
Effect of Calcination Temperature on Activity of Fe2O3–Al2O3 Nanocomposite Catalysts in CO Oxidation.
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- Catalysis Letters, 2020, v. 150, n. 12, p. 3377, doi. 10.1007/s10562-020-03250-8
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- Article
Photocatalysts Based on Graphite-like Carbon Nitride with a Low Content of Rhodium and Palladium for Hydrogen Production under Visible Light.
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- Nanomaterials (2079-4991), 2023, v. 13, n. 15, p. 2176, doi. 10.3390/nano13152176
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- Article
Copper-Modified Titania-Based Photocatalysts for the Efficient Hydrogen Production under UV and Visible Light from Aqueous Solutions of Glycerol.
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- Nanomaterials (2079-4991), 2022, v. 12, n. 18, p. N.PAG, doi. 10.3390/nano12183106
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Broadening the Action Spectrum of TiO 2 -Based Photocatalysts to Visible Region by Substituting Platinum with Copper.
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- Nanomaterials (2079-4991), 2022, v. 12, n. 9, p. 1584, doi. 10.3390/nano12091584
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Ni–Cu High-Loaded Sol–Gel Catalysts for Dehydrogenation of Liquid Organic Hydrides: Insights into Structural Features and Relationship with Catalytic Activity.
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- Nanomaterials (2079-4991), 2021, v. 11, n. 8, p. 2017, doi. 10.3390/nano11082017
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- Article
The Formation of Mn-Ce Oxide Catalysts for CO Oxidation by Oxalate Route: The Role of Manganese Content.
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- Nanomaterials (2079-4991), 2021, v. 11, n. 4, p. 988, doi. 10.3390/nano11040988
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- Article
Coupling Hydrogenation of Guaiacol with In Situ Hydrogen Production by Glycerol Aqueous Reforming over Ni/Al2O3 and Ni-X/Al2O3 (X = Cu, Mo, P) Catalysts.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 7, p. 1420, doi. 10.3390/nano10071420
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- Article
CuFeAl Nanocomposite Catalysts for Coal Combustion in Fluidized Bed.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 5, p. 1002, doi. 10.3390/nano10051002
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- Article
Insights into the Contribution of Oxidation-Reduction Pretreatment for Mn 0.2 Zr 0.8 O 2−δ Catalyst of CO Oxidation Reaction.
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- Materials (1996-1944), 2023, v. 16, n. 9, p. 3508, doi. 10.3390/ma16093508
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- Article