Search results for "Ethylene"

showing 10 items of 2589 documents

Enlarging the Toolbox: Epoxide Termination of Polyferrocenylsilane (PFS) as a Key Step for the Synthesis of Amphiphilic PFS-Polyether Block Copolymer…

2022

Epoxide termination and functionalization of living poly(ferrocenyldimethylsilane) (PFDMS) is introduced by precapping the living PFDMS with a 4/2 molar mixture of 1,1-diphenylethylene and 1,1-dimethylsilacyclobutane acting as a “carbanion pump” system. Subsequent addition of allyl glycidyl ether (AGE) leads to quantitatively functionalized PFDMS–AGE polymers with molecular weights between 1500 and 15 400 g mol–1 and polydispersity indices ≤1.10, carrying one hydroxyl group and an additional allylic double bond. PFDMS–AGE was then applied as a macroinitiator for the living anionic ring-opening polymerization of ethylene oxide (EO) to generate amphiphilic and water-soluble poly(ferrocenyldim…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideChemistryAllyl glycidyl etherOrganic ChemistryDispersitySize-exclusion chromatographyEpoxidePolymerInorganic Chemistrychemistry.chemical_compoundPolymerizationPolymer chemistryMaterials ChemistryCopolymerACS macro letters
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Ferrocenyl Glycidyl Ether: A Versatile Ferrocene Monomer for Copolymerization with Ethylene Oxide to Water-Soluble, Thermoresponsive Copolymers

2013

The first ferrocene-containing epoxide monomer, ferrocenyl glycidyl ether (fcGE), is introduced. The monomer has been copolymerized with ethylene oxide (EO). This leads to electroactive, water-soluble, and thermoresponsive poly(ethylene glycol) (PEG) derived copolyethers. Anionic homo- and copolymerization of fcGE with EO was possible. Molecular weights could be varied from 2000 to 10 000 g mol–1, resulting in polymers with narrow molecular weight distribution (Mw/Mn = 1.07–1.20). The ferrocene (fc) content was varied from 3 to 30 mol %, obtaining water-soluble materials up to 10 mol % incorporation of the apolar ferrocenyl comonomer. Despite the steric bulk of fcGE, random copolymers were …

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideComonomerOrganic ChemistryEpoxidePolymerInorganic Chemistrychemistry.chemical_compoundMonomerchemistryFerrocenePolymer chemistryMaterials ChemistryCopolymerOrganic chemistryEthylene glycolMacromolecules
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Branched polymers starting from ethylene-vinyl acetate copolymers

1995

Abstract Polyethylene-graft-poly-2-phenyl-2-oxazoline, polyethylene-graft-poly-2-methyl-2-oxazoline and polyethylenegraft-poly(ethylene oxide) were prepared using poly(ethylene-co-vinyl chloroformate) as macroinitiator or polyfunctional precursor. The vinyl acetate groups of ethylene-vinyl acetate copolymer were hydrolyzed, the corresponding alcohol functions were converted into chloroformate, which in turn was used for grafting of oxazolines. Comb-like polymers with hydrophilic poly(ethylene oxide) grafts with definite length were synthesized as well. The resulting graft copolymers were characterized by GPC, IR, and 1 H-NMR spectroscopy and differential scanning calorimetry.

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideGeneral Chemical EngineeringEthylene-vinyl acetateGeneral ChemistryPolymerChloroformateGraftingBiochemistrychemistry.chemical_compoundDifferential scanning calorimetrychemistryPolymer chemistryMaterials ChemistryCopolymerVinyl acetateEnvironmental ChemistryOrganic chemistryReactive and Functional Polymers
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Poly(ethylene glycol) with Multiple Aldehyde Functionalities Opens up a Rich and Versatile Post-Polymerization Chemistry

2019

Two novel epoxide monomers 3,3-dimethoxy-propanyl glycidyl ether (DMPGE) and 3,3-dimethoxy-2,2-dimethylpropanyl glycidyl ether (DDPGE) were developed for the introduction of multiple aldehyde functionalities into the poly(ethylene glycol) (PEG) backbone. The acetal protecting group for the aldehyde functionality is stable against the harsh, basic conditions of the anionic ring-opening polymerization. Both monomers could be homopolymerized as well as copolymerized randomly with ethylene oxide (EO) in a controlled fashion. Copolymers with molecular weights (Mn) in the range of 4500–20100 g/mol and low dispersity (Mw/Mn) between 1.06 and 1.14 were obtained. The polymers were characterized by s…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic ChemistryAcetalEpoxide02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAldehyde0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistryPolymerizationPolymer chemistryMaterials ChemistryCopolymer0210 nano-technologyEthylene glycolMacromolecules
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α ,ω n -Heterotelechelic Hyperbranched Polyethers Solubilize Carbon Nanotubes

2010

The synthesis of novel linear-hyperbranched (linhb) polyether block copolymers based on poly(ethylene oxide) and branched poly(glycerol), bearing a single pyrene or myristyl moiety at the α-position of the linear chain is described. The polymers exhibit low polydispersity (M w /M n < 1.3) and controlled molecular weights (M n = 5 000 g·mol -1 ). The mainly hydrophilic block copolymers with multiple hydroxyl end groups readily dissolve multiwalled carbon nanotubes (MWCNTs) in water by mixing and subsequent sonification, resulting in noncovalent attachment of the linhb hybrid structure to the carbon nanotubes (CNTs). Transmission electron microscopy (TEM) was employed to visualize the solubil…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic ChemistryDispersityCarbon nanotubePolymerCondensed Matter Physicslaw.inventionchemistry.chemical_compoundEnd-groupchemistrylawPolymer chemistryMaterials ChemistryCopolymerMoietyPyrenePhysical and Theoretical ChemistryMacromolecular Chemistry and Physics
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Double-Hydrophilic Linear-Hyperbranched Block Copolymers Based on Poly(ethylene oxide) and Poly(glycerol)

2008

A convenient 4-step (2-pot) approach for the synthesis of biocompatible, double hydrophilic linear-hyperbranched block copolymers based on poly(ethylene oxide) (PEO) and poly(glycerol) (PG) is described. The polymers consisting exclusively of an aliphatic polyether structure were prepared from linear PEO-b-(l-PG) precursor block copolymers, obtained via anionic polymerization of ethylene oxide and subsequently ethoxyethyl glycidyl ether (EEGE). In order to generate initiating functionalities for glycidol, the protected hydroxyl groups of the P(EEGE) block were recovered by hydrolysis with hydrochloric acid. Partial deprotonation of the linear poly(glycerol) block with cesium hydroxide permi…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic ChemistryDispersityGlycidolPolymerInorganic Chemistrychemistry.chemical_compoundMonomerAnionic addition polymerizationchemistryAlkoxidePolymer chemistryMaterials ChemistryCopolymerOrganic chemistryMacromolecules
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Water-Soluble Poly(vinylferrocene)-b-Poly(ethylene oxide) Diblock and Miktoarm Star Polymers

2012

We describe the synthesis of water-soluble diblock and miktoarm star polymers consisting of poly(vinylferrocene) (PVFc) and poly(ethylene oxide) (PEO) blocks. First, end-functionalized poly(vinylferrocene) was generated by end-capping the living carbanionic PVFc chains with benzyl glycidyl ether (BGE) or ethoxy ethyl glycidyl ether (EEGE). Acidic hydrolysis of the EEGE-terminated PVFc partially oxidized the PVFc backbone. However, the dihydroxyl end-functional PVFc was obtained in quantitative yields by hydrogenolysis of the BGE-terminated PVFc. A series of block copolymers and AB2 miktoarm star copolymers was obtained in a second polymerization step, utilizing the respective end-functional…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic ChemistryOxideNuclear magnetic resonance spectroscopyPolymerInorganic Chemistrychemistry.chemical_compoundchemistryPolymerizationHydrogenolysisPolymer chemistryMaterials ChemistryAlkoxy groupCopolymerOrganic chemistryMacromolecules
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Topology-Dependent Swichability of Peptide Secondary Structures in Bioconjugates with Complex Architectures

2013

Peptide sequences, which exhibit a reversible pH-responsive coil to α-helix secondary structure transition, are conjugated to polymer precursors to yield linear AB and graft ABA peptide-poly(ethylene oxide) conjugates. While the PEO B-block is comparable, the conjugates differ in topologies of the peptide bearing A-blocks. The influences of topology on the structure transitions in the peptide segments are investigated, comparing linear AB-bioconjugates with graft ABA-bioconjugates having multiple peptide segments combined in star or pom-pom topologies.

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic ChemistryPeptidePolymerConjugated systemMicroscopy Atomic ForceTopologyCombinatorial chemistryProtein Structure SecondaryPolyethylene Glycolschemistry.chemical_compoundchemistryMaterials ChemistrySelf-assemblyPeptidesProtein secondary structureTopology (chemistry)ConjugateMacromolecular Rapid Communications
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“Clickable PEG” via anionic copolymerization of ethylene oxide and glycidyl propargyl ether

2017

A straight forward synthesis of poly(ethylene glycol) (PEG) with multiple alkyne groups distributed along the polymer chain is introduced. Direct access to clickable PEG is achieved by the monomer-activated anionic ring-opening copolymerization (AROP) of ethylene oxide (EO) with glycidyl propargyl ether (GPgE). Notably for successful polymerization no protection of the alkyne unit is required owing to the mild reaction conditions. Defined PEG-co-PGPgE and PGPgE (co)polymers with PDIs of 1.18–1.60 and molecular weights of Mn = 3000–9500 g mol−1 were prepared. In situ1H NMR kinetic studies revealed remarkably disparate reactivity ratios of rEO = 14.8 and rGPgE = 0.076, representing a pronounc…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideOrganic Chemistrytechnology industry and agricultureAlkyneBioengineering02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistry0104 chemical scienceschemistry.chemical_compoundMonomerchemistryPolymerizationPEG ratioPolymer chemistryCopolymerAzide0210 nano-technologyEthylene glycolPolymer Chemistry
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PEO/CHCl3. Crystallinity of the Polymer and Vapor Pressure of the Solvent. Equilibrium and Nonequilibrium Phenomena

2003

Vapor pressures were measured for the system CHCl3/PEO 1000 (PEO stands for poly(ethylene oxide) and 1000 for Mw in kg/mol) at 25 °C as a function of the weight fraction w of the polymer by means of a combination of headspace sampling and gas chromatography. The establishment of thermodynamic equilibria was assisted by employing thin polymer films. The degrees of crystallinity α of the pure PEO and of the solid polymer contained in the mixtures were determined via DSC. An analogous degree of polymer insolubility β was calculated from the vapor pressures measured in this composition range. The experiments demonstrate that both quantities and their concentration dependence are markedly affect…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideVapor pressureOrganic Chemistrytechnology industry and agricultureConcentration effectPolymerFlory–Huggins solution theoryAmorphous solidInorganic Chemistrychemistry.chemical_compoundCrystallinitychemistryChemical engineeringMaterials ChemistryOrganic chemistryBinary systemMacromolecules
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