Search results for "ionic"

showing 10 items of 2016 documents

Polymerizable and polymeric zwitterionic surfactants: 1. Synthesis and bulk properties

1991

Abstract The synthesis of a series of permanently zwitterionic surfactant monomers based on sulphobetaines and the preparation of their polymers is described. Solubilities, thermal properties and bulk structures of the zwitterionic polymers are studied with respect to their molecular architecture, and compared with cationic analogues. The various solubilities of the polymers can be correlated with their molecular geometry, enabling differentiation into distinct classes. This behaviour is paralleled by the observed bulk structures of the polymers where distinct classes of superstructures are present. However, independently of the molecular geometry, no thermal transition could be detected fo…

chemistry.chemical_classificationAcrylate polymerMaterials sciencePolymers and PlasticsOrganic ChemistryRadical polymerizationCationic polymerizationPolymerchemistry.chemical_compoundMonomerMolecular geometrychemistryPulmonary surfactantPolymer chemistryMaterials ChemistrySolubilityPolymer
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1992

Zwitterionic polymers [CH 2 CR(COOR')] n (R= H, Me; R'= (CH 2 ) 11 + NMe 2 (CH 2 ) 3 SO 3 - , (CH 2 ) 2 + N(CH 3 )([CH 2 ] 3 SO 3 - )C 10 H 21 ) are studied by X-ray scattering. The structural order both in the short-range and long-range scale is investigated. The influence of the polymer backbone, of different locations of the ionic groups in isomeric polymers, of bound water and of added inorganic salts on the bulk structures is studied, and the observed rearrangements are analysed

chemistry.chemical_classificationAcrylate polymerchemistry.chemical_compoundBetainechemistrySmall-angle X-ray scatteringScatteringPolymer chemistryX-rayBound waterIonic bondingPolymerDie Makromolekulare Chemie
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1992

The molecular packing and spatial correlations of polymers [CH 2 CR(COOR')] n (R= H, Me; R'= (CH 2 ) 11 + NMe 2 (CH 2 ) 3 SO 3 - ; (CH 2 ) 2 + N(Me)[(CH 2 ) 3 SO 3 - ][C 10 H 21 ]) are studied by means of X-ray analysis and conformational calculations. The analysis of the correlation functions and density distribution profiles suggest a double-layered molecular packing which is discussed for the three polymers investigated, with respect to their different chemical structures. Whereas the zwitterionic polymethacrylates studied exhibit liquid-like short-range order, the polyacrylate analog exhibits an ordered double-layered superstructure

chemistry.chemical_classificationAcrylate polymerchemistry.chemical_compoundDensity distributionchemistryPolymer chemistryShort range orderOrder (group theory)Ionic bondingPolymerSuperstructure (condensed matter)Die Makromolekulare Chemie
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Anionic Polymerization of (Meth)acrylates in the Presence of Tetraalkylammonium Halide−Trialkyl Aluminum Complexes in Toluene. 3. Kinetic Investigati…

2001

The polymerization of n-butyl acrylate initiated by ester enolates in the presence of tetraalkylammonium halide−trialkylaluminum complexes, R4N[AlnR‘3nX] (n = 1, 2), in toluene has a controlled character at −78 °C only for selected combinations of the complex. Quantitative monomer conversions are usually reached with Me4N[AlnBui3nCl] leading to polymers with narrow molecular weight distributions (Mw/Mn < 1.2). Kinetic investigations show a complex mechanism of the polymerization, implying an equilibrium between at least two active species. Besides, various acrylate homopolymers and block copolymers (PMMA-b-polyacrylate) can be synthesized with this new initiating system.

chemistry.chemical_classificationAcrylatePolymers and PlasticsOrganic ChemistrySolution polymerizationPolymerTolueneInorganic Chemistrychemistry.chemical_compoundMonomerAnionic addition polymerizationchemistryPolymerizationPolymer chemistryMaterials ChemistryCopolymerMacromolecules
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Gas phase charged aggregates of bis(2-ethylhexyl)sulfosuccinate (AOT) and divalent metal ions: first evidence of AOT solvated aggregates

2011

Assembling and chelating properties of sodium bis(2-ethylhexyl)sulfosuccinate (AOTNa) towards divalent metal ions have been investigated in the gas phase by electrospray ionization mass spectrometry. A variety of positively charged monometallated and mixed metal aggregates are formed. Interestingly, several ions contain solvent (MeOH, H2O) molecules and constitute the most abundant AOT cationic aggregates not containing sodium. These species are the first example of solvated AOT-metal ion aggregates in the gas phase. By increasing the surfactant aggregation number, the abundance of solvated species becomes lower than that of unsolvated ones. Decompositions of ionic species have been studied…

chemistry.chemical_classificationAggregation numberChemistryElectrospray ionizationInorganic chemistryIonic bondingMoleculePhotochemistryMass spectrometrySpectroscopyAlkylDivalentIonJournal of Mass Spectrometry
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Structural organization of surfactant aggregates in vacuo: a molecular dynamics and well-tempered metadynamics study

2015

Experimental investigations using mass spectrometry have established that surfactant molecules are able to form aggregates in the gas phase. However, there is no general consensus on the organization of these aggregates and how it depends on the aggregation number and surfactant molecular structure. In the present paper we investigate the structural organization of some surfactants in vacuo by molecular dynamics and well-tempered metadynamics simulations to widely explore the space of their possible conformations in vacuo. To study how the specific molecular features of such compounds affect their organization, we have considered as paradigmatic surfactants, the anionic single-chain sodium …

chemistry.chemical_classificationAggregation numberChemistryMetadynamicsGeneral Physics and AstronomyIonic bondingmolecular dynamics simulations well-tempered metadynamics simulationsMicellechemistry.chemical_compoundMolecular dynamicsPulmonary surfactantChemical physicsOrganic chemistryPhysical and Theoretical ChemistrySodium dodecyl sulfateAlkylSettore CHIM/02 - Chimica Fisica
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Reactions of α-diimino ligands with the chloro-bridged dimer [RhCl(COD)]2(COD=1,5-cyclooctadiene)

1988

Abstract The reactions of α-diimino ligands N - N ′ [ N - N ′= 2,2′-bipyridine (bipy), C 5 H 4 N2CHNR (R= C 6 H 4 OMe- p , PyCa), RNCHCHNR (R=C 6 H 4 - OMe- p , DAB)] with [RhCl(COD)] 2 give rise to stoichiometry, solvent, ligand, and temperature dependent equilibria. In general, the 1/1 ligand/dimer reaction yields the ionic product [Rh(COD)( N - N ′)] [RhCl 2 (COD)], at room temperature. For N - N ′=DAB, the ionic form is in equilibrium with the binuclear compound [{RhCl(COD)} (μ-DAB){RhCl(COD)}] (containing a σ σ,'- N , N ′ bridging α-diimine), which becomes the predominant species at low temperatures. In [Rh(COD)( N - N ′)] [RhCl 2 (COD)], a fast exchange of the Rh(COD) unit betwe…

chemistry.chemical_classificationAldimineReaction mechanismDenticityStereochemistryLigandDimer15-CyclooctadieneCationic polymerizationMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundchemistryMaterials ChemistryPhysical and Theoretical ChemistryIsomerizationInorganica Chimica Acta
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Pseudopeptidic ligands: exploring the self-assembly of isophthaloylbisglycine (H2IBG) and divalent metal ions.

2012

We present a systematic study of the complexation of the new pseudopeptidic ligand isophthaloylbisglycine (H(2)IBG) with divalent metal ions of varying ionic radius. This work represents the initial employment of H(2)IBG in the coordination chemistry of alkaline earth, 3d transition, Zn(II) and Cd(II) metal elements. Infrared, NMR, thermal, magnetic, adsorption and theoretical studies of these compounds are also discussed.

chemistry.chemical_classificationAlkaline earth metalIonic radiusMagnetic Resonance SpectroscopySpectrophotometry InfraredInfraredLigandChemistryInorganic chemistryGlycineMolecular ConformationLigandsCoordination complexInorganic ChemistryMetalAdsorptionX-Ray DiffractionCoordination ComplexesMetalsDivalent metal ionsvisual_artvisual_art.visual_art_mediumQD0146ta116OligopeptidesDalton transactions (Cambridge, England : 2003)
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Acidic Ionic Liquids as Composite Forming Additives for Ion-conducting Materials

2013

This paper represents the material conductivity investigation of several AILs (Acidic Ionic Liquids) containing an alkane sulfonic acid group covalently bonded to pyridine and N–alkylimidazole cations. Three different anions (HSO4-, H2PO4- and TsO-) have been introduced in the structure of ionic liquids to evaluate the impact of this factor on material conductivity. Ion conductivity values in all studied ionic liquids obtained from impedance measurements in temperature range from 20 to 120 °C. Values of electroconductivity depending on ionic liquid's structure vary in rage from 1.3410−5 to 1.0510−2 S/cm at 25 °C.

chemistry.chemical_classificationAlkanechemistry.chemical_compoundchemistryIonic liquidInorganic chemistryPyridineComposite numberConductivitySulfonic acidAtmospheric temperature rangeIonIOP Conference Series: Materials Science and Engineering
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Insights into catanionic vesicles thermal transition by NMR spectroscopy

2012

Oppositely charged ionic surfactants can self-assemble into hollow structures, called catanionic vesicles, where the anionic-cationic surfactant pair assumes a double-tailed zwitterionic attitude. In the present work, multilamellar- to-unilamellar thermal transition of a mixed aqueous system of sodium dodecyl sulphate (SDS) and cetyl trimethyl ammonium bromide (CTAB), with a slight excess of the anionic one, has been investigated by 1H, 2H, 14N NMR spectra and 23Na transverse relaxation measurements. It has been inferred that an increase of the temperature enhances the SDS counterion dissociation, which can be considered as one of the driving forces of the mentioned transition. Moreover, in…

chemistry.chemical_classificationAmmonium bromideAqueous solutionVesicleIonic bondingNuclear magnetic resonance spectroscopyDissociation (chemistry)NMR spectra databasechemistry.chemical_compoundchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoPhysical chemistrylipids (amino acids peptides and proteins)Catanionic Vesicles NMR PGSTE Thermal TransitionCounterion
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