Search results for "ionic"

showing 10 items of 2016 documents

Synthesis and thermoresponsive properties of four arm, amphiphilic poly(tert-butyl-glycidylether)-block-polyglycidol stars

2011

Abstract A series of four arm stars with copolymer arms composed of poly(tert-butyl-glycidylether)-b-polyglycidol were prepared using a multi-step process based on anionic ring-opening polymerization. Control of the length of the arms and the number of functional (hydroxyl) reactive groups was achieved by anionic polymerization. Stars with molar masses up to 12200 g/mol were prepared. The amphiphilic character of the star structure was varied using different polyglycidol block lengths. The star structure and molar mass of the obtained stars were characterized by SEC–MALLS and NMR spectroscopy. The temperature behavior of an aqueous solution of the obtained polymers was also investigated. Th…

chemistry.chemical_classificationendocrine systemMaterials scienceMolar massAqueous solutionPolymers and PlasticsOrganic ChemistryNuclear magnetic resonance spectroscopyPolymerAnionic addition polymerizationchemistryPolymerizationAmphiphilePolymer chemistryMaterials ChemistryCopolymerPolymer
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Speciation of trialkyltin(IV) cations in natural fluids

2004

The hydrolysis of (CH(3))(3)Sn(+), (C(2)H(5))(3)Sn(+) and (C(3)H(7))(3)Sn(+) has been studied in a Synthetic Seawater (SSW) ionic medium simulating the major composition of natural seawater, at different salinities (5 less than or equal to S less than or equal to 45), and at t = 25 degreesC. Interactions with anionic components of SSW, considered as single sea salt, are determined by means of a complex formation model. By potentiometric measurements (ISE-H(+) and ISE-F(-) electrodes), the model has been extended to also consider interactions of organotins with carbonate and fluoride ions, which are other important components of seawater. Literature and new values of hydrolysis constants in …

chemistry.chemical_classificationfood.ingredientChemistryHydrolysisSea saltmedia_common.quotation_subjectInorganic chemistryIonic bondingArtificial seawaterSalt (chemistry)General ChemistryOceanographytrialkyltin(IV)SpeciationHydrolysisfoodIonic strengthEnvironmental ChemistrySeawaterIonic strength Protonation protonation constantsHydrolysis; trialkyltin(IV); Natural FluidsNatural FluidsWater Science and Technologymedia_commonMarine Chemistry
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Cationic Au Nanoparticle Binding with Plasma Membrane-like Lipid Bilayers: Potential Mechanism for Spontaneous Permeation to Cells Revealed by Atomis…

2014

Despite being chemically inert as a bulk material, nanoscale gold can pose harmful side effects to living organisms. In particular, cationic Au nanoparticles (AuNP+) of 2 nm diameter or less permeate readily through plasma membranes and induce cell death. We report atomistic simulations of cationic Au nanoparticles interacting with realistic membranes and explicit solvent using a model system that comprises two cellular compartments, extracellular and cytosolic, divided by two asymmetric lipid bilayers. The membrane-AuNP+ binding and membrane reorganization processes are discovered to be governed by cooperative effects where AuNP+, counterions, water, and the two membrane leaflets all contr…

chemistry.chemical_classificationta114ta221Cationic polymerizationNanoparticlePermeationSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGeneral EnergyMembranechemistryExtracellularBiophysicsOrganic chemistryPhysical and Theoretical ChemistryCounterionLipid bilayerta116Cellular compartment
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Polymerization of methyl and phenyl oxazoline initiated with alkyl chloroformates

2010

It has been shown that alkyl chloroformates are capable of initiating the polymerization of oxazolines. Esters itself initiate rather slowly and the polymerization proceeds via covalent growing species. Exchange of counter ions with triflate or iodide anions leads to faster initiation and higher reaction rates. The polymerization is of living character.

chemistry.chemical_classificationtechnology industry and agricultureChain transfermacromolecular substancesGeneral ChemistryOxazolinePhotochemistryLiving free-radical polymerizationchemistry.chemical_compoundChain-growth polymerizationchemistryPolymerizationPolymer chemistryReversible addition−fragmentation chain-transfer polymerizationIonic polymerizationAlkylBulletin des Sociétés Chimiques Belges
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Synthesis of Symmetric Ethers Using Monocationic and Dicationic Acidic Ionic Liquids

2018

A series of monocationic and dicationic -SO3H functionalized Brønsted acidic ionic liquids (BAILs) are synthesized using different amines int.al., N,N,N′,N′-tetramethylethylenediamine, 1-methylimidazole, pyridine and alkylating agents 1,3-propane- and 1,4-butanesultones. The Hammett acidity (H0) and thermal properties by TG-DSC techniques are investigated. These ionic liquids have been applied to catalyze the dehydration reaction of aliphatic long chain alcohols (1-heptanol, 1-octanol, 1-decanol) at 195 °C. The optimization of reaction conditions and use of dicationic ionic liquids allow to reach rather high yields of symmetric diheptyl ether and dioctyl ether. The reusability of ionic liqu…

chemistry.chemical_compound010405 organic chemistryMechanics of MaterialsChemistryMechanical EngineeringPolymer chemistryIonic liquidGeneral Materials Science010402 general chemistry01 natural sciences0104 chemical sciencesKey Engineering Materials
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ChemInform Abstract: New Ionic Liquid-Modified Silica Gels as Recyclable Materials for L-Proline- or H-Pro-Pro-Asp-NH2-Catalyzed Aldol Reaction.

2008

L-proline and the tripeptide H–Pro–Pro–Asp–NH2 (1) have been supported, by adsorption, onto the surface of modified silica gels functionalized with a monolayer of covalently attached 1,2-dimethyl-imidazolium chloride, tetrafluoroborate or hexafluorophosphate ionic moieties, respectively. Three different linkers were used to attach the ionic liquid moiety to the surface of these supports. The resulting materials have been used as catalysts for the aldol reaction between acetone and several substituted benzaldehydes. Good yields and enantioselectivities, comparable to or better than those obtained under homogeneous conditions, were obtained. These materials are easily recovered by filtration,…

chemistry.chemical_compoundAddition reactionAdsorptionchemistryAldol reactionHexafluorophosphateIonic liquidPolymer chemistryMoietyIonic bondingGeneral MedicineTripeptideChemInform
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ChemInform Abstract: Sequential Suzuki/Asymmetric Aldol and Suzuki/Knoevenagel Reactions under Aqueous Conditions.

2012

Here we describe for the first time a sequential Suzuki/asymmetric aldol reaction. Such sequential approach was achieved through the combined use of an ionic liquid supported palladium catalyst and the organocatalyst trans-4-(2,2-diphenylacetoxy)proline. Suzuki and asymmetric aldol reactions were performed under aqueous conditions. The use of a palladium catalyst under basic conditions allowed also the first example of sequential Suzuki/Knoevenagel reaction. Reactions were carried out under aqueous conditions and products were isolated in good to high yields and, in the case of the Suzuki/aldol reaction, with diastereoselectivities up to 91:9 and enantioselectivities up to at least 99 %.

chemistry.chemical_compoundAddition reactionAqueous solutionchemistryAldol reactionCombined useIonic liquidOrganic chemistryKnoevenagel condensationGeneral MedicinePalladium catalystChemInform
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1980

chemistry.chemical_compoundAnionic addition polymerizationChemistryKineticsPolymer chemistryMethyl methacrylateIonic polymerizationPhotochemistryDimethoxyethaneLiving anionic polymerizationDie Makromolekulare Chemie, Rapid Communications
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1974

chemistry.chemical_compoundAnionic addition polymerizationMonomerReaction rate constantChemistryPolymer chemistryMethyl methacrylateDie Makromolekulare Chemie
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1978

A newly designed automatically controlled stirred reactor suitable for kinetic measurements of reactions with half lives ≥2s has been applied to follow the anionic polymerization of methyl methacrylate in THF with Na+ as a counter ion in the presence of an excess of NaB(C6H5)4. As initiators were used: benzylsodium reacted with α-methylstyrene (I), fluorenylsodium (II), and 9-methylfluorenylsodium (III). With I the initiation is fast as compared with the polymerization reaction which is first order in monomer concentration. Within the range of −50°C to −100°C an almost unperturbed “living” polymerization is observed. The Arrhenius plot of the rate constants results in a straight line with a…

chemistry.chemical_compoundAnionic addition polymerizationMonomerReaction rate constantPolymerizationChemistryTacticityPolymer chemistryActivation energyMethyl methacrylateArrhenius plotDie Makromolekulare Chemie
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