Search results for "Organic Chemicals"

showing 10 items of 728 documents

Titanium (IV) chloride complexes with salen ligands supported on magnesium carrier: Synthesis and use in ethylene polymerization

2009

The magnesium support with the formula MgCl 2 (THF) 0.32 (Et 2 AlCl) 0.36 was used for immobilization of salen complexes of titanium [Ti(salen)Cl 2 , Ti(salen(O-Me) 2 )Cl 2 ]. The effects of the catalyst composition (i.e. type of titanium complex and type of activator), polymerization temperature, polymerization time, and the effect of comonomer (1-octene) on the activity of the obtained supported catalysts, on the polymer characteristics (molecular weight, molecular weight distribution, melting point), and on the polymer morphology were studied. The findings were compared to those obtained for corresponding unsupported systems. Catalysts immobilization results in considerable changes in ca…

inorganic chemicalschemistry.chemical_classificationpolyethyleneZiegler‐Natta polymerizationPolymers and PlasticssupportsComonomerOrganic Chemistrychemistry.chemical_elementPolymerPolyethylenecatalystsCatalysischemistry.chemical_compoundchemistryPolymerizationMetal salen complexesPolymer chemistryMaterials ChemistryMolar mass distributiontitanium (IV) salen complexesTitaniumJournal of Polymer Science. Part A : Polymer Chemistry
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Reaction of 2-acetyltetralone with some esters of benzoic acid

1986

In order to investigate the pharmacological screening of a number of pyran-4-ones their synthesis by cyclization with sulphuric acid of the corresponding 1,3,5-triketones has been carried out with high yields. In the course of preparation of the latter the reaction of 2-acetyltetralone with some esters of benzoic acid derivatives has been studied and in particular, for a number of them, an interesting nucleophilic substitution of a chlorine atom with an alkoxy group on a benzenic nucleus has been evidenced.

inorganic chemicalschemistry.chemical_compoundBicyclic moleculechemistryOrganic ChemistryChlorine atomAlkoxy groupNucleophilic substitutionTriketoneOrganic chemistryAcid hydrolysisSulfuric acidBenzoic acidJournal of Heterocyclic Chemistry
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Cholesterol protein interaction - the issue of specificity

2009

inorganic chemicalschemistry.chemical_compoundBiochemistryChemistryCholesterolBiophysicsBiophysical Journal
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ChemInform Abstract: Reaction of 2-Acetyltetralone with Some Esters of Benzoic Acid.

1987

In order to investigate the pharmacological screening of a number of pyran-4-ones their synthesis by cyclization with sulphuric acid of the corresponding 1,3,5-triketones has been carried out with high yields. In the course of preparation of the latter the reaction of 2-acetyltetralone with some esters of benzoic acid derivatives has been studied and in particular, for a number of them, an interesting nucleophilic substitution of a chlorine atom with an alkoxy group on a benzenic nucleus has been evidenced.

inorganic chemicalschemistry.chemical_compoundChemistryChlorine atomAlkoxy groupNucleophilic substitutionOrder (group theory)General MedicineMedicinal chemistryBenzoic acidChemInform
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Difference in the behavior of methyl (S)-?-bromopropionate in its addition to trimethylvinylsilane depending on the method of initiation

1996

The addition of methyl (S)-2-bromopropionate to trimethylvinylsilane initiated by systems based on iron pentacarbonyl affords a racemic adduct and is accompanied by racemization of the unreacted chiral ester. In the presence of benzoyl peroxide, the reaction proceeds similarly, but no racemization of the starting chiral ester occurs.

inorganic chemicalschemistry.chemical_compoundChemistryorganic chemicalsmedicineOrganic chemistryGeneral ChemistryBenzoyl peroxideMedicinal chemistryRacemizationIron pentacarbonylAdductmedicine.drugRussian Chemical Bulletin
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Novel oxybispyridylboronic acids: synthesis and study of their reactivity in Suzuki-type cross-coupling reactions

2007

Abstract This paper sets forth the synthesis of novel oxybispyridylboronic acids, which are prepared from the corresponding halo-oxybispyridines via halogen–metal exchange using n-butyllithium and treatment with triisopropylborate. A range of efficient cross-coupling reactions of these novel boronic acids with selected aryl halides is described. This strategy produces novel pyridylethers of interest in cholinergic medicinal chemistry.

inorganic chemicalschemistry.chemical_compoundchemistryArylOrganic ChemistryDrug DiscoveryOrganic chemistryHalideReactivity (chemistry)General MedicineBiochemistryCombinatorial chemistryCoupling reactionTetrahedron
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Bifunctional Acid-Base Catalysis

2011

Acid-base catalysis with bifunctional catalysts is a very prominent catalytic strategy in both small-molecule organocatalysts as well as enzyme catalysis. In both worlds, small-molecule catalysts and enzymatic catalysis, a variety of different general acids or hydrogen bond donors are used. In this chapter, important parallels between small molecule catalysts and enzymes are discussed, and a comparison is also made to the emerging field of frustrated Lewis pair catalysis.

inorganic chemicalschemistry.chemical_compoundchemistryHydrogen bondTetrahedral carbonyl addition compoundOxyanion holeBifunctionalCombinatorial chemistryFrustrated Lewis pairBifunctional catalystCatalysisEnzyme catalysis
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Soluble/MOF-Supported Palladium Single Atoms Catalyze the Ligand-, Additive-, and Solvent-Free Aerobic Oxidation of Benzyl Alcohols to Benzoic Acids.

2021

Metal single-atom catalysts (SACs) promise great rewards in terms of metal atom efficiency. However, the requirement of particular conditions and supports for their synthesis, together with the need of solvents and additives for catalytic implementation, often precludes their use under industrially viable conditions. Here, we show that palladium single atoms are spontaneously formed after dissolving tiny amounts of palladium salts in neat benzyl alcohols, to catalyze their direct aerobic oxidation to benzoic acids without ligands, additives, or solvents. With this result in hand, the gram-scale preparation and stabilization of Pd SACs within the functional channels of a novel methyl-cystein…

inorganic chemicalschemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryCatalysisCatalysisMetalColloid and Surface ChemistryAtom economyMetal·lúrgiaDissolutionSolvent freeChemistryLigandQuímicaGeneral ChemistryCombinatorial chemistry0104 chemical sciencesSoluble/MOFOrganic reactionAlcoholsvisual_artvisual_art.visual_art_mediumPalladiumJournal of the American Chemical Society
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Direct arylation of heteroaromatic compounds with congested, functionalised aryl bromides at low palladium/triphosphane catalyst loading.

2011

International audience; A new ferrocenyl triphosphane ligand associated to palladium was found to be an efficient catalyst for the direct coupling of highly congested, functionalised aryl bromides with a variety of heteroarenes. These coupling reactions can generally be performed by using a low-loading (0.1-0.5 mol%) of the catalyst. The present protocol tolerates important and useful functional groups, which allows for further elaboration into more sophisticated heterocyclic molecules. The straightforward arylation of heteroaromatic compounds with congested ortho-substituted aryl bromides may permit further convergent syntheses of diverse ligands, biologically active molecules and molecula…

inorganic chemicalschemistry.chemical_element010402 general chemistry01 natural sciencesCatalysisCoupling reactionCatalysis[ CHIM.CATA ] Chemical Sciences/Catalysischemistry.chemical_compoundMoleculeOrganic chemistryEfficient catalystaryl bromidesheterocycles010405 organic chemistryChemistryLigandArylOrganic Chemistryferrocenyl polyphosphaneGeneral Chemistry[CHIM.CATA]Chemical Sciences/Catalysispalladium0104 chemical sciencesC[BOND]H activationTriphosphanePalladium
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ORR Activity and Stability of Co-N/C Catalysts Based on Silicon Carbide Derived Carbon and the Impact of Loading in Acidic Media

2018

This work was supported by the EU through the European Regional Development Fund under projects TK141 “Advanced materials and high-technology devices for energy recuperation systems” (2014-2020.4.01.15-0011), NAMUR ”Nanomaterials - research and applications” (3.2.0304.12-0397) and by the Estonian institutional research grant No. IUT20-13.

inorganic chemicalschemistry.chemical_element02 engineering and technology010402 general chemistryElectrochemistry01 natural sciences7. Clean energyCatalysisElectron transferchemistry.chemical_compoundX-ray photoelectron spectroscopy:NATURAL SCIENCES:Physics [Research Subject Categories]Materials ChemistryElectrochemistrySilicon carbideheterocyclic compoundsRenewable Energy Sustainability and the EnvironmentChemistryorganic chemicals021001 nanoscience & nanotechnologyCondensed Matter PhysicsNitrogen0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringDegradation (geology)0210 nano-technologyCarbonJournal of The Electrochemical Society
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