Search results for "ion temperature"

showing 10 items of 220 documents

Nanotube Friendly Poly(N-isopropylacrylamide).

2010

Poly(N-ispropylacrylamide) [PNIPAM] is a widely studied polymer for use in biological applications due to its lower critical solution temperature (LCST) being so close to the human body temperature. Unfortunately, attempts to combine carbon nanotubes (CNTs) with PNIPAM have been unsuccessful due to poor interactions between these two materials. In this work, a PNIPAM copolymer with 1 mol-% pyrene side group [p-PNIPAM] was used to produce a thermoresponsive polymer capable of stabilizing both single and multi-walled carbon nanotubes (MWNTs) in water. The presence of pyrene in the polymer chain lowers the LCST less than 4 °C and the interaction with nanotubes does not show any influence on LC…

chemistry.chemical_classificationNanotubeMaterials sciencePolymers and PlasticsOrganic ChemistryPolymerCarbon nanotubeExfoliation jointLower critical solution temperaturelaw.inventionchemistry.chemical_compoundchemistryChemical engineeringlawSelf-healing hydrogelsPolymer chemistryMaterials ChemistryPoly(N-isopropylacrylamide)CopolymerMacromolecular rapid communications
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Tailoring Properties of Carbon Nanotube Dispersions and Nanocomposites Using Temperature-Responsive Copolymers of Pyrene-Modified Poly(N-cyclopropyla…

2010

Despite their immense potential, the ability to control the dispersion and microstructure of carbon nanotubes remains a hurdle for their widespread use. Stimuli-responsive polymers show conformational changes with an applied external stimulus (pH, temperature, light, etc.). The dispersion of carbon nanotubes by thermoresponsive polymers is shown to enable the macroscopic properties of aqueous suspensions to be tailored as a function of temperature. This work presents the synthesis, characterization, and use of temperature-responsive poly(N-cyclopropylacrylamide) (PNCPA) polymers containing 1, 3, and 5 mol % pyrene-bearing repeat units to tailor the dispersion state of single-walled carbon n…

chemistry.chemical_classificationNanotubeNanocompositeMaterials scienceAqueous solutionPolymers and PlasticsOrganic ChemistryPolymerCarbon nanotubeLower critical solution temperaturelaw.inventionInorganic ChemistryChemical engineeringchemistrylawPolymer chemistryMaterials ChemistryThermoresponsive polymers in chromatographyDispersion (chemistry)Macromolecules
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The Efficiency of Polymer Fractionation at Lower Critical Solution Temperatures

1978

The efficiency of a single fractionation step (i.e. of the partition of a given polymer sample between the coexisting phases which form when its solution demixes) is governed by the variation of the mass ratio of the individual P-mers with chain length. These dependences have been measured for the system dimethoxymethane/diethylether/ polystyrene which exhibits lower critical solution temperatures by means of the Baker-Williams method and by means of g.p.c. Their comparison with the results of previous investigation on systems showing upper critical solution temperatures reveals no thermodynamic differences in the aptitude of upper and lower critical solution temperatures for fractionation …

chemistry.chemical_classificationPartition coefficientchemistryUpper critical solution temperaturePhase (matter)General EngineeringMolar mass distributionThermodynamicsGeneral Materials ScienceFractionationPolymerPolymer fractionationLower critical solution temperatureBritish Polymer Journal
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Collapse of Cylindrical Brushes with 2-Isopropyloxazoline Side Chains Close to the Phase Boundary

2013

A high-molar-mass cylindrical brush polymer with a main chain degree of polymerization of Pw = 1047 is synthesized by free-radical polymerization of a poly-2-isopropyloxazoline macromonomer with Pn = 28. The polymerization is conducted above the lower phase transition temperature of the macromonomer, i.e., in the phase-separated regime, which provides a sufficiently concentrated macromonomer phase mandatory to obtain high-molar-mass cylindrical brushes. Upon heating to the phase transition temperature, the hydrodynamic radius is observed to shrink from 34 to 27 nm. Further increase in temperature resulted in aggregated chains which were observed to coexist with single chains until eventuall…

chemistry.chemical_classificationPhase boundaryPhase transitionMaterials scienceMolecular StructurePolymers and PlasticsPolymersTransition temperatureOrganic ChemistryPolymerDegree of polymerizationMacromonomerPhase TransitionPolymerizationPolymerizationchemistryPhase (matter)Materials ChemistryTransition TemperatureComposite materialOxazolesMacromolecular Rapid Communications
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1984

Influence de la structure de chaine sur le type de phase et relation entre la masse moleculaire et les temperatures de transition

chemistry.chemical_classificationPhase transitionChemistryLiquid crystalTransition temperaturePhase (matter)Radical polymerizationPolymer chemistrySolution polymerizationPolymerMethacrylateDie Makromolekulare Chemie, Rapid Communications
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Effect of the crystallization on the phase transitions IV ⇐ III and IV ⇐ II of ammonium nitrate

1993

Abstract The solid state phase transition path of ammonium nitrate is influenced by the manner of crystallization. Slow crystallization from water gives ideal crystals, which behaved differently from crystals prepared by rapid crystallization from the melt.

chemistry.chemical_classificationPhase transitionChromatographyAmmonium nitrateTransition temperatureInorganic chemistryEnthalpyPhysics::OpticsCondensed Matter Physicslaw.inventionchemistry.chemical_compoundDifferential scanning calorimetrychemistrylawCondensed Matter::SuperconductivityWater of crystallizationPhysical and Theoretical ChemistryCrystallizationInstrumentationInorganic compoundPhysics::Atmospheric and Oceanic PhysicsThermochimica Acta
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Hyperbranched Poly(propylene oxide): A Multifunctional Backbone-Thermoresponsive Polyether Polyol Copolymer

2012

Backbone-thermoresponsive hyperbranched poly(propylene oxide)-based polyether polyols have been synthesized by anionic ring-opening copolymerization of glycidol and propylene oxide. The number of functional hydroxyl end groups and the lower critical solution temperature (LCST) can be readily adjusted by varying the comonomer ratio. Molecular weights in the range of 1200-2000 g/mol were achieved. Hyperbranched polyether polyols with LCST values between 24 and 83 °C can be obtained in a convenient one-step reaction.

chemistry.chemical_classificationPoly(propylene oxide)Materials sciencePolymers and PlasticsComonomerOrganic ChemistryGlycidolLower critical solution temperatureInorganic Chemistrychemistry.chemical_compoundchemistryPolyolPolymer chemistryMaterials ChemistryCopolymerPropylene oxideACS Macro Letters
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Microstructure analysis of biocompatible phosphoester copolymers

2013

Copolymers with varying compositions of 2-ethoxy-2-oxo-1,3,2-dioxaphospholane (EEP) and 2-ethoxy-4-methyl-2-oxo-1,3,2-dioxaphospholane (EMEP) have been synthesized via 1,5,7-triazabicyclo[4.4.0]dec-5-ene-catalyzed anionic ring-opening polymerization. The molecular weights and comonomer ratios were well controlled and polymers with reasonable molecular weight distributions (<1.5) were obtained in all cases. The copolymers were investigated by 1H and 31P NMR spectroscopies to determine the underlying microstructure via detailed dyad analysis. The copolymers were found to be nontoxic to HeLa cells. Furthermore, the obtained copolymers of EEP and EMEP show thermoresponsive properties, i.e., exh…

chemistry.chemical_classificationPolymers and PlasticsMolecular massComonomerOrganic ChemistryBioengineeringPolymerMicrostructureBiochemistryLower critical solution temperaturechemistry.chemical_compoundPolymerizationchemistryPolymer chemistryPhosphodiester bondCopolymerPolymer Chemistry
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Phase Behavior of the System Linear Polyglycerol + Methanol + Carbon Dioxide

2011

To compare the phase behavior of linear and hyperbranched polymers, the phase envelopes of the ternary system linear polyglycerol + methanol + carbon dioxide were determined for polymers of varying molar mass. Phase changes were detected by a static synthetic method using the Cailletet setup for temperatures between 331 K and 421 K and pressures up to 13.1 MPa. Besides the vapor–liquid and liquid–liquid equilibria, also the vapor–liquid to vapor–liquid–liquid and vapor–liquid–liquid to liquid–liquid phase boundaries are reported. The experimental results are similar to systems with hyperbranched polymers (rather than linear polymers). For the systems with linear polymers, however, the bubbl…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesTernary numeral systemMolar massChemistryGeneral Chemical EngineeringBubbleGeneral ChemistryPolymerLower critical solution temperaturePhysics::Fluid DynamicsCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundChemical engineeringPhase (matter)Carbon dioxidePolymer chemistryMethanolJournal of Chemical &amp; Engineering Data
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Interrelation between the thermodynamic and viscometric behaviour of aqueous solutions of hydrophobically modified ethyl hydroxyethyl cellulose

2000

Abstract Aqueous solutions of a commercial sample of hydrophobically modified ethyl hydroxyethyl cellulose (HC, Mw=100 kg/mol, nonylphenol substitution ca. 1.7 mol%) were studied with respect to their demixing behaviour and flow characteristics. Phase separation temperatures were measured turbidimetrically and by determining the first discernible macroscopic phase separation. In some cases demixing was also monitored viscometrically. Phase volume ratios yielded a critical polymer concentration of 1.87 wt.% HC (displaced considerably out of the minimum of the demixing curve towards higher polymer concentrations) and a lower critical solution temperature of 47°C. Model calculations of the spi…

chemistry.chemical_classificationSpinodalAqueous solutionChromatographyShear thinningPolymers and PlasticsOrganic ChemistryThermodynamicsPolymerEntropy of mixingLower critical solution temperatureDilutionViscositychemistryMaterials ChemistryPolymer
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