Search results for "ionic"

showing 10 items of 2016 documents

The formal redox potential of the Yb(III,II) Couple at 0°C in 3.22 molal NaCl medium

2004

Following our previous investigations on aqueous solutions of hypooxidized and iperoxidized species, we managed, by lowering the temperature of the solutions to 0 degrees C, to obtain, by electrochemical methods, Yb(II) and Yb(III) mixtures, enough stable to determine by a potentiometric method the formal redox potential of the Yb(IlI, II) couple. Its value, in a large range of total Ytterbium concentration, is -1233 +/- 3 mV against the molal hydrogen electrode in the 3.22 m NaCl medium.

YtterbiumMolalityAqueous solutionStandard hydrogen electrodeChemistryInorganic chemistryvanadium amino acids ionic mediumTemperaturechemistry.chemical_elementLarge rangeSodium ChlorideElectrochemistryRedoxAnalytical ChemistryElectrochemistryElectroanalytical methodYtterbiumOxidation-ReductionGeneral Environmental Science
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Physicochemical Investigation of the Solubilization of Ytterbium Nitrate in AOT Reverse Micelles and Liquid Crystals

2006

A wide investigation of the solubilization of the water-soluble salt Yb(NO3)(3) in sodium bis(2-ethylhexyl)sulfosuccinate (AOT) reverse micelles and AOT liquid crystals has been carried out. After saturation of water/AOT/organic solvent w/o microemulsions with pure Yb(NO3)(3), the Yb(NO3)(3)/AOT composites were prepared by complete evaporation under vacuum of the volatile components (water and organic solvent) of the salt-containing microemulsions. It was observed that these composites can be totally dissolved in pure n-heptane or CCl4, allowing the solubilization of a noticeable amount of Yb(NO3)(3) in quite dry apolar media. By UV-vis-NIR, FT-IR, and H-1 NMR spectroscopies, some informati…

YtterbiumPolymers and PlasticsSmall-angle X-ray scatteringytterbium nitrateAOT reverse micelleInorganic chemistryAnalytical chemistrychemistry.chemical_elementMicelleColloid and Surface ChemistrychemistryPulmonary surfactantLiquid crystalMaterials ChemistryProton NMRionic clustersconfinement effectMicroemulsionPhysical and Theoretical ChemistrySaturation (chemistry)solubilization
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Zirconium & Hafnium: Organometallic ChemistryBased in part on the article Zirconium & Hafnium: Organometallic Chemistry by Bernard Gautheron,…

2006

This review considers the main aspects of organometallic chemistry of zirconium and hafnium during the last 10 years. It is complementary to the first edition of Encyclopedia of Inorganic Chemistry. The material is presented in two major parts divided in five and three sections respectively. The first part is devoted to syntheses: the first section, by far the largest, covers in a systematic manner bis and mono cyclopentadienyl complexes with +4, +3, and +2 oxidation states and more especially constrained-geometry (CG) complexes, cationic complexes, and anionic or zwitterionic 18-electron complexes; unusual coordination geometries at carbon stabilized by group 4 metallocenes are presented i…

ZirconiumChemistryEnantioselective synthesisCationic polymerizationchemistry.chemical_elementHafniumCatalysischemistry.chemical_compoundCyclopentadienyl complexPolymerizationPolymer chemistryOrganic chemistryOrganic synthesisOrganometallic chemistry
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Gelled Electrolyte Containing Phosphonium Ionic Liquids for Lithium-Ion Batteries

2018

In this work, new gelled electrolytes were prepared based on a mixture containing phosphonium ionic liquid (IL) composed of trihexyl(tetradecyl)phosphonium cation combined with bis(trifluoromethane)sulfonimide [TFSI] counter anions and lithium salt, confined in a host network made from an epoxy prepolymer and amine hardener. We have demonstrated that the addition of electrolyte plays a key role on the kinetics of polymerization but also on the final properties of epoxy networks, especially thermal, thermo-mechanical, transport, and electrochemical properties. Thus, polymer electrolytes with excellent thermal stability (&gt

[CHIM.POLY] Chemical Sciences/PolymersMaterials scienceGeneral Chemical Engineeringchemistry.chemical_elementelectrolytes02 engineering and technologyElectrolyte010402 general chemistryElectrochemistry01 natural sciences7. Clean energyArticlelcsh:Chemistryionic liquidschemistry.chemical_compoundIonic conductivityGeneral Materials ScienceThermal stabilityPhosphoniumComputingMilieux_MISCELLANEOUS[CHIM.MATE] Chemical Sciences/Material chemistrythermosets[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical sciences[CHIM.POLY]Chemical Sciences/Polymerslcsh:QD1-999Lithium saltschemistryChemical engineeringPolymerizationIonic liquidLithium0210 nano-technology
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Thermodiffusion anisotropy under a magnetic field in ionic liquid-based ferrofluids

2021

International audience; Ferrofluids based on maghemite nanoparticles (NPs), typically 10 nm in diameter, are dispersed in an ionic liquid (1-ethyl 3-methylimidazolium bistriflimide - EMIM-TFSI). The average interparticle interaction is found to be repulsive by small angle scattering of X-rays and of neutrons, with a second virial coefficient A2 = 7.3. A moderately concentrated sample at Φ = 5.95 vol% is probed by forced Rayleigh scattering under an applied magnetic field (up to H = 100 kA m-1) from room temperature up to T = 460 K. Irrespective of the values of H and T, the NPs in this study are always found to migrate towards the cold region. The in-field anisotropy of the mass diffusion c…

[PHYS]Physics [physics]FerrofluidMaterials scienceCondensed matter physics02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesMagnetic fieldchemistry.chemical_compoundDipolechemistryVirial coefficientIonic liquidBistriflimideSmall-angle scattering0210 nano-technologyAnisotropySoft Matter
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Towards enhanced durability of electrochromic WO3 interfaced with liquid or ceramic sodium-based electrolytes

2020

Abstract The reversible intercalation of sodium ion into tungsten oxide WO3 appears as an interesting alternative to hydrogen or lithium ion reduction in order to get the characteristic transition from clear transparent to bluish coloration in electrochromic devices, but it has been comparatively less considered. In order to address further viable all-ceramic devices based on sodium ion intercalation and overcome the issue of WO3 degradation in aqueous media, three configurations of WO3 thin film-based electrochromic half-cells were tested, namely in (i) aqueous acidified Na2SO4 electrolyte, (ii) room temperature ionic liquid BEPipTFSI electrolyte and (iii) aqueous acidified Na2SO4 electrol…

[PHYS]Physics [physics]Materials scienceAqueous solutionGeneral Chemical EngineeringOxide02 engineering and technologyElectrolyte010402 general chemistry021001 nanoscience & nanotechnologyElectrochemistryElectrochromic devices01 natural sciences0104 chemical sciencesAmorphous solid[SHS]Humanities and Social Scienceschemistry.chemical_compoundchemistryChemical engineeringElectrochromismIonic liquidElectrochemistry[CHIM]Chemical Sciences0210 nano-technologyComputingMilieux_MISCELLANEOUS
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Leaching of glyphosate and AMPA under two soil management practices in Burgundy vineyards (Vosne-Romanée, 21-France)

2005

Some drinking water reservoirs under the vineyards of Burgundy are contaminated with herbicides. Thus the effectiveness of alternative soil management practices, such as grass cover, for reducing the leaching of glyphosate and its metabolite, AMPA, through soils was studied. The leaching of both molecules was studied in structured soil columns under outdoor conditions for 1 year. The soil was managed under two vineyard soil practices: a chemically treated bare calcosol, and a vegetated calcosol. After 680 mm of rainfall, the vegetated calcosol leachates contained lower amounts of glyphosate and AMPA (0.02% and 0.03%, respectively) than the bare calcosol leachates (0.06% and 0.15%, respectiv…

[SDE] Environmental SciencesHealth Toxicology and Mutagenesis010501 environmental sciencesToxicology01 natural sciences[ SDE ] Environmental SciencesSoil managementchemistry.chemical_compoundSoilAMPASoil PollutantsVitisLeaching (agriculture)Water pollutionComputingMilieux_MISCELLANEOUS2. Zero hungerAgriculture04 agricultural and veterinary sciencesGeneral MedicinePollutionSoil contaminationSTRUCTURED SOIL COLUMN6. Clean waterGlyphosate[SDE]Environmental SciencesFrancePorosityEnvironmental MonitoringGRASS COVERGlycineGLYPHOSATEPoaceaecomplex mixturesWater MovementsHumansalpha-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid0105 earth and related environmental sciencesCambisolHerbicides15. Life on land[SDE.ES]Environmental Sciences/Environmental and SocietyTRANSPORTAgronomychemistrySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceGroundwaterWater Pollutants Chemical
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Task-specific ionic liquid for the depolymerisation of starch-based industrial waste into high reducing sugars

2014

Development of a simple route for the catalytic conversion of starch-based industrial waste (potato peels) and potato starch into reducing sugars was investigated in two ionic liquids for comparison – 1-allyl-3-methylimidazolium chloride [AMIM]Cl and 1-(4-sulfobutyl)-3-methylimidazolium chloride [SBMIM]Cl. Over a two hour period, a 20 wt% solution containing up to 43% and 98% of reducing sugars at low temperature in aqueous [SBMIM]Cl was achieved for the starch-based waste and the potato starch, respectively. In addition, the use of microwave and low frequency ultrasound to perform the depolymerisation of the raw starch-based material was explored and compared with conventional heating proc…

[SDE] Environmental ScienceshydrolyysiStarchtask-specific ionic liquidsultrasoundsChlorideCatalysisIndustrial wasteCatalysismikroaallotchemistry.chemical_compoundHydrolysis[CHIM] Chemical Sciencesmedicine[CHIM]Chemical SciencesOrganic chemistryta116Potato starchComputingMilieux_MISCELLANEOUScarbohydrates reducing sugarsAqueous solutionGeneral Chemistry6. Clean waterchemistry[SDE]Environmental SciencesIonic liquidNuclear chemistrymedicine.drugCatalysis Today
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Les matériaux pour capteurs chimiques

2002

National audience; A chemical sensor is composed of one part supplying chemical reco gnition coupled to one transducingsystem. At the recognition origin, interaction with the target chemical species is oftwo types, either electronicexchange, or ionic exchange. Two large classes of materials that can supply recognition proceed: metals andsemiconductors giving rise to electronic exchange and ionic conducting materials giving rise to ionic exchan-ge. This paper is structured in tw o large parts, emphasizing on materi als inducing specific interactions:semiconductor materials (metallic oxides and molecular semiconductors) and ionic conductor materials.In each part will be presented nature of ma…

[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineeringoxydes métalliques[ SPI.GPROC ] Engineering Sciences [physics]/Chemical and Process Engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringCapteurs de gazmolecular semiconductorssemi-conducteurs moléculairesionic conductor materialsGas sensorsmetallic oxidesmatériaux conducteurs ioniquescapteurs ioniquesionic sensors
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Acid−Base Properties of Synthetic and Natural Polyelectrolytes: Experimental Results and Models for the Dependence on Different Aqueous Media

2008

Protonation constants of several natural and synthetic humates and fulvates were determined by ISE-H+ potentiometry in different ionic media (alkali metal halides and tetraethylammonium iodide) at different ionic strengths and T ) 298.15 K. Experimental data obtained in previous studies of different synthetic (polyacrylates, polymethacrylates, polyacrylate-co-maleate) and naturally occurring (alginate, humic substances) polycarboxylates were also taken into account in the general analysis of acid-base properties of polyelectrolytes. Protonation constants were expressed as a function of the dissociation degree (R) using three models, namely, a simple linear model, the Ho¨gfeldt three-paramet…

acid-base properiteAcrylate polymerdiprotic-like modelTetraethylammonium iodideGeneral Chemical EngineeringInorganic chemistryHalideIonic bondingProtonationGeneral ChemistryUronic acidAlkali metalPolyelectrolytethermodynamicchemistry.chemical_compoundchemistrySettore CHIM/01 - Chimica AnaliticapolyelectrolyteJournal of Chemical & Engineering Data
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