Search results for "catalysi"

showing 10 items of 5985 documents

9,10-Phenanthrenedione as Visible-Light Photoredox Catalyst: A Green Methodology for the Functionalization of 3,4-Dihydro-1,4-Benzoxazin-2- Ones thro…

2018

A visible-light photoredox functionalization of 3,4-dihydro-1,4-benzoxazin-2-ones through a Friedel-Crafts reaction with indoles using an inexpensive organophotoredox catalyst is described. The reaction uses a dual catalytic system that is formed by a photocatalyst simple and cheap, 9,10-phenanthrenedione, and a Lewis acid, Zn(OTf)2. 5W white LEDs are used as visible-light source and oxygen from air as a terminal oxidant, obtaining the corresponding products with good yields. The reaction can be extended to other electron-rich arenes. Our methodology represents one of the most valuable and sustainable approach for the functionalization of 3,4-dihydro-1,4-benzoxazin-2-ones, as compared to th…

010402 general chemistrylcsh:Chemical technology01 natural sciencesCatalysisCatalysislcsh:Chemistrychemistry.chemical_compoundCatàlisiTryptophollcsh:TP1-1185Lewis acids and basesorganic_chemistryPhysical and Theoretical ChemistryFriedel-Crafts reactionFriedel–Crafts reaction010405 organic chemistryindolesCombinatorial chemistry0104 chemical scienceschemistrylcsh:QD1-999visible-light photocatalysis14-benzoxazin-2-onesPhotocatalysisSurface modificationorganophotoredox catalysisQuímica orgànicaDerivative (chemistry)Visible spectrum
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A concise route to MK-4482 (EIDD-2801) from cytidine.

2020

A two-step route to MK-4482 (EIDD-2801, 1) was developed consisting of an esterification and hydroxamination of cytidine. The selective acylation and direct amination eliminate the need for protecting and activating groups and proceed in overall yield of 75%, a significant advancement over the reported yield of 17%. The step count is reduced from five transformations to two, and expensive uridine is replaced with the more available cytidine.

010405 organic chemistryAcylationMetals and AlloysCytidineGeneral ChemistryCytidine010402 general chemistryHydroxylamines01 natural sciencesCombinatorial chemistryCatalysisUridine0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAcylationchemistry.chemical_compoundKineticschemistryYield (chemistry)Materials ChemistryCeramics and CompositesStep countAminationChemical communications (Cambridge, England)
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Unsymmetrical Iron P-NH-P' Catalysts for the Asymmetric Pressure Hydrogenation of Aryl Ketones.

2017

R.H.M. thanks NSERC Canada for a Discovery grant and the Canada Council for the Arts for a Killam Fellowship. This work was also made possible by the SCICOMP NMR facilities provided by the Canada Foundation for Innovation, project number 19119, and the Ontario Ministry of Research, Innovation and Science. The Deutscher Akademischer Austauschdienst (DAAD) is thanked for support for A.P. Calculations were performed using the facilities of SHARCNET and Scinet of Compute/Calcul Canada

010405 organic chemistryArylOrganic ChemistryNoyori asymmetric hydrogenationGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesCatalysischemistry.chemical_compoundchemistryOrganic chemistryChristian ministryChemistry (Weinheim an der Bergstrasse, Germany)
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Gold(II) Porphyrins in Photoinduced Electron Transfer Reactions

2019

Chemistry - a European journal 25(23), 5940 - 5949 (2019). doi:10.1002/chem.201900050

010405 organic chemistryArylOrganic ChemistryPhotoredox catalysisGeneral Chemistry010402 general chemistryPhotochemistry54001 natural sciencesRedoxPorphyrinCatalysisPhotoinduced electron transfer0104 chemical scienceslaw.inventionchemistry.chemical_compoundElectron transferchemistrylawddc:540AzideElectron paramagnetic resonance
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First copper(I) ferrocenyltetraphosphine complexes: possible involvement in Sonogashira cross-coupling reaction ?

2008

Preparation and characterization of the first examples of copper(I) ferrocenylpolyphosphine complexes are reported. The molecular structure of complex {P,P′,P′′-[1,1′,2,2′-tetrakis(diphenylphosphino)-4,4′-di-tert-butylferrocene]iodocopper(I)} (1) was solved by X-ray diffraction studies, and its fluxional behavior in solution was investigated by VT-31P NMR; both revealed a net triligated coordination preference of the ferrocenyl tetraphosphine Fc(P)4tBu with copper. The tetradentate ligand is an active auxiliary in Sonogashira alkynylation; therefore the general question of copper as a competitive coordination partner in the Pd/Cu-catalyzed Sonogashira reaction was raised and discussed. Elec…

010405 organic chemistryArylOrganic Chemistry[ CHIM.COOR ] Chemical Sciences/Coordination chemistrySonogashira couplingchemistry.chemical_element010402 general chemistry01 natural sciencesMedicinal chemistryCopperCoupling reaction0104 chemical sciencesCatalysisInorganic Chemistrychemistry.chemical_compoundchemistryPhenylacetyleneMolecule[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryComputingMilieux_MISCELLANEOUSPalladium
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The European Young Chemists Award 2016

2016

The future is in good hands! The European Young Chemist Award for 2016 was awarded at the 6th EuCheMS Chemistry Congress in Seville. Reflections on the participants and their chemistry from the Convener of the event, Professor Bruno Pignataro, are given in the Guest Editorial.

010405 organic chemistryChemistry (all)Organic ChemistryGeneral Chemistry010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesChemistry - A European Journal
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Palladium-catalyzed amination of aryl dibromides with secondary amines: synthetic and mechanistic aspects

1999

Abstract Diaminobenzenes are obtained starting from m- and p-dibromobenzenes and secondary amines in the presence of Pd(dba)2/P(o-tolyl)3and sodium tert-butoxide in moderate to good yields. Reductive dehalogenation of aryl dibromides is a major side reaction under these conditions. The study of this reaction has shown that the formation of reductive dehalogenation products occurs according to two independent ways. The first one proceeds via the well-known β-hydride elimination from amido-coordinated palladium complexes. The second one involves the formation of hydrido palladium complexes from amino-coordinated derivatives. Although our results do not allow us to propose a detailed mechanist…

010405 organic chemistryChemistryArylOrganic ChemistrySide reactionHalogenationchemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryCombinatorial chemistry0104 chemical sciencesCatalysischemistry.chemical_compoundDeprotonationDrug Discovery[CHIM]Chemical SciencesOrganic chemistryComputingMilieux_MISCELLANEOUSAminationPalladiumTetrahedron Letters
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A Cationic Oligomer as an Organic Template for Direct Synthesis of Aluminosilicate ITH Zeolite

2020

There are a large number of zeolites, such as ITH, that cannot be prepared in the aluminosilicate form. Now, the successful synthesis of aluminosilicate ITH zeolite using a simple cationic oligomer as an organic template is presented. Key to the success is that the cationic oligomer has a strong complexation ability with aluminum species combined with a structural directing ability for the ITH structure similar to that of the conventional organic template. The aluminosilicate ITH zeolite has very high crystallinity, nanosheet-like crystal morphology, large surface area, fully four-coordinated Al species, and abundant acidic sites. Methanol-to-propylene (MTP) tests reveal that the Al-ITH zeo…

010405 organic chemistryChemistryCationic polymerizationchemistry.chemical_elementGeneral MedicineGeneral Chemistry010402 general chemistryCrystal morphology01 natural sciencesOligomerCatalysis0104 chemical scienceschemistry.chemical_compoundCrystallinityChemical engineeringAluminosilicateAluminiumZeoliteSelectivityAngewandte Chemie International Edition
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Nucleophilic iodonium interactions (NIIs) in 2-coordinate iodine(i) and silver(i) complexes

2021

The generality of nucleophilic iodonium interactions (NIIs) has been demonstrated by preparing a range of silver(i) and iodonium (I+) complexes and studying their 15N NMR chemical shifts, with the first example of a NII-complex involving a 2-coordinate silver(i) complex being confirmed by X-ray crystallography, and its nucleophilicity studied by DFT calculations.

010405 organic chemistryChemistryChemical shiftMetals and Alloyschemistry.chemical_elementGeneral Chemistry010402 general chemistryIodine01 natural sciencesCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNucleophileComputational chemistryMaterials ChemistryCeramics and CompositesChemical Communications
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Ethene/norbornene copolymerization with (isodicyclopentadienyl)titanium complex-MAO catalyst

2007

Norbornene (NB) homopolymerization and ethene/NB copolymerizations with a silylene-bridged (isodicyclopentadienyl)(tert-butylamido)titanium dichloride-methylalumoxane (MAO) catalyst system were investigated. This catalytic system shows no efficiency towards NB homopolymerization but produces poly(ethene-co-norbornene)s. An increase in the initial NB feed content leads to a loss of copolymerization activity as well as NB copolymer incorporation. The structure of the isodicyclopentadienyl fragment (IsodiCp) has a strong limiting effect on comonomer incorporation possibilities.

010405 organic chemistryChemistryComonomeriso(dicyclopentadienyl)titaniumchemistry.chemical_elementGeneral ChemistryLimitingethene/norbornene copolymerization010402 general chemistry01 natural sciencescatalysts0104 chemical sciencesCatalysis[ CHIM.POLY ] Chemical Sciences/Polymerschemistry.chemical_compound[CHIM.POLY]Chemical Sciences/PolymersPolymer chemistryCopolymeraluminoxanesComputingMilieux_MISCELLANEOUSTitaniumNorbornene
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