Search results for "Catalyst"

showing 10 items of 516 documents

Influence of SMSI effect on the catalytic activity of a Pt(1%)/ Ce0.6Zr0.4O2 catalyst: SAXS, XRD, XPS and TPR investigations

2004

Abstract The steady-state activity of NO reduction by C3H6, in lean conditions, was studied on a Pt(1%)/Ce0.6Zr0.4O2 catalyst, in a plug-flow reactor, in the temperature range 100–500 °C. The influence of reductive pre-treatments on the catalytic performance at low temperature (250 °C) was investigated. Enhancement of the activity was found for the catalyst pre-treated in hydrogen at 350 °C as compared to the sample pre-treated in H2 at 800 and 1050 °C. Moreover, transient reactivity tests of NO reduction by hydrogen were also carried out. As previously observed, the sample reduced at 350 °C was the most active catalyst. In both types of reactions the temperature and the nature of pre-treat…

HydrogenProcess Chemistry and TechnologyReducing atmosphereInorganic chemistryAnalytical chemistrychemistry.chemical_elementAtmospheric temperature rangeCatalysisCatalysischemistryTransition metalX-ray photoelectron spectroscopyTemperature-programmed reductionPlatinumCerium compounds Catalysts capacity OSCGeneral Environmental Science
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Modelling electrocatalysis of hydroquinone oxidation by nicotinamide adenine dinucleaotide coenzyme encapsulated within SBA-15 and MCM-41 mesoporous …

2006

The electrochemical response of NADH associated to two mesoporous aluminosilicates, MCM-41 and SBA-15, is described upon attachment of such materials into polymer-film electrodes. The studied materials display a significant electrocatalytic activity towards the oxidation of 1,4-dihydrobenzoquinone, H2Q. Two models for describing the electrocatalytic process, based on the general theory of mediated electrocatalysis and the Lovric and Scholz formulation of the voltammetry of microparticles are discussed. Voltammetric and chronoamperometric data indicate that the electrocatalytic process involves the formation of a surface-confined NADH–H2Q adduct in the case of SBA-15, while a surface reactio…

HydroquinoneGeneral Chemical EngineeringElectrochemistryElectrocatalystMolecular sievechemistry.chemical_compoundMCM-41Chemical engineeringchemistryElectrochemistryOrganic chemistryCyclic voltammetryMesoporous materialVoltammetryElectrochimica Acta
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Accelerated dinuclear palladium catalyst identification through unsupervised machine learning.

2021

Although machine learning bears enormous potential to accelerate developments in homogeneous catalysis, the frequent need for extensive experimental data can be a bottleneck for implementation. Here, we report an unsupervised machine learning workflow that uses only five experimental data points. It makes use of generalized parameter databases that are complemented with problem-specific in silico data acquisition and clustering. We showcase the power of this strategy for the challenging problem of speciation of palladium (Pd) catalysts, for which a mechanistic rationale is currently lacking. From a total space of 348 ligands, the algorithm predicted, and we experimentally verified, a number…

Identification (information)MultidisciplinaryComputer sciencebusiness.industryUnsupervised learningHomogeneous catalysisArtificial intelligencebusinessMachine learningcomputer.software_genrecomputerPalladium catalystBottleneckScience (New York, N.Y.)
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DESIGN OF NOVEL IMIDAZOLIUM BASED NANOSTRUCTURES FOR SUSTAINABLE CATALYTIC APPLICATIONS

Imidazolium SaltHeterogeneous CatalystsCarbon Dioxide ConversionSettore CHIM/06 - Chimica OrganicaPolyhedral Oligomeric SilsesquioxaneCarbon NanostructureC-C CouplingPalladium
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A new cell for the study of in situ chemical reactions using X-ray absorption spectroscopy

2005

An in situ cell for reductive and oxidative treatments at different temperatures that allows the possibility of recording data as a function of temperature has been designed and constructed for X-ray absorption experiments at the GILDA beamline BM08 of ESRF. The cell is linked to a mass quadrupole spectrometer providing control of the reaction gases and monitoring of the products. The apparatus allows measurements to be performed both in transmission and fluorescence geometry. The cell was tested by studying the CO oxidation reaction promoted by a Pt/ceria-zirconia-supported catalyst. The CO(2) yield is correlated with the structural results confirming the existence of a strong metal-suppor…

In situNuclear and High Energy PhysicsAnalytical chemistryChemical reactionRedoxCatalysisSpecimen HandlingCatalysisthree-way catalystX-Ray DiffractionAbsorption (electromagnetic radiation)InstrumentationPlatinumX-ray absorption spectroscopyRadiationSpectrometerChemistryTemperatureSpectrometry X-Ray EmissionCarbon Dioxidein situ EXAFSOxygenYield (chemistry)Flow Injection AnalysisZirconiumOxidation-Reductionstrong metal support interaction
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Organocatalytic Enantioselective Friedel–Crafts Aminoalkylation of Indoles in the Carbocyclic Ring

2016

The first general catalytic method for the, so far elusive, enantioselective Friedel−Crafts functionalization of indoles in the carbocyclic ring is presented. This transformation contrasts with the usual tendency of these heterocycles to react at the azole ring. For this purpose, the four regioisomeric hydroxy carbocyclic-substituted indoles were reacted with several isatinderived ketimines, using a Cinchona alkaloid-based squaramide, in a low 0.5−5 mol % catalyst loading, as a bifunctional catalyst. This methodology allows the functionalization of indoles in every position of the carbocyclic ring in a regio- and enantioselective fashion, by switching only the position of the hydroxy group …

IndolesIsatin-derived ketiminesCinchona010402 general chemistryRing (chemistry)01 natural sciencesCatalysisReductive eliminationFriedel−Crafts reactionPhenolsAsymmetric catalysisOrganic chemistryFriedel–Crafts reactionbiologyOrganocatalysis010405 organic chemistryChemistrySquaramideEnantioselective synthesisQuímicaGeneral Chemistrybiology.organism_classification0104 chemical sciencesBifunctional catalystFISICA APLICADAOrganocatalysisACS Catalysis
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Influence of Au, Ag, and Cu Adatoms on Optical Properties of TiO2 (110) Surface: Predictions from RT-TDDFT Calculations

2022

This study was financially supported by Flag-ERA JTC To2Dox project (S.P.) and M-ERA-NET2 project SunToChem (E.A.K.). M.G.B. thanks the support from the Program for the Foreign Experts (Grant No. W2017011) offered by Chongqing University of Posts and Telecommunications and the National Foreign Experts Program for “Belt and Road Initiative” Innovative Talent Exchange (Grant No. DL2021035001L), Estonian Research Council grant PUT PRG111, European Regional Development Fund (TK141), NCN project 2018/31/B/ST4/00924. Institute of Solid State Physics, University of Latvia, as the Center of Excellence, has received funding from the European Union’s Horizon 2020 Framework Program H2020-WIDESPREAD-01…

Inorganic ChemistryCondensed Matter::Materials Sciencetime-dependent density functional theoryabsorption spectraphotocatalystGeneral Chemical EngineeringPhysics::Atomic and Molecular ClustersTiO2transition contribution mapsGeneral Materials Science:NATURAL SCIENCES::Physics [Research Subject Categories]Condensed Matter PhysicsTiO2; photocatalyst; time-dependent density functional theory; absorption spectra; transition contribution mapsCrystals
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Enhancing Performance of a Bis(arylimino)pyridine‐Iron Precatalyst for Ethylene Polymerization by Substitution with a 2,4‐Bis(4,4′‐dimethoxybenzhydry…

2021

A series of unsymmetrical 2-(2,4-bis(bis(4-methoxyphenyl)methyl)-6-MeC6H2N)-6-(1-(arylimino)ethyl)pyridine-iron halides has been synthesized and characterized. The molecular structure of two representative species was determined by the single-crystal X-ray diffraction. Activated with either MAO or MMAO, the precatalysts displayed high activity, reaching 2.19×107 g PE (mol Fe)−1 h−1 at 60 °C in ethylene polymerization. The microstructural analysis of the polymers obtained indicates highly linear polyethylene containing a vinyl chain end.

Inorganic ChemistryEthylene polymerizationchemistry.chemical_compoundPrecatalystsEthylene polymerizationChemistryGroup (periodic table)Substitution (logic)PyridineVinyl polyethyleneHigh activityIron(II)Medicinal chemistryEuropean Journal of Inorganic Chemistry
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New Insights into the Stoichiometric and Catalytic Reactivity of Unsaturated Pd 3 (dppm) 3 CO n + Clusters ( n = 0, 1) Towards Halocarbons – First Ev…

2005

The title clusters, Pd 3 (dppm) 3 (CO) + and Pd 3 (dppm) 3 (CO) 0 can be electrochemically generated from the 1- and 2-electron reductions, respectively, of the Pd 3 (dppm) 3 (CO) 2 + cluster [dppm = bis(diphenylphosphanyl)methane; Pd 3 2 + ]. Pd 3 + reacts in a stoichiometric ratio with methyl iodide, MeI, and benzyl bromide, BzBr, in THF to provide the corresponding Pd 3 (X) + adducts (X = I, Br respectively) as inorganic products. Other products are Bz 2 and PhMe for BzBr but, for MeI, no organic product was observed (since they are too volatile). In the presence of the same substrates, Pd 3 0 also reacts in a stoichiometric ratio to form the same organics and the Pd 3 -(X) + adducts (X …

Inorganic Chemistrychemistry.chemical_compoundchemistryBenzyl bromideYield (chemistry)Inorganic chemistryReactivity (chemistry)ElectrocatalystMedicinal chemistryStoichiometryCatalysisMethyl iodideAdductEuropean Journal of Inorganic Chemistry
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Non-oxidative dehydroaromatization of methane:an effective reaction regeneration cyclic operation for catalyst life extension

2015

[EN] Non-oxidative methane aromatization is an attractive direct route for producing higher hydrocarbons. It is highly selective to benzene despite the low conversion due to thermodynamic limitations, and Mo/H-ZSM-5, the first catalyst proposed for this reaction, is still considered as one of the most adequate. The major problem of this process is the severe catalyst deactivation due to the rapid build-up of carbonaceous deposits on the catalysts. Here we present an effective regeneration procedure that extends the life of Mo/zeolite based catalysts by combining reaction periods of 1.5 h with 0.5 h regeneration steps in a continuous cyclic mode and methane activation after each regeneration…

Inorganic chemistryAromatizationDeactivationCatalyst life extensionNon oxidativeHighly selective7. Clean energyElectron Microscopy Service of the UPVCatalysisMethaneCatalysischemistry.chemical_compoundchemistryZeolitesMethane aromatizationBenzeneZeoliteSelectivityReaction-regeneration cyclesMo/zeolites
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