Search results for "Lithium"

showing 10 items of 680 documents

Aminoendgruppenhaltige polymere durch anionische polymerisation von vinylverbindungen mit 3-Dimethylaminopropyllithium als initiator

1975

α-Methylstyrol (in THF) sowie Styrol bzw. Butadien (in Benzol) wurden mit 3-Dimethyl-aminopropyllithium (1) als Initiator homopolymerisiert; dabei wurden aufgrund des Einflusses der tertiaren Aminogruppe bei der Polymerisation in apolarem Medium, verglichen mit der Initiierung durch Butyllithium, Veranderungen der Mikrostruktur der Polymeren beodachtet. Die Molekulargewichte der Polymeren sind hoher, als sich nach dem eingesetzten Monomer/Initiator-Verhatnis berechnete. Der Aminoendgruppengehalt der Polymeren wurde elementaranalytisch sowie NMR-spektroskopisch quantitative bestimmt; die tertiaren Aminoendgruppen konnten mit Methylijodid quantitativ zum quartaren Salz umgesetz werden, mit Br…

chemistry.chemical_classificationEnd-groupchemistry.chemical_compoundMonomerPolymerizationchemistryPolymer chemistryButyllithiumPolymerBenzeneStyreneMethyl iodideDie Makromolekulare Chemie
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Beiträge zur polymerisation von 2-isopropenylnaphthalin, 3. Anionische homopolymerisation von 2-isopropenylnaphthalin

1981

The anionic homopolymerization of 2-isoprenylnaphthalene with butyllithium in tetrahydrofuran at –78°C is described. The refractive index increment amounts to dn/dc = 0,2084 ml/g for these polymers in toluene at 25°C and wavelength λ = 436 nm. Determination of the molecular weights by light scattering yielded values between 13 000 and 270 000. The second virial coefficients also determined by light scattering measurements are comparable with the corresponding data of poly(α-methylstyrene). A calibration curve is given for gel permeation chromatography of the poly(2-isoprenylnaphthalene)s, whose polymolecularity indexes Mw/Mn lie between 1,06 and 1,2. Their intrinsic viscosity/molecular weig…

chemistry.chemical_classificationGel permeation chromatographychemistry.chemical_compoundchemistryVirial coefficientIntrinsic viscosityPolymer chemistryButyllithiumPolymerGlass transitionTetrahydrofuranLight scatteringDie Makromolekulare Chemie
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Über die reduktion von polyacrylsäurederivaten

1960

Bei der Reduktion von Polyacrylsaurechlorid und von Polyacrylsaure-N-methylanilid mit Lithiumaluminium-tri-tert.-butoxyhydrid bzw. Lithiumaluminiumhydrid entstehen Polymere mit 30–50 Mol-% Aldehydgruppen. Aus Polyacrylsaurechloriden, Polyacrylsauremethylestern und Polyacroleinen wurden bei der Reduktion mit Lithiumaluminiumhydrid bzw. Kaliumborhydrid identische polymere Allylalkohole erhalten. Diese lassen sich acylieren, tritylieren und tosylieren. Die Polyallyl- und Polyvinyl-dinitrobenzoate bilden mit α-Naphthylamin und Benzidin gefaurbte Molekulverbindungen. The reduction of polyacrylyl chloride and polyacryl-N-methylanilide with lithium aluminum tri-tert-butoxyhydride and lithium alumi…

chemistry.chemical_classificationHydridePotassiumALUMINUM HYDRIDEchemistry.chemical_elementChlorideAldehydeBenzidinechemistry.chemical_compoundchemistryPolymer chemistrymedicineLithiumBoronmedicine.drugDie Makromolekulare Chemie
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ChemInform Abstract: A Simple and Efficient Route to 1,4-Diketones from Squaric Acid.

2010

Abstract Squaric acid derivatives react with organolithium compounds at room temperature to afford with excellent yields after hydrolysis, symmetrical and unsymmetrically substituted oxygenated 1,4 diketones bearing alkyl, aryl or heteroaryl groups at the carbonyl positions. In the case of aromatic or heteroaromatic ketones the enol tautomers are also obtained.

chemistry.chemical_classificationHydrolysischemistry.chemical_compoundChemistryOrganolithium compoundsArylOrganic chemistryGeneral MedicineSquaric acidEnolTautomerAlkylChemInform
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Decoupling of Dynamic Processes in Surfactant-Based Liquid Mixtures: The Case of Lithium-Containing Bis(2- ethylhexyl)phosphoric Acid/Bis(2-ethylhexy…

2014

Pure surfactant liquids and their binary mixtures, because of the amphiphilic nature of the molecules involved, can exhibit nanosegregation and peculiar transport properties. The idea that inspired this work is that the possibility of including in such media salts currently used for technological applications should lead to a synergy between the properties of the salt and those of the medium. Therefore, the dynamic features of bis(2-ethylhexyl)amine (BEEA) and bis(2-ethylhexyl)phosphoric acid (HDEHP) liquid mixtures were investigated as a function of composition and temperature by (1)H nuclear magnetic resonance (NMR) spectroscopy and rheometry. Inclusion of litium trifluoromethanesulfonate…

chemistry.chemical_classificationInorganic chemistryInfrared spectroscopychemistry.chemical_elementSalt (chemistry)Lithium-Containing Bis(2-ethylhexyl)phosphoric Acid/Bis(2-ethylhexyl)amine SystemsSurfaces and InterfacesCondensed Matter Physicschemistry.chemical_compoundsurfactant-based liquid mixtures physico chemical propertieschemistryPulmonary surfactantElectrochemistryGeneral Materials ScienceAmine gas treatingLithiumPulsed field gradientTrifluoromethanesulfonatePhosphoric acidSpectroscopySettore CHIM/02 - Chimica Fisica
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Linked Benzylamido-Cyclopentadienyl Ligands: Synthesis and Characterization of Alkyl Titanium Complexes

1997

Titanium complexes of the general type Ti(η5:η1-C5H4Si-Me2NCH2C6H3X2-2,5)Cl2 (XH, F), containing a linked benzylamido-cyclopentadienyl ligand, were prepared by reaction of Ti(η5-C5H4SiMe2Cl)Cl3 with lithium amide Li(NHCH2C6H3X2-2,5). A single-crystal X-ray structural analysis of Ti(η5: η1-C5H4SiME2NCH2C6H3F2-2,5)Cl2 revealed a conformation in the solid state in which the aryl ring is turned away from the metal center. Ti(η5:η1-C5H4SiMe2NCH2C6H5)Cl2 can be alkylated with a variety of reagents to form extremely sensitive complexes of the type Ti(η5-C5H4SiMe,2NCH2C6H5)R2 (RMe, CH2 C6H5, CH2SiME3, CH2CMe2C6H5). Reaction of Li2[C5Me4SiMe2NCH2C6H5] with TiCl3(THF)3 gave Ti(η5: η1-C5Me4SiMe2NCH2C6…

chemistry.chemical_classificationLithium amideLigandStereochemistryArylchemistry.chemical_elementAlkylationInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryCyclopentadienyl complexLewis acids and basesAlkylTitaniumChemische Berichte
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The viscoelastic behavior of nylon 6/lithium halides mixtures

1980

Stress-relaxation experiments in the limit of small deformations have been carried out in a wide range of temperatures for pure nylon 6 and its mixtures with LiBr and/or LiCl. Master curves have been constructed, by allowing horizontal shifts only, showing the shape typical for semicrystalline polymers in the case of pure nylon and that of essentially amorphous polymers in the case of salted samples. The glass transition temperatures determined from the plot logaT− 1/T is increased when in the presence of salts. All such effects are considered to reflect the binding action of Li+ and Br− ions.

chemistry.chemical_classificationMaterials scienceAnalytical chemistryHalidechemistry.chemical_elementPolymerCondensed Matter PhysicsViscoelasticityAmorphous solidCrystallinitychemistry.chemical_compoundNylon 6chemistryOrganic chemistryGeneral Materials ScienceLithiumGlass transitionRheologica Acta
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Correlations between Ion Conductivity and Polymer Dynamics in Hyperbranched Poly(ethylene oxide) Electrolytes for Lithium-Ion Batteries

2011

Poly(ethylene oxide)s with varying degrees of hyperbranching are effective at preventing the crystallization of PEO and lead to approximately a 100-fold increase in the Li-ion conductivity below 50 °C as compared with linear PEO. The Li-ion conductivities, which increase further upon permethylation of the hydroxyl termini, are found to correlate quantitatively with the fast segmental dynamics of PEO as measured by inelastic neutron scattering.

chemistry.chemical_classificationMaterials scienceEthylene oxideGeneral Chemical Engineeringtechnology industry and agricultureOxidechemistry.chemical_elementmacromolecular substancesGeneral ChemistryPolymerElectrolyteConductivitylaw.inventionIonchemistry.chemical_compoundchemistryChemical engineeringlawPolymer chemistryMaterials ChemistryLithiumCrystallizationChemistry of Materials
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Lithium salt additives and the influence of their counterion on the performances of light-emitting electrochemical cells

2016

In this work we study the effect of the addition of lithium salts to light-emitting electrochemical cells (LECs), and in particular the effect of the lithium counterion. We found that the chosen lithium salts can substantially improve the device turn-on time as well as the overall lifetime, with respect to reference LECs using the pure emitter. A correlation between the lithium counterion and the corresponding device performance is established, and efficient LECs with lifetimes approaching 2000 hours are presented.

chemistry.chemical_classificationMaterials scienceInorganic chemistrySalt (chemistry)chemistry.chemical_element02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesElectrochemical cellchemistryMaterials ChemistryLithiumCounterion0210 nano-technologyCommon emitterJournal of Materials Chemistry C
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Influence of processing conditions on some properties of anionically synthesized polycaprolactam in presence of lithium chloride

1980

Nylon 6–LiCl systems of various concentrations were prepared by anionic polymerization of caprolactam in the presence of salt. A depression of both crystallization rate and melting temperature was evidenced through x-ray, density, and DSC analyses. Such a preliminary characterization allowed for choosing the proper conditions in order to obtain amorphous fibers from a spinning operation which was performed at a temperature lower than the pure polymer melting point. These results are of technological relevance, especially in view of obtaining, as in similar cases, large amorphous orientations through a spinning–drawing process and high-modulus fibers after subsequent crystallization. Also, t…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsCaprolactamGeneral ChemistryPolymerSurfaces Coatings and Filmslaw.inventionAmorphous solidchemistry.chemical_compoundCrystallinityAnionic addition polymerizationchemistryChemical engineeringlawPolymer chemistryMaterials ChemistryMelting pointLithium chlorideCrystallizationJournal of Applied Polymer Science
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