Search results for "PALLADIUM"

showing 10 items of 956 documents

Influence of the Ligand of Palladium(0) Complexes on the Rate of the Oxidative Addition of Aryl and Activated Alkyl Bromides: Csp2 −Br versus Csp3 −B…

2017

Kinetic data by means of electrochemical techniques are used to characterize the reactivity of aryl bromides and activated alkyl bromides in oxidative addition to palladium(0) complexes generated from three precursors: Pd0(PPh3)4, {Pd0(dba)2 + 2 PPh3} and {Pd0(dba)2 + 2 P(o Tol)3} in DMF at 25 °C. It is established that, for the investigated substrates 1-6 and 7-11, the oxidative addition at the Csp3 Br bond is much faster than that at the Csp2 Br bond when the palladium(0) is ligated by two PPh3. This explains why the regioselectivity in Suzuki-Miyaura reactions performed from substrates bearing both Csp2 Br and Csp3 Br groups is in favour of the substitution at the Csp3 Br bond. It is in …

chemistry.chemical_classification010405 organic chemistryConcerted reactionLigandArylOrganic ChemistryRegioselectivitychemistry.chemical_element010402 general chemistryPhotochemistry01 natural sciencesMedicinal chemistryOxidative additionCatalysis0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistryReactivity (chemistry)Physical and Theoretical ChemistryAlkylPalladiumChemCatChem
researchProduct

Intermolecular interactions in dictating the self-assembly of halogen derivatives of bis-(N-substituted oxamato)palladate(ii) complexes

2016

Three palladium(II) complexes of formula (n-Bu4N)2[Pd(4-Fpma)2] (1), (n-Bu4N)2[Pd(4-Clpma)2]·4H2O (2) and (n-Bu4N)2[Pd(4-Brpma)2]·4H2O (3) [n-Bu4N+ = tetra-n-butylammonium cation, 4-Fpma = N-4-fluorophenyloxamate, 4-Clpma = N-4-chlorophenyloxamate and 4-Brpma = N-4-bromophenyloxamate] have been prepared and their structures determined by single crystal X-ray diffraction. Each palladium(II) ion in 1–3 is four-coordinate with two oxygen and two nitrogen atoms from two fully deprotonated oxamate ligands building PdO2N2 square planar surroundings, the oxamate ligands exhibiting trans (1 and 2) and cis (3) dispositions. The fluoro substituent and the organic counterion in 1 are involved in C–H⋯F…

chemistry.chemical_classification010405 organic chemistryHydrogen bondStereochemistryGeneral Chemical EngineeringSupramolecular chemistrySubstituentCationic polymerizationchemistry.chemical_elementGeneral Chemistry010402 general chemistryRing (chemistry)01 natural sciences0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryMoleculeCounterionPalladiumRSC Advances
researchProduct

Palladium-Catalyzed C—C Coupling Reactions in the Enantioselective Synthesis of 2,4-Disubstituted 4,5-Dehydropiperidines Using Galactosylamine as a S…

2005

Abstract Stereoselective synthesis of enantiomerically pure 2,4-disubstituted piperidine derivatives, which are considered interesting pharmacophoric structures, was achieved starting with a tandem Mannich–Michael reaction sequence on O -pivaloylated N -galactosyl aldimines. Subsequent conversion of the thus formed 2-substituted dehydropiperidinones into the corresponding enol triflates was carried out by conjugate hydride addition and trapping the enolate with N , N -bis(trifluoromethanesulfonyl)aniline. Their Suzuki–Miyaura coupling with aryl and heteroaryl boronic acids was performed under conditions compatible with the carbohydrate structure, in particular, with the sensitive N -glycosi…

chemistry.chemical_classificationAldimineStereochemistryHydrideChemistryArylOrganic ChemistryEnantioselective synthesischemistry.chemical_elementGlycosidic bondGeneral MedicineEnolMedicinal chemistryCombinatorial chemistryCatalysisCatalysisInorganic Chemistrychemistry.chemical_compoundC c couplingPiperidinePhysical and Theoretical ChemistryPalladiumChemInform
researchProduct

Anaerobic Palladium-Catalyzed Chemoselective Oxidation of Allylic and Benzylic Alcohols with α-Bromo Sulfoxide as a Co-Oxidant.

2007

A chemoselective palladium-catalyzed anaerobic oxidation of allylic and benzylic alcohols using an α-bromo sulfoxide as a co-oxidant is described for the first time. The catalyst system is simple and has a long life because of the allowance of phosphane ligands under the non-aerobic conditions. The advantages of the described method include no overoxidation of primary alcohols to carboxylic acids because of the mild conditions applied, the tolerance of oxygen-sensitive functionalities such as a carbon-carbon double bond, an organothio group, or a diorganoamino group and the effective preparation of α,β-unsaturated aldehydes and ketones, resulting from the oxidation of primary and secondary …

chemistry.chemical_classificationAllylic rearrangementPrimary (chemistry)Double bondChemistryorganic chemicalsOrganic Chemistrychemistry.chemical_elementHomogeneous catalysisSulfoxideGeneral MedicineSulfurCatalysisCatalysischemistry.chemical_compoundAlcohol oxidationHeck reactionOrganic chemistryPalladiumChemInform
researchProduct

Cover Picture: Palladium-Catalyzed Arylation of Linear and Cyclic Polyamines (Eur. J. Org. Chem. 2/2005)

2005

The cover picture shows the model structures of four compounds among the hundred of arylated linear and cyclic polyamines prepared by palladium-catalyzed coupling of mono- and dihalogenoarenes with various aliphatic or aromatic polyamines. The reaction is strongly dependent on the nature and the concentration of the catalytic system, as well as the nature of the base. The competitive reaction between primary and secondary amines and the monoamination of dihalobenzenes have also been detailed in the article by R. Guilard et al. on p. 261 ff. In the following article by the same authors on p. 281 ff, the method has been applied to the synthesis of numerous nitrogen- and oxygen-containing macr…

chemistry.chemical_classificationAnthracenePrimary (chemistry)Base (chemistry)Organic Chemistrychemistry.chemical_elementAnthraquinoneMedicinal chemistryCatalysischemistry.chemical_compoundchemistryOrganic chemistryPhysical and Theoretical ChemistryPalladiumEuropean Journal of Organic Chemistry
researchProduct

Sequestering Ability of Aminopolycarboxylic (APCs) and Aminopolyphosphonic (APPs) Ligands Toward Palladium(II) in Aqueous Solution

2014

The binding capacity of three aminopolycarboxylates [nitrilotriacetic acid (NTA), ethylene-glycol-bis(2-aminoethyl ether)-N,N,N,N-tetraacetic acid (EGTA), and diethylenetriamine-N,N,N,NN-pentaacetic acid (DTPA)] and two aminopolyphosphonates {(1-hydroxyethane-1,1-diyl)bis(phosphonic acid) (HEDP) and [[(phosphonomethyl)imino]bis[2,1-ethanediylnitrilobis(methylene)]] tetrakis-phosphonic acid (DTPP)} toward palladium(II) ion was studied by potentiometric and spectrophotometric titrations at different temperatures (283.15 ≤ T/K ≤ 318.15) and ionic strengths (0.1 ≤ I/mol·dm -3 ≤ 1.0) in NaClO4. The hydrolysis of Pd2+ and the protonation of ligands were always taken into account in the speciation…

chemistry.chemical_classificationAqueous solutionGeneral Chemical EngineeringIodidePotentiometric titrationInorganic chemistryNitrilotriacetic acidchemistry.chemical_elementEtherProtonationGeneral ChemistryMedicinal chemistrycomplex formation Aminopolycarboxylic and aminopolyphosphonic ligands spectrophotometry palladium sequestration.chemistry.chemical_compoundchemistrySettore CHIM/01 - Chimica AnaliticaMethylenePalladium
researchProduct

Palladium(II) sequestration by phytate in aqueous solution. Speciation analysis and ionic medium effects.

2010

Environmental context.In the last 20 years, the demand for palladium and other platinum-group elements has intensified, causing a significant increase in their concentration in the environment, with particular accumulation in urban areas. Knowledge about Pd2+ speciation in aqueous media is fundamental for the understanding of its biological and environmental activity in contaminated areas. Phytic acid appears to be a good sequestering agent towards Pd2+ under various conditions, indicating its potential use in the remediation of contaminated sites. Abstract. Palladium(II) speciation in the presence of phytate (Phy12–) was studied by H+ ion selective electrode (ISE) potentiometry at 25°C in…

chemistry.chemical_classificationAqueous solutionMetal ions in aqueous solutionInorganic chemistryFluorescence spectrometrychemistry.chemical_elementcomplexes stability constantsPhytateIon selective electrodeDivalentMetalchemistryComplexesGeochemistry and PetrologyChemistry (miscellaneous)Ionic strengthvisual_artvisual_art.visual_art_mediumEnvironmental ChemistrySettore CHIM/01 - Chimica AnaliticaStability constantsComplexes; Stability constants; Phytate; PalladiumPalladiumPalladium
researchProduct

Palladium-Catalyzed Reaction of Boronic Acids with Chiral and Racemic ?-Bromo Sulfoxides.

2005

Palladium-catalyzed cross-coupling reactions of racemic α-bromo sulfoxides with boronic acids are carried out in either aqueous or nonaqueous medium with formation of a new C sp3−C sp2 bond. The arylation of chiral α-bromo sulfoxides occurs without racemization. The cross-coupling reaction is general and gives high yields with arylboronic acids substituted with either donor or acceptor groups but gives poor results with heteroarylboronic acids. The best yields are obtained using degassed solvents and CsF instead of aqueous base. The use of aqueous base and the presence of oxygen favor the homocoupling side reaction.

chemistry.chemical_classificationAqueous solutionchemistryBase (chemistry)Side reactionchemistry.chemical_elementOrganic chemistryGeneral MedicineOxygenAcceptorRacemizationPalladiumCatalysisChemInform
researchProduct

Bis(N-substituted oxamate)palladate(ii) complexes as effective catalysts for sustainable Heck carbon–carbon coupling reactions in n-Bu4NBr as the sol…

2015

Five bis(oxamato)palladate(II) complexes of the formulae (n-Bu4N)2[Pd(4-Fpma)2] (1), (n-Bu4N)2[Pd(4-Clpma)2] (2), (n-Bu4N)2[Pd(4-Brpma)2] (3), (n-Bu4N)2[Pd(4-Brpma)2]·H2O (3a), (n-Bu4N)2[Pd(4-MeOpma)2] (4) and (n-Bu4N)2[Pd(4-Isopma)2] (5) (n-Bu4N+ = tetra-n-butylammonium, 4-Fpma = N-4-fluorophenyloxamate, 4-Clpma = N-4-chlorophenyloxamate, 4-Brpma = N-4-bromophenyloxamate, 4-MeOpma = N-4-methoxyphenyloxamate and 4-isopma = N-4-isopropylphenyloxamate) have been easily prepared and characterized by spectroscopic methods and the crystal structures of two of them (3a and 4) have been determined by single crystal X-ray diffraction. Each palladium(II) ion in 3a and 4 is four-coordinate with two o…

chemistry.chemical_classificationArylInorganic chemistryIodidechemistry.chemical_elementCrystal structureMedicinal chemistryCoupling reactionCatalysisInorganic Chemistrychemistry.chemical_compoundchemistryBromideIonic liquidPalladiumInorganic Chemistry Frontiers
researchProduct

Sustainable carbon–carbon bond formation catalyzed by new oxamate-containing palladium(II) complexes in ionic liquids

2013

Abstract New and versatile bis(oxamato)palladate(II) complexes of formula ( n -Bu 4 N) 2 [Pd(2-Mepma) 2 ]·4H 2 O ( 1a ) and ( n -Bu 4 N) 2 [Pd(4-Mepma) 2 ]·2H 2 O·MeCN ( 1b ) ( n -Bu 4 N +  = tetra- n -buthylammonium, 2-Mepma =  N -2-methylphenyloxamate and 4-Mepma =  N -4-methylphenyloxamate) have been synthesized and characterized by spectroscopic methods and single crystal X-ray diffraction. Each palladium(II) ion in 1a and 1b is four-coordinate with two oxygen and two nitrogen atoms from two fully deprotonated oxamate ligands building a centrosymmetric square planar surrounding. Their catalytic role has been investigated for both Heck and Suzuki coupling reactions using a series of aryl…

chemistry.chemical_classificationArylOrganic ChemistryIodidechemistry.chemical_elementBiochemistryMedicinal chemistryCatalysisInorganic Chemistrychemistry.chemical_compoundchemistrySuzuki reactionCarbon–carbon bondBromideIonic liquidMaterials ChemistryPhysical and Theoretical ChemistryPalladiumJournal of Organometallic Chemistry
researchProduct