Search results for "polymer chemistry"

showing 10 items of 3410 documents

Reduced protein adsorption on plastics via direct plasma deposition of triethylene glycol monoallyl ether

1997

The direct plasma-induced deposition of tri(ethylene glycol) monoallyl ether is reported. RF plasma polymerization of this monomer was carried out under both continuous wave (CW) and pulsed plasma operation. The major focus of this work was optimization of the degree of retention of the C-O-C bonds of the starting monomer during the deposition process. This successfully was accomplished using low RF power during the CW runs and low RF duty cycles during the pulsed plasma experiments. Spectroscopic analysis of the plasma films revealed a strong dependence of film composition on the RF power and duty cycles employed. In particular, an unusually high level of film chemistry compositional contr…

Aqueous solutionMaterials scienceBiomedical EngineeringBiocompatible MaterialsBlood ProteinsPolyethylenePlasma polymerizationBlood Vessel ProsthesisPolyethylene GlycolsBiomaterialschemistry.chemical_compoundMonomerAdsorptionchemistryChemical engineeringPolymer chemistryAnimalsHumansCattleEthylene GlycolsPlasticsEthylene glycolEthersProtein adsorptionTriethylene glycolJournal of Biomedical Materials Research
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Micellization and Micellar Structure of a Poly(ethylene oxide)/Poly(propylene oxide)/Poly(ethylene oxide) Triblock Copolymer in Water Solution, As St…

1997

The micellization of the triblock copolymer Pluronic P85 (poly(oxyethylene)27/poly(oxypropylene)39/poly(oxyethylene)27) in aqueous solution was followed vs temperature and addition of aliphatic alcohols, using the spin probe technique. Different types of probes properly chosen (spin-labeled (SL) poly(oxyethylene(4))nonylphenol, SL-Pluronic L62, TEMPO-laurate, TEMPO-hexanoate, CAT 4, CAT 8, CAT 11, CAT 16, and 5-, 7-, 10-, and 12-doxylstearic acids) provided information about the micellar structure (polarity, viscosity, and order degree) at different radial locations. Micellization was found to be low at room temperature, even for 10% aqueous solutions, but strongly increasing with temperatu…

Aqueous solutionMaterials scienceOxideSurfaces and InterfacesPoloxamerCondensed Matter PhysicsResonance (chemistry)NonylphenolSpin probeViscositychemistry.chemical_compoundchemistryPolymer chemistryElectrochemistryCopolymerGeneral Materials ScienceSpectroscopyLangmuir
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Towards the Generation of Self-Healing Materials by Means of a Reversible Photo-induced Approach

2011

Photo-induced reversibility as a tool for self-healing: a reversible photo-induced dendritic macromonomer was synthesized and proven to form networks with different features depending on the crosslinking conditions. While networks formed from aqueous systems exhibited a reversible change in their crosslinking degree, networks generated in bulk underwent fully reversibility. The latter was then exploited for generating self-healing materials by means of a photo-induced treatment.

Aqueous solutionMaterials sciencePolymers and PlasticsChemical engineeringDendritic PolymersSelf-healingOrganic ChemistryPolymer chemistryMaterials Chemistrysense organsSelf-healing materialMacromonomerMacromolecular Rapid Communications
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Functionalization of Crosslinked Vesicles by Co-Self-Assembly of a Gelable Diblock Copolymer and Mercaptosilane

2008

Herein, a convenient and general method to simultaneously fix and functionalize polymeric vesicles with sulphydryl groups by the co-self-assembly of poly(ethylene oxide)-block-poly[3-(triethoxysilyl)propyl methacrylate] (PEO-b-PTESPMA) and 3-mercaptopropyltrialkoxysilane in an aqueous solution is reported. The presence of sulphydryl groups across the vesicle membrane has been confirmed by using an energy-filtered technique during TEM analysis and by capturing Au nanoparticles.

Aqueous solutionMaterials sciencePolymers and PlasticsEthylene oxideVesicleOrganic ChemistryNanoparticleMethacrylatechemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistryCopolymerSurface modificationSelf-assemblyMacromolecular Rapid Communications
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Double-Shell Vesicles, Strings of Vesicles and Filaments Found in Crosslinked Micellar Solutions of Poly(1,2-butadiene)-block-poly(ethylene oxide) Di…

2001

Micellar structures of amphiphilic poly(1,2-butadiene)-block-poly(ethylene oxide) diblock copolymers have been crosslinked in aqueous solution by γ-irradiation. By transmission electron microscopy (TEM) of neganively stained specimen it is shown that the precominant structures present are sopolymer sesicles (which appear to be double latered. These fived vesules are stable with respect to their share and can be transferred from water into a good solvent for blue filbeks, such as tetrahydrofuran, this demonstrating the effectiveness of the crosslinking. In addition to the resicles a small number of flexible cylindrichl/filimented structures sequentially fused vesicles/strings of vesicles and…

Aqueous solutionMaterials sciencePolymers and PlasticsEthylene oxideVesicleOrganic ChemistryUranyl acetatechemistry.chemical_compoundCrystallographychemistryTransmission electron microscopyMicellar solutionsAmphiphilePolymer chemistryMaterials ChemistryCopolymerMacromolecular Rapid Communications
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Polyfunctional Tetraaza-Macrocyclic Ligands: Zn(II), Cu(II) Binding and Formation of Hybrid Materials with Multiwalled Carbon Nanotubes

2017

The binding properties of HL1, HL2, and HL3 ligands toward Cu(II) and Zn(II) ions, constituted by tetraaza-macrocyclic rings decorated with pyrimidine pendants, were investigated by means of potentiometric and UV spectrophotometric measurements in aqueous solution, with the objective of using the related HL-M(II) (HL = HL1–HL3; M = Cu, Zn) complexes for the preparation of hybrid MWCNT-HL-M(II) materials based on multiwalled carbon nanotubes (MWCNTs), through an environmentally friendly noncovalent procedure. As shown by the crystal structure of [Cu(HL1)](ClO4)2, metal coordination takes place in the macrocyclic ring, whereas the pyrimidine residue remains available for attachment onto the s…

Aqueous solutionMaterials sciencePyrimidine010405 organic chemistryGeneral Chemical EngineeringInorganic chemistryPotentiometric titrationStackingGeneral ChemistryCrystal structure010402 general chemistryRing (chemistry)01 natural sciencesArticle0104 chemical sciencesMetallcsh:Chemistrychemistry.chemical_compoundchemistrylcsh:QD1-999visual_artPolymer chemistryvisual_art.visual_art_mediumHybrid materialcarbon nanotubes copper zinc macrocycles hybrid materials functionalized carbon nanotubesACS Omega
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Membranes Directly Prepared from Solutions of Unsubstituted Cellulose

2005

Summary: Starting from 5 wt.-% solutions of a prehydrolysis kraft pulp ( = 135 kg · mol−1) in the mixed solvent (dimethylacetamide + 7 wt.-% LiCl) we have prepared cellulose membranes on different supports according to the phase inversion process using above all acetone (AC) and 2-propanol as precipitants. In this context we have studied the phase behavior of the quasiternary system (DMAc+LiCl)/AC/cellulose. The obtained membranes are mechanically stable and in their mechanical and separation properties on the whole comparable to membranes consisting of regenerated cellulose. With respect to gas separation the ideal selectivity of CO2 in combination with N2 and O2 turns out to be opposite f…

Aqueous solutionMolar massPolymers and PlasticsChemistryOrganic ChemistryRegenerated celluloseCondensed Matter Physicschemistry.chemical_compoundMembranePolymer chemistryMaterials ChemistrySemipermeable membraneGas separationPhysical and Theoretical ChemistryPhase inversion (chemistry)CelluloseMacromolecular Chemistry and Physics
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Selective recognition of fluoride anion in water by a copper(II) center embedded in a hydrophobic cavity

2014

The ability of a water-soluble pentacationic calix[6]arene-based CuII complex to bind anions in water has been explored. Quite remarkably, the complex exhibits strong and selective fluoride binding in the pH range of 6–7. The binding constant at pH 5.9 was evaluated to be 85 000 M−1, which is one of the highest values ever reported for a fluoride probe in water and at this pH. The complex also binds chloride ions, but 1000 times less efficiently. The combination of the calix[6]arene hydrophobic cavity with the CuII complex, presenting its labile site in the endo position, is the reason for the selective recognition process. The single crystal X-ray structure of the organo-soluble parent com…

Aqueous solutionMolecular modelChemistryInorganic chemistrychemistry.chemical_elementGeneral ChemistryChlorideBinding constantCopperchemistry.chemical_compoundPolymer chemistrymedicineWater clusterSingle crystalFluorideta116medicine.drugChemical Science
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Water-Soluble Palladium Nanoparticles: Click Synthesis and Applications as a Recyclable Catalyst in Suzuki Cross-Couplings in Aqueous Media

2010

A new PEG-tagged material, which was prepared by a threefold copper-catalyzed [3+2] cycloaddition (click chemistry), was found to act as an efficient stabilizer for palladium nanoparticles. The newly formed material proved to be active as a recyclable catalyst in Suzuki coupling; the presence of polyether chains allowed for the catalytic runs to be conducted in aqueous media.

Aqueous solutionOrganic ChemistryNanoparticlechemistry.chemical_elementHomogeneous catalysisCycloadditionCatalysisSuzuki reactionchemistryPolymer chemistryClick chemistryOrganic chemistryPhysical and Theoretical ChemistryPalladiumEuropean Journal of Organic Chemistry
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New Self-Assembling Polyaspartamide-Based Brush Copolymers Obtained by Atom Transfer Radical Polymerization

2009

A simple and efficient method for the synthesis of polyaspartamide-based brush copolymers using Atom Transfer Radical Polymerization (ATRP) is here presented. The syntheses were performed by using two subsequent steps. In the first step the macroinitiator was obtained by the conjugation of a proper number of 2-bromoisobutyryl bromide (BIB) residues to the R, -poly(N-2-hydroxyethyl)-D,L-aspartamide (PHEA) side chains, obtaining the PHEA-BIB copolymer. PHEA-BIB copolymer was used as “multi-functional macroinitiator” for the polymerization via ATRP of hydrophilic methacrylic monomers, such as methacrylic acid (MA), obtaining PHEA-IB-poly(MA) copolymer, sodium methacrylate (MANa+), obtaining PH…

Aqueous solutionPolymers and PlasticsChemistryAtom-transfer radical-polymerizationpolyaspartamideOrganic ChemistryChemical modificationATRPbrush copolymersPolyelectrolyteInorganic Chemistrychemistry.chemical_compoundMethacrylic acidPolymerizationPolymer chemistryMaterials ChemistrySide chainCopolymerMacromolecules
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