Search results for "Material chemistry"

showing 10 items of 413 documents

Effect of sodium to barium substitution on the space charge implementation in thermally poled glasses for nonlinear optical applications

2009

Thermally poled niobium borophosphate glasses in the system 0.55(0.95-y) NaPO{sub 3}+y/2 Ba(PO{sub 3}){sub 2}+0.05Na{sub 2}B{sub 4}O{sub 7})+0.45Nb{sub 2}O{sub 5} were investigated for second order optical nonlinear (SON) properties. Bulk glasses were studied by Raman spectroscopy, thermal analysis, optical and dielectric measurements. The sodium to barium substitution does not lead to significant changes in optical properties, crystallization of glasses and coordination environment of polarizable niobium atoms. However, the ionic conductivity decreases drastically with the increase of barium concentration. Secondary ion mass spectroscopy has been used to determine the element distribution …

Analytical chemistryNiobiumchemistry.chemical_element02 engineering and technologyDielectric01 natural sciencesSpace chargeInorganic Chemistrysymbols.namesakeIonic conductivity0103 physical sciencesMaterials ChemistryPhysical and Theoretical Chemistry010302 applied physicsThermal polingSecond-harmonic generationNonlinear opticsBarium[CHIM.MATE]Chemical Sciences/Material chemistrySecond harmonic generation021001 nanoscience & nanotechnologyCondensed Matter PhysicsSpace chargeElectronic Optical and Magnetic MaterialschemistryBorophosphate glasses[ CHIM.MATE ] Chemical Sciences/Material chemistryContent (measure theory)Ceramics and Compositessymbols0210 nano-technologyRaman spectroscopy
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TiO2 anatase films obtained by direct liquid injection atomic layer deposition at low temperature

2014

International audience; TiO2 thin films were grown by direct liquid injection atomic layer deposition (DLI-ALD) with infrared rapid thermal heating using titanium tetraisopropoxide and water as precursors. This titanium tetraisopropoxide/water process exhibited a growth rate of 0.018 nm/cycle in a self-limited ALD growth mode at 280 degrees C. Scanning electron microscopy and atomic force microscopy analyses have shown a smooth surface with a low roughness. XPS results demonstrated that the films were pure and close to the TiO2 stoichiometric composition in depth. Raman spectroscopy revealed that the films were crystallized to the anatase structure in the as-deposited state at low temperatu…

AnataseMaterials scienceScanning electron microscope[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Analytical chemistryGeneral Physics and Astronomychemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencessymbols.namesakeAtomic layer depositionX-ray photoelectron spectroscopyThin filmSurfaces and InterfacesGeneral Chemistry[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSurfaces Coatings and FilmsTitanium oxidechemistry[ CHIM.MATE ] Chemical Sciences/Material chemistrysymbols[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]0210 nano-technologyRaman spectroscopyTitanium
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Surface and Electronic Features of Fluorinated TiO 2 and Their Influence on the Photocatalytic Degradation of 1-Methylnaphthalene

2020

International audience; Surface fluorination improves the photocatalytic activity of TiO2, and the influences of various features of fluorinated TiO2 (TiO2–F) have often been discussed in the literature. The present paper addresses the changes induced by surface fluorination on the morphological, structural, surface, and electronic features of TiO2. In particular, X-ray diffraction, specific surface area analysis, and transmission and scanning electron microscopy give evidence that surface fluorination does not affect the structural properties and the morphology of TiO2 nanoparticles. In contrast, fluorination induces changes of surface and electronic properties. Chemical and thermogravimet…

AnionsMaterials scienceHalogenation02 engineering and technology010402 general chemistry01 natural sciences1-Methylnaphthalenechemistry.chemical_compoundDegradationPhysical and Theoretical ChemistryPhotocatalytic degradationOxidesFluorine[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materials[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryGeneral Energy[CHIM.POLY]Chemical Sciences/Polymers[SDV.SP.PG]Life Sciences [q-bio]/Pharmaceutical sciences/Galenic pharmacologyChemical engineeringchemistry13. Climate actionPhotocatalysis0210 nano-technology
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Recent advances in electrochemical meso- and β-functionalization of porphyrins and electrografting of diazonium porphyrins

2020

Abstract Recent studies on electrochemical meso- and β-functionalization of porphyrins and electrografting of diazonium porphyrin are presented. First, the electrochemical oxidative C–C coupling between porphyrins will be presented, followed by the intermolecular and intramolecular meso- and β-substitutions of porphyrins. Then, the latest results on diazonium porphyrin electrografting will be reviewed.

Anodic nucleophilic substitution02 engineering and technology010402 general chemistryPhotochemistryElectrochemistry01 natural sciencesDiazonium-porphyrin electrograftingAnalytical ChemistryPorphyrinchemistry.chemical_compoundOrganic electrosynthesis[CHIM.ANAL]Chemical Sciences/Analytical chemistryElectrochemistry[CHIM.COOR]Chemical Sciences/Coordination chemistry[CHIM.ORGA]Chemical Sciences/Organic chemistryIntermolecular forceElectropolymerization[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyPorphyrin0104 chemical sciencesCoupling (electronics)chemistryIntramolecular forceSurface modification0210 nano-technology
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Electronic Interactions in a New π-Extended Tetrathiafulvalene Dimer

2006

The first pi-extended tetrathiafulvalene (exTTF) dimer in which the two exTTF units are covalently connected by 1,3-dithiole rings has been obtained in a multistep synthetic procedure involving the Ullmann cross-coupling reaction by using copper(I) thiophene-2-carboxylate (CuTC). The electronic spectrum reveals a significant electronic interaction between the exTTF units. The electrochemical study carried out by cyclic voltammetry in solution and in thin-layer conditions, and the electrochemical simulation and spectroelectrochemical (SEC) measurements confirm the electronic communication and show that the oxidation of dimer 14 occurs as two consecutive 2 e(-) processes D(0)-D(0)-->D(2+)-D(0…

AnthracenesAnthraceneDimerOrganic Chemistrychemistry.chemical_elementStereoisomerism[CHIM.MATE]Chemical Sciences/Material chemistryGeneral ChemistryPhotochemistryElectrochemistryCopperCatalysisDelocalized electronchemistry.chemical_compoundCrystallographyModels ChemicalchemistryHeterocyclic CompoundsCovalent bondElectrochemistryElectronicsCyclic voltammetryDimerizationOxidation-ReductionTetrathiafulvaleneChemistry - A European Journal
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MZ-35, a new layered pentasil borosilicate synthesized in the presence of large alkali cations

2013

Abstract A new layered borosilicate has been synthesized in the presence of cesium and sodium cations and its structure has been solved by a combination of automated diffraction tomography (ADT) and X-ray powder diffraction (XRPD). MZ-35 has a composition NaCs 2 [BSi 7 O 16 (OH) 2 ](OH) 2 ·4H 2 O and features space group P-4m2. The unusually small unit cell ( a 7.3081 A, c 10.7520 A) is shared by two random-stacked configurations of the structure: a network of connected pentasil units related to the layer of RUB-18 and a bidimensional checkerboard of intersecting ladders of 4-membered rings. The two configurations are related by the simple face-sharing inversion of a hydroxyl-bearing tetrah…

Automated electron diffraction tomography; Rietveld structure refinement; Layered borosilicate; 4-MR ladders; Face-sharing terahedraMaterials science4-MR laddersSodiumchemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencesDiffraction tomographyFace-sharing terahedraGroup (periodic table)General Materials ScienceRietveld structure refinementLayered borosilicateBorosilicate glassAutomated electron diffraction tomographyGeneral Chemistry4-MR ladders; Automated electron diffraction tomography; Face-sharing terahedra; Layered borosilicate; Rietveld structure refinement[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsAlkali metal4-MR ladders; Automated electron diffraction tomography; Face-sharing terahedra; Layered borosilicate; Rietveld structure refinement;0104 chemical sciencesCrystallographychemistryMechanics of MaterialsCaesiumTetrahedron0210 nano-technologyPowder diffraction
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Impedance investigation of BaCe0.85Y0.15O3-delta properties for hydrogen conductor in fuel cells

2012

International audience; The influence of the sintering conditions on the electrochemical properties of the proton conducting electrolyte BaCe0.85Y0.15O3-delta (BCY15) and Ni - based BCY15 cermet anode for application in high temperature proton conducting fuel cell are investigated by electrochemical impedance spectroscopy. The results show that at lower sintering temperatures due to the formation of parasitic Y2O3 phase an increase of both the electrolyte and electrode resistances is observed. This effect is strongly reduced by enhancement of the sintering temperature. The obtained BCY15 conductivity (sigma = 2.5x10(-2) S/cm at 700 degrees C) is comparable with that of the best proton condu…

BaCeO3[CHIM.MATE] Chemical Sciences/Material chemistryCeramicsBCY15[ CHIM.MATE ] Chemical Sciences/Material chemistryOxides[CHIM.MATE]Chemical Sciences/Material chemistryProtonElectrochemical impedance spectroscopyAnodeProton-conducting electrolyte
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Non-Innocent Base Properties of 3- and 4-Pyridyl-dithia- and Diselenadiazolyl Radicals : The Effect of N-Methylation

2018

International audience; Condensation of persilylated nicotinimideamide and isonicotinimideamide with sulfur monochloride affords double salts of the 3-, 4-pyridyl-substituted 1,2,3,5-dithiadiazolylium DTDA cations of the general formula [3-, 4-pyDTDA][Cl][HCl] in which the pyridyl nitrogen serves as a noninnocent base. Reduction of these salts with triphenylantimony followed by deprotonation of the intermediate-protonated radical affords the free base radicals [3-, 4-pyDTDA], the crystal structures of which, along with those of their diselenadiazolyl analogues [3-, 4-pyDSDA], have been characterized by powder or single-crystal X-ray diffraction. The crystal structures consist of “pancake” π…

Base (chemistry)Radicalsuolat (yhdisteet)free radicals02 engineering and technologyCrystal structure010402 general chemistryMetathesistriflate saltsvapaat radikaalit01 natural sciencesMedicinal chemistryChlorideInorganic ChemistrydimersDeprotonationrikkiyhdisteetmedicinePhysical and Theoretical Chemistryta116dithiadiazoleschemistry.chemical_classificationIntermolecular forceFree base[CHIM.MATE]Chemical Sciences/Material chemistryN-methylation021001 nanoscience & nanotechnology0104 chemical sciencesoligomeerichemistry0210 nano-technologymedicine.drug
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Influence of chitin nanocrystals on the dielectric behaviour and conductivity of chitosan-based bionanocomposites

2018

[EN] A series of bionanocomposite films based on chitosan, reinforced with chitin nanocrystals, were developed, and assessed in terms of dielectric behaviour and conductivity by using an experimental methodology that allows avoiding the conductivity contribution and the exclusion of contact and interfacial polarization effects. The dielectric relaxations at low and high frequency and temperatures were modeled by Havriliak-Negami functions. Below the glass transition temperature (Tg), the gamma and beta relaxations were observed, which were related to intramolecular and non-cooperative segmental movements. At higher temperatures, an intermolecular and cooperative macromolecular movement, rel…

BionanocompositesSolucions polimèriquesMaterials scienceMaterial testingIonic bonding02 engineering and technologyDielectricActivation energyConductivity010402 general chemistry01 natural sciencesChitosanchemistry.chemical_compoundElectrical resistivity and conductivity[CHIM.ANAL]Chemical Sciences/Analytical chemistryComposite materialsChitosanChitosanIntermolecular forceGeneral EngineeringINGENIERIA DE LOS PROCESOS DE FABRICACION[CHIM.MATE]Chemical Sciences/Material chemistryCiència dels materials021001 nanoscience & nanotechnology0104 chemical sciencesChitin nanocrystals[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry[CHIM.POLY]Chemical Sciences/PolymersChemical engineeringchemistryMAQUINAS Y MOTORES TERMICOSCeramics and CompositesChitin nanocrystal0210 nano-technologyGlass transitionDielectric thermal analysis (DETA)
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Design and synthesis of biobased epoxy thermosets from biorenewable resources

2017

International audience; Biobased diepoxy synthons derived from isoeugenol, eugenol or resorcinol (DGE-isoEu, DGE-Eu and DGER, respectively) have been used as epoxy monomers in replacement of the diglycidyl ether of bisphenol A (DGEBA). Their curing with six different biobased anhydride hardeners leads to fully biobased epoxy thermosets. These materials exhibit interesting thermal and mechanical properties comparable to those obtained with conventional petrosourced DGEBA-based epoxy resins cured in similar conditions. In particular, a high Tg in the range of 90–130 °C and instantaneous moduli higher than 4.3 GPa have been recorded. These good performances are very encouraging, making these n…

Bisphenol AMaterials scienceDiglycidyl etherGeneral Chemical EngineeringThermosetting polymer02 engineering and technologyResorcinol010402 general chemistry01 natural sciences[ CHIM ] Chemical SciencesNanoindentationchemistry.chemical_compound[CHIM] Chemical SciencesPolymer chemistry[CHIM]Chemical SciencesComputingMilieux_MISCELLANEOUSCuring (chemistry)Biobased resinsPolymer scienceCuring process[CHIM.MATE]Chemical Sciences/Material chemistryGeneral ChemistryEpoxy021001 nanoscience & nanotechnology0104 chemical sciencesDEGBA alternativeIsoeugenolMonomerchemistryvisual_artvisual_art.visual_art_medium0210 nano-technologyEpoxy-anhydride thermosets
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