Search results for "tetrahydrofuran"

showing 10 items of 284 documents

Catalytic and anticancer activities of sawhorse-type diruthenium tetracarbonyl complexes derived from fluorinated fatty acids

2013

The reaction of fluorinated fatty acids, perfluorobutyric acid (C3F7CO2H), and perfluorododecanoic acid (C11F23CO2H), with dodecacarbonyltriruthenium (Ru3(CO)12) under reflux in tetrahydrofuran, followed by addition of two-electron donors (L) such as pyridine, 1,3,5-triaza-7-phosphatricyclo[3.3.1.1]decane, or triphenylphosphine, gives stable diruthenium complexes Ru2(CO)4(μ2-η2-O2CC3F7)2(L)2 (1a, L = C5H5N; 1b, L = PTA; 1c, L = PPh3) and Ru2(CO)4(μ2-η2-O2CC11F23)2(L)2 (2a, L = C5H5N; 2b, L = PTA; 2c, L = PPh3). The catalytic activity of the complexes for hydrogenation of styrene under supercritical carbon dioxide has been assessed and compared to the analogous triphenylphosphine complexes w…

Supercritical carbon dioxidechemistry.chemical_elementDecaneMedicinal chemistryRutheniumCatalysisStyrenechemistry.chemical_compoundchemistryPyridineMaterials ChemistryOrganic chemistryPhysical and Theoretical ChemistryTriphenylphosphineTetrahydrofuranJournal of Coordination Chemistry
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Preparation and properties of poly(L-lactic acid) scaffolds by thermally induced phase separation from a ternary polymer-solvent system

2004

Poly(L-lactic acid) (PLLA) foams for tissue engineering were prepared via thermally induced phase separation of a ternary system PLLA/dioxane/tetrahydrofuran (THF) followed by double solvent exchange (water and ethyl alcohol) and drying. An extension to solidification from solution of a previously developed method for solidification from the melt was adopted. The technique is based on a continuous cooling transformation (CCT) approach, consisting in recording the thermal history experienced by rapidly cooled samples and then analyzing the resulting sample morphology. Different foams were produced by changing the relative amount of dioxane and THF in the starting solution while the amount of…

Ternary numeral systemMaterials scienceTissue EngineeringPolymers and PlasticsOrganic ChemistryPorosimetrylaw.inventionSolventCrystallinitychemistry.chemical_compoundchemistryChemical engineeringlawSpecific surface areaPolymer chemistryMaterials ChemistrySolvent effectsCrystallizationTetrahydrofuranPolymer International
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Islands of Immiscibility for Solutions of Compatible Polymers in a Common Solvent: Experiment and Theory

2009

Experimentally obtained islands of immiscibility are reported for the systems PS/PVME/THF at 20 °C and for PS/PVME/CH at 55 °C (PS: polystyrene, PVME: poly(vinyl methyl ether), THF: tetrahydrofuran, CH: cyclohexane). THF is a good solvent and CH is a marginal solvent for both polymers. In the case of THF, information on the Flory−Huggins interaction parameters of the three binary subsystems suffices for a qualitative prediction of the phase behavior of the ternary system. Quantitative agreement can be achieved by means of composition-independent ternary interaction parameters. For the marginal solvent CH, the exclusive use of binary interaction parameters wrongly predicts complete miscibili…

Ternary numeral systemPolymers and PlasticsCyclohexaneOrganic ChemistryThermodynamicsFlory–Huggins solution theoryMiscibilityInorganic ChemistrySolventchemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistrySolvent effectsTernary operationTetrahydrofuranMacromolecules
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Insights into grafting of (3-Mercaptopropyl) trimethoxy silane on halloysite nanotubes surface

2020

Abstract Functionalization of halloysite nanotubes surface by using organosilanes is sensitive to the reaction conditions. Halloysite nanotubes (HNTs) were modified using (3-Mercaptopropyl) trimethoxy silane (MPTMS). The experiments were performed under different reaction conditions including, various solvents [Toluene, Tetrahydrofuran (THF), Ethanol, n-Hexane, 1,4 Dioxane and Acetonitrile], water content in the reaction media, volume of solvent, number of moles of silane and catalysts (triethyl amine, ammonia solution and tetra-ethoxy titanium). The elemental analysis, FT-IR analysis were used to identify the samples, which attained the highest percent of functionalization. SEM image and t…

Thermogravimetric analysisengineering.material010402 general chemistry01 natural sciencesBiochemistryHalloysiteOrganosilanesCatalysisInorganic Chemistrychemistry.chemical_compoundMaterials ChemistryPhysical and Theoretical ChemistryAcetonitrileTetrahydrofuranGrafting010405 organic chemistryOrganic ChemistryHalloysiteThermogravimetric analysisSilane0104 chemical sciencesFT-IRSolventchemistryChemical engineeringSEMNanoclayengineeringSurface modificationJournal of Organometallic Chemistry
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Comparative Study of Different Column Types for the Separation of Polar Basic Hallucinogenic Alkaloids

2016

The number of hallucinogenic compounds that have been separated simultaneously by liquid chromatography is limited. This research aimed to identify a column(s) that can allow for separation of several hallucinogens. The extent of separation of seven polar hallucinogenic tryptamine and phenethylamine derived alkaloids containing a basic N atom that becomes protonated at low pH values were investigated on five reverse-based columns and one hydrophilic interaction liquid chromatography (HILIC) column. An RP-phenyl and a negatively charged fused core HILIC were identified and recommended as effective columns in this regard. This research is the first to introduce a HILIC column in separation of…

TryptaminePhenethylaminePolarity (physics)01 natural sciencesDiluenttetrahydrofuranchemistry.chemical_compoundmedicinehallucinogenOrganic chemistrypolar compoundsHILICAcetonitrilepsilocinTetrahydrofuranChromatography010405 organic chemistryHydrophilic interaction chromatography010401 analytical chemistryGeneral Chemistrymuscimol0104 chemical scienceschemistryPsilocinHallucinogenmedicine.drugSouth African Journal of Chemistry = Suid-Afrikaanse Tydskrif Vir Chemie
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Reduction of tris(benzene-1,2-dithiolate)molybdenum(VI) by hydroxide ions in dry tetrahydrofuran solution.

2001

Tris(benzene-1,2-dithiolate)molybdenum(VI) reacts rapidly and quantitatively with tetrabutylammonium hydroxide to yield the corresponding Mo(V) and Mo(IV) complexes and hydrogen peroxide; the reaction has been executed in dry tetrahydrofuran where the reaction rate shows a fair dependence on complex and OH2 concentrations. Cervilla Avalos, Antonio, Antonio.Cervilla@uv.es ; Perez Pla, Francisco, Francisco.Perez@uv.es ; Llopis Jover, Elisa, Elisa.Llopis@uv.es

UNESCO::QUÍMICAInorganic chemistrychemistry.chemical_element:QUÍMICA [UNESCO]CatalysisReaction ratechemistry.chemical_compoundMaterials ChemistryReduction ; Hydroxide ions ; Tetrahydrofuran solution ; Hydrogen peroxide ; OH2Hydrogen peroxideBenzeneTetrahydrofuranReductionUNESCO::QUÍMICA::Química inorgánicaTetrabutylammonium hydroxideMetals and AlloysGeneral ChemistryHydrogen peroxide:QUÍMICA::Química inorgánica [UNESCO]Surfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsHydroxide ionschemistryOH2MolybdenumYield (chemistry)Ceramics and CompositesHydroxideTetrahydrofuran solutionChemical communications (Cambridge, England)
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UV photoexcitation of a dissolved metalloid Ge9 cluster compound and its extensive ultrafast response.

2015

Femtosecond pump-probe absorption spectroscopy in tetrahydrofuran solution has been used to investigate the dynamics of a metalloid cluster compound {Ge9[Si(SiMe3)3]3}(-). Upon UV photoexcitation, the transients in the near-infrared spectral region showed signatures reminiscent of excess electrons in THF (bound or quasi-free) whereas in the visible part excited state dynamics of the cluster complex dominates.

UV photoexcitationgermanium clustersAbsorption spectroscopyMetals and AlloysGeneral ChemistryElectronPhotochemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPhotoexcitationchemistry.chemical_compoundchemistryExcited stateFemtosecondMaterials ChemistryCeramics and CompositesCluster (physics)Metalloidta116TetrahydrofuranChemical communications (Cambridge, England)
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CCDC 258947: Experimental Crystal Structure Determination

2005

Related Article: A.Ahman, M.Luostarinen, C.A.Schalley, M.Nissinen, K.Rissanen|2005|Eur.J.Org.Chem.|2005|2793|doi:10.1002/ejoc.200500039

bis(10122224-Tetrahydroxy-4561116171823-octakis(246-trimethylbenzenesulfonato)-281420-tetrapropylcalix[4]arene) tridecakis(tetrahydrofuran) clathrateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1035257: Experimental Crystal Structure Determination

2015

Related Article: Christoph Förster and Katja Heinze|2015|Z.Anorg.Allg.Chem.|641|517|doi:10.1002/zaac.201400548

bis(mu-ferrocenyl)-tetrakis(tetrahydrofuran)-di-lithiumSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 195747: Experimental Crystal Structure Determination

2003

Related Article: A.T.Trifonov, T.P.Spaniol, J.Okuda|2003|Eur.J.Inorg.Chem.||926|doi:10.1002/ejic.200390122

catena-((mu~2~-Iodo)-bis(mu~2~-eta^5^eta^5^-t-butylamido(dimethyl)silylmethyl-cyclopentadienyl)-tetrakis(tetrahydrofuran)-lithium-di-ytterbium)Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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