Search results for "Length"

showing 10 items of 2188 documents

Reaktionskinetik der Polymerisationshemmung durch molekularen Sauerstoff

1957

Die Polymerisationshemmung geschieht bei Styrol nach demselben Mechanismus wie er kurzlich fur Methylmethacrylat berichtet wurde1. Wahrend der Inhibierungsperiode findet streng alternierende Copolymerisation zwischen molekularem Sauerstoff und dem monomeren Styrol statt. Die fur die Anlagerung von O2 an das Radikal RM · masgebende Konstante kMO2 ist etwa von der Grosenordnung 106–107, d. h. die Reaktionsfahigkeit des Sauerstoffs in dieser Reaktion entspricht der eines Radikals. Bruttogeschwindigkeit und kinetische Kettenlange wahrend der Inhibierungsperiode werden auf Grund des Reaktionsmechanismus berechnet und experimentell bestatigt. The inhibition mechanism in the polymerization of styr…

Kinetic chain lengthReaction ratechemistry.chemical_compoundReaction rate constantchemistryPolymerizationPolymer chemistryCopolymerReactivity (chemistry)Molecular oxygenStyreneDie Makromolekulare Chemie
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Solid-state polymerization of oxetanes. I. Lattice parameters and packing properties of the monomers

1973

The crystallographic unit cells of melt-crystallized 3,3-bischloromethyloxetane and 3,3-bisbromomethyloxetane were determined by the Weissenberg method. The two isomorphous lattices are triclinic with two molecules in the unit cell. 3,3-Bisfluoromethyloxetane forms plastic crystals in the temperature range between −36°C and +22°C, as shown by differential calorimetry and NMR broad-line spectroscopy. The Debye-Scherrer diagram and the general physical properties indicate the formation of a face-centered cubic lattice. No correlation between the lattice parameters of the monomer and polymer can be found On the basis of these results, the question is raised as to whether a topochemical polymer…

Kinetic chain lengthchemistry.chemical_classificationchemistry.chemical_compoundCrystallographyMonomerchemistryPolymerizationMoleculeCrystal structurePolymerPlastic crystalTriclinic crystal systemJournal of Polymer Science Part A-2: Polymer Physics
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The calculation of the number-average degree of polymerization starting from intrinsic viscosity and overall rate

1962

The relation between the intrinsic viscosity [η] and the number-average degree of polymerization Pn is a function of the molecular weight distribution of the polymer. In a polymer in which the termination of polymer radicals occurs partly by combination of two growing chains, this molecular weight distribution depends on number and extent of additional reactions such as chain transfer; i.e., it is variable. Therefore Pn of such polymers cannot be obtained from intrinsic viscosity measurements by means of an equation of the type [η] = KPna. A new method is proposed which allows the evaluation of Pn in these cases, without necessity of osmotic (or related) measurements or fractionation. The v…

Kinetic chain lengthchemistry.chemical_classificationchemistry.chemical_compoundchemistryPolymerizationIntrinsic viscosityPolymer chemistryThermodynamicsMolar mass distributionChain transferPolystyrenePolymerDegree of polymerizationJournal of Polymer Science
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1980

Using a bifunctional initiator such as the tetrameric dianion of α-methylstyrene for the anionic polymerization of methyl methacrylate the rate constant is found to increase with conversion approaching that observed with a monofunctional initiator while the tacticity of the polymers obtained changes from that of an almost ideally atactic to a highly syndiotactic polymer. The results are explained by the assumption of an intramolecular association of the two terminal ion pairs yielding a new active species and gradually dissociating with increasing degree of polymerization of the chain. Using a polymeric dianion of α-methylstyrene as an initiator the association phenomenon is not observed.

Kinetic chain lengthchemistry.chemical_compoundAnionic addition polymerizationBulk polymerizationChemistryPolymer chemistryPrecipitation polymerizationDegree of polymerizationMethyl methacrylatePhotochemistryIonic polymerizationLiving anionic polymerizationDie Makromolekulare Chemie
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Some kinetic effects in the polymerization of 1,3,5-trioxane

1960

Kinetic chain lengthchemistry.chemical_compoundChain-growth polymerizationchemistryPolymerizationPolymer chemistryCationic polymerizationPrecipitation polymerizationChain transferPhotochemistryIonic polymerization135-TrioxaneJournal of Polymer Science
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Frictional Forces between Strongly Compressed, Nonentangled Polymer Brushes: Molecular Dynamics Simulations and Scaling Theory

2010

By means of molecular dynamics simulations and scaling theory we study the response of opposing polymer brushes to constant shear motion under good solvent conditions. Model systems that contain explicit solvent molecules (Lennard-Jones dimers) are compared to solvent-free systems while varying of the distance between the grafted layers and their molecular parameters, chain length and grafting density. Our study reveals a power-law dependence of macroscopic transport properties on the Weissenberg number, W, beyond linear response. For instance, we find that the kinetic friction constant scales as μ ∼ W0.57 for large values of W. We develop a scaling theory that describes our data and previo…

Kinetic frictionchemistry.chemical_classificationQuantitative Biology::BiomoleculesChemistryCiencias FísicasPOLYMERSurfaces and InterfacesPolymerCondensed Matter PhysicsScaling theoryBRUSHESCondensed Matter::Soft Condensed MatterChain lengthMolecular dynamicsChemical physicsElectrochemistryMoleculeWeissenberg numberGeneral Materials ScienceStatistical physicsCIENCIAS NATURALES Y EXACTASSpectroscopyFísica de los Materiales CondensadosLangmuir
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Characterization of PP-cLT Waveguides for Second-Harmonic-Generation and Wavelength-Conversion in the C + L Band of Optical Communications

2010

We report the characterization of single-mode optical waveguides at telecom wavelength, realized in congruent lithium-tantalate. We demonstrate that waveguides realized by proton-exchange show a nonlinear coefficient matching that expected in a bulk crystal.

L bandMaterials sciencebusiness.industryIntegrated optics Wavelength conversion devicesOptical communicationPhysics::OpticsSecond-harmonic generationWavelength conversionCharacterization (materials science)WavelengthOpticsOptoelectronicsbusinessPhase conjugationBulk crystal
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A compact Raman microprobe/microscope: Analysis of polydiacetylene Langmuir and Langmuir-Blodgett films

1991

A compact Raman microprobe/microscope has been developed which contains no wavelength dispersive elements. Multilayer dielectric filters, tuned by rotation, provide sufficient wavelength selectivity for taking Raman spectra and forming Raman images of samples as small as 1 μm in diameter. The application of the instrument is demonstrated by Raman spectra and images of polydiacetylene Langmuir and Langmuir-Blodgett films.

LangmuirMicroprobeMaterials scienceMicroscopePolymers and PlasticsOrganic ChemistryAnalytical chemistryPhysics::OpticsWavelength selectivityDielectricCondensed Matter PhysicsLangmuir–Blodgett filmlaw.inventionWavelengthsymbols.namesakelawMaterials ChemistrysymbolsPhysics::Atomic PhysicsRaman spectroscopyMakromolekulare Chemie. Macromolecular Symposia
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A broadening temperature sensitivity range with a core-shell YbEr@YbNd double ratiometric optical nanothermometer.

2016

The chemical architecture of lanthanide doped core–shell up-converting nanoparticles can be engineered to purposely design the properties of luminescent nanomaterials, which are typically inaccessible to their homogeneous counterparts. Such an approach allowed to shift the up-conversion excitation wavelength from ∼980 to the more relevant ∼808 nm or enable Tb or Eu up-conversion emission, which was previously impossible to obtain or inefficient. Here, we address the issue of limited temperature sensitivity range of optical lanthanide based nano-thermometers. By covering Yb–Er co-doped core nanoparticles with the Yb–Nd co-doped shell, we have intentionally combined temperature dependent Er u…

LanthanideMaterials sciencebusiness.industryDopingAnalytical chemistryNanoparticle02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesTemperature measurement0104 chemical sciencesNanomaterialsWavelengthNanocrystalOptoelectronicsGeneral Materials Science0210 nano-technologyLuminescencebusinessNanoscale
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Laparoscopic distal pancreatectomy: what factors are related to the learning curve?

2014

none 7 no PURPOSE: The factors related to the learning curve for laparoscopic distal pancreatectomy have rarely been evaluated. METHODS: A retrospective study of 32 patients who underwent a laparoscopic distal pancreatectomy performed at a high-volume center by a single pancreatic surgeon experienced with laparoscopic surgery was conducted. Pre-, intra- and postoperative data were collected. The primary endpoint was the length of the operation. The secondary endpoints were the conversion and reoperation rates, overall postoperative morbidity and mortality rates, the length of hospital stay and rate of unplanned splenectomy. RESULTS: The length of the operation and the cumulative sum of the …

Laparoscopic surgeryAdultMaleReoperationmedicine.medical_specialtyAdult; Aged; Databases Factual; Female; Humans; Laparoscopy; Length of Stay; Male; Middle Aged; Multivariate Analysis; Operative Time; Pancreatectomy; Reoperation; Retrospective Studies; Splenectomy; Survival Rate; Learning Curve; Medicine (all)Databases FactualLaparoscopy pancreas learningmedicine.medical_treatmentEndocrinology Diabetes and MetabolismSplenectomyOperative TimeDatabasesPancreatectomyRetrospective StudiemedicineClinical endpointHumansLaparoscopySurvival rateMultivariate AnalysiFactualRetrospective StudiesAgedmedicine.diagnostic_testHepatologybusiness.industryGeneral surgeryMortality rateMedicine (all)GastroenterologyRetrospective cohort studyGeneral MedicineLength of StayMiddle AgedSurgerySurvival RateSettore MED/18 - Chirurgia GeneralePancreatectomyMultivariate AnalysisSplenectomySurgeryFemaleLaparoscopybusinessLearning CurveHuman
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