Search results for "Ethylene"

showing 10 items of 2589 documents

Gamma irradiation of graphene quantum dots with ethylenediamine: Antioxidant for ion sensing

2020

Due to the low consumption of chemicals, the absence of toxic residual side products, the procedure simplicity and time-saving aspects, gamma irradiation offers advantages over the classical chemical protocols. We successfully employed gamma irradiation in order to introduce N-atoms in Graphene Quantum Dots (GQDs). By irradiating GQDs water dispersions in the presence of isopropyl alcohol and ethylenediamine, at doses of 25, 50 and 200 kGy, we attached amino groups onto GQDs in a single synthetic step. At the same time, a chemical reduction is achieved, too. Selected conditions induced incorporation of N-atoms within GDQs atomic lattice (around 3 at%), at all applied doses. Additionally, th…

PhotoluminescenceMaterials scienceEthylenediamine02 engineering and technologyPhotochemistry01 natural scienceslaw.inventionIonMetalchemistry.chemical_compoundlaw0103 physical sciencesMaterials ChemistryZeta potentialSensor010302 applied physicsDetection limitChemical propertiesOptical propertiesGrapheneProcess Chemistry and TechnologyCarbon Chemical properties Optical properties Sensor021001 nanoscience & nanotechnologyCarbonSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryQuantum dotvisual_artCeramics and Compositesvisual_art.visual_art_medium0210 nano-technologyCeramics International
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Tunable luminescent lead bromide complexes

2020

Lead halides are used extensively to prepare perovskite-based devices but it is less known that lead halides can also form luminescent complexes in solvents. Using polyethylene glycol as a solvent, a lead bromide complex with a photoluminescence quantum yield over 20% is obtained and the photoluminescence peak can be shifted around 50 nm with different alkylammonium bromides.

PhotoluminescenceMaterials scienceInorganic chemistryLead bromideQuantum yieldHalideGeneral ChemistryPolyethylene glycolSolventchemistry.chemical_compoundchemistryMaterials ChemistryLuminescenceMaterialsCèl·lules fotoelèctriquesPerovskite (structure)
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1,3-Alternate calix[4]arenes, selectively functionalized by amino groups

2004

General strategies are described to synthesize calix[4]arenes which are fixed in the 1,3-alternate conformation and substituted selectively by amino groups. These derivatives are useful starting materials for the attachment of various groups via amide bonds, as demonstrated by several examples, but may be converted also to ureas, imides or azomethines. Four amino groups may be attached to the narrow rim via(several) methylene groups as spacer by O-alkylation with omega-bromophthalimides or omega-bromonitriles. From the resulting tetraethers the amino functions are obtained by cleavage with hydrazine or by hydrolysis, allowing a selective functionalisation of both sides of the molecule (phen…

PhthalimidesChemistryStereochemistryOrganic ChemistryCleavage (embryo)BiochemistryHydrolysischemistry.chemical_compoundYield (chemistry)Proton NMRNitroMoleculePhysical and Theoretical ChemistryMethyleneOrg. Biomol. Chem.
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Synchrotron-based Fourier transform spectra of the ν23 and ν24 IR bands of hexamethylenetetramine C6N4H12

2015

Abstract Hexamethylenetetramine (HMT), C6N4H12 is a spherical top with nine IR-active modes. Because of its relevance for astrophysics, we recorded the absorption spectra in the full range of its fundamental bands. In total, we detected eight fundamental bands and recently published the rotational analysis of the four most intense bands ( ν 19 , ν 20 , ν 21 , ν 22 ) located in the 1000–1500 cm−1 range as a support for astronomical searches (Pirali et al., 2014). While the CH stretch modes are unresolved broad features, in this article we report the analysis of the two remaining fundamental bands exhibiting rotationally resolved structures: ν 23 –GS and ν 24 –GS located at about 820 cm−1 and…

PhysicsAbsorption spectroscopyFourier transform spectraSpectral bandsAtomic and Molecular Physics and OpticsSynchrotronlaw.inventionchemistry.chemical_compoundNuclear magnetic resonancechemistryFar infraredlawPhysical and Theoretical ChemistryHexamethylenetetramineAtomic physicsSpectroscopyJournal of Molecular Spectroscopy
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High-resolution (3He,t) reaction on the double-βdecaying nucleus136Xe

2011

A (${}^{3}\text{He},t$) charge-exchange reaction experiment on the double-beta decaying nucleus ${}^{136}$Xe has been performed at an incident energy of 420 MeV with the objective to measure the Gamow-Teller (GT) strength distribution in ${}^{136}$Cs. The measurements have been carried out at the dispersion-matched WS beam line and the Grand Raiden spectrometer of the Research Center for Nuclear Physics in Osaka, where an energy resolution of 42 keV was achieved. A new gas cell with thin windows made of polyethylene naphthalate has been employed as a target. The extracted GT strength distribution is confronted with the rather long $2\ensuremath{\nu}\ensuremath{\beta}\ensuremath{\beta}$ deca…

PhysicsNuclear and High Energy PhysicsSpectrometerScatteringResolution (electron density)Nuclear physicsmedicine.anatomical_structuremedicineBeta (velocity)Atomic physicsPolyethylene naphthalateNucleusBeam (structure)Energy (signal processing)Physical Review C
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Arabidopsis copper transport protein COPT2 participates in the crosstalk between iron deficiency responses and low phosphate signaling

2013

[EN] Copper and iron are essential micronutrients for most living organisms because they participate as cofactors in biological processes, including respiration, photosynthesis, and oxidative stress protection. In many eukaryotic organisms, including yeast (Saccharomyces cerevisiae) and mammals, copper and iron homeostases are highly interconnected; yet, such interdependence is not well established in higher plants. Here, we propose that COPT2, a high-affinity copper transport protein, functions under copper and iron deficiencies in Arabidopsis (Arabidopsis thaliana). COPT2 is a plasma membrane protein that functions in copper acquisition and distribution. Characterization of the COPT2 expr…

PhysiologyArabidopsisPlant SciencePlant RootsMembranes Transport and BioenergeticsGene Expression Regulation PlantArabidopsisThalianaHomeostasisArabidopsis thalianaSLC31 ProteinsGene-expressionCation Transport ProteinsChlorosisbiologyRevealsIron DeficienciesMetal homeostasisPlantsPlants Genetically ModifiedUp-RegulationTransport proteinPhenotypeBiochemistrySignal TransductionIronRecombinant Fusion ProteinsSaccharomyces cerevisiaechemistry.chemical_elementSaccharomyces cerevisiaeModels BiologicalPhosphatesEthyleneGeneticsmedicineBIOQUIMICA Y BIOLOGIA MOLECULARFamilyIron deficiency (plant disorder)Arabidopsis ProteinsBiological TransportRoot elongationSequence Analysis DNAbiology.organism_classificationmedicine.diseaseCopperPlant LeavesAcquisitionchemistrySeedlingsStarvationMutationCopper deficiencyCopper
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Establishment of a pulmonary epithelial barrier on biodegradable poly-L-lactic-acid membranes

2019

Development of biocompatible and functional scaffolds for tissue engineering is a major challenge, especially for development of polarised epithelia that are critical structures in tissue homeostasis. Different in vitro models of the lung epithelial barrier have been characterized using non-degradable polyethylene terephthalate membranes which limits their uses for tissue engineering. Although poly-L-lactic acid (PLLA) membranes are biodegradable, those prepared via conventional Diffusion Induced Phase Separation (DIPS) lack open-porous geometry and show limited permeability compromising their use for epithelial barrier studies. Here we used PLLA membranes prepared via a modification of the…

PhysiologyCell MembranesCell Culture TechniquesBiocompatible Materials02 engineering and technologyEpitheliumTissue engineeringAnimal CellsAbsorbable ImplantsMaterials TestingElectric ImpedanceMedicine and Health SciencesLungTissue homeostasisBarrier functionStaining0303 health sciencesMultidisciplinaryTissue ScaffoldsTight junctionPolyethylene TerephthalatesChemistryQRCell Staining021001 nanoscience & nanotechnologyMembrane StainingElectrophysiologyMembranePhysical SciencesMedicineCytokinesBiological CulturesCellular Structures and OrganellesJunctional ComplexesCellular TypesAnatomy0210 nano-technologyResearch ArticleCell PhysiologySciencePolyestersMaterials ScienceMaterial PropertiesResearch and Analysis MethodsMembrane PotentialPermeabilityCell LineTight Junctions03 medical and health sciencesCell AdhesionHumans030304 developmental biologyBiochemistry Genetics and Molecular Biology (all)Tissue EngineeringBiology and Life SciencesEpithelial CellsMembranes ArtificialCell BiologyCell CulturesBiological TissueAgricultural and Biological Sciences (all)Specimen Preparation and TreatmentCell culturePermeability (electromagnetism)BiophysicsCytokine secretionPLOS ONE
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Xyloglucan endotransglucosylase/hydrolases (XTHs) during tomato fruit growth and ripening

2009

Abstract: Depolymerization of cell watt xyloglucan has been proposed to be involved in tomato fruit softening, along with the xyloglucan modifying enzymes. Xyloglucan endo-transgtucosylase/hydrolases (XTHs: EC 2.4.1.207 and/or EC 3.2.1.151) have been proposed to have a dual role integrating newly secreted xyloglucan chains into an existing watt-bound xyloglucan, or restructuring the existing cell watt material by catalyzing transglucosylation between previously wall-bound xyloglucan molecules. Here, 10 tomato (Solanum lycopersicum) SIXTHs were studied and grouped into three phylogenetic groups to determine which members of each family were expressed during fruit growth and fruit ripening, a…

PhysiologyPlant ScienceCell wallchemistry.chemical_compoundSolanum lycopersicumGene Expression Regulation PlantHemicelluloseBiologyPhylogenybiologyReverse Transcriptase Polymerase Chain ReactionComputational BiologyGlycosyltransferasesfood and beveragesPlant physiologyRipeningEthylenesXyloglucan endotransglucosylasebiology.organism_classificationXyloglucanHorticulturechemistryBiochemistryFruitSolanumAgronomy and Crop ScienceSolanaceaeJournal of Plant Physiology
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Reactive oxygen and ethylene are involved in the regulation of regurgitant-induced responses in bean plants.

2004

Summary Application of regurgitant from Leptinotarsa decemlineata Say on wound surfaces of one wounded leaf of intact bean ( Phaseolus vulgaris L.) plants resulted in activation of ethylene biosynthesis followed by an increase of both peroxidase and polyphenol oxidase activity. The aim of the present investigation was to study the source of increased oxidative enzyme activities in regurgitant-treated bean leaves and to determine if hydrogen peroxide and ethylene biosynthesis is responsible for regurgitant-induced amplification of wound responses in bean plants. As the regurgitant contained relative high activities of both peroxidase and polyphenol oxidase, there is a possibility that increa…

PhysiologyPlant SciencePolyphenol oxidaseSuperoxide dismutasechemistry.chemical_compoundPlant Growth RegulatorsOxidative enzymeAnimalsCycloheximideCatechol oxidasePlant DiseasesPhaseolusOxidase testNADPH oxidasebiologyTissue ExtractsImidazolesfood and beveragesAminooxyacetic AcidEthylenesAminooxyacetic acidColeopteraKineticschemistryBiochemistryPeroxidasesbiology.proteinReactive Oxygen SpeciesAgronomy and Crop ScienceCatechol OxidasePeroxidaseJournal of plant physiology
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Faceted phospholipid vesicles tailored for the delivery of Santolina insularis essential oil to the skin

2015

The aim of this work was to formulate Santolina insularis essential oil-loaded nanocarriers, namely Penetration Enhancer containing Vesicles (PEVs), evaluate the physico-chemical features and stability, and gain insights into their ability to deliver the oil to the skin.S. insularis essential oil was obtained by steam distillation, and was predominantly composed of terpenes, the most abundant being β-phellandrene (22.6%), myrcene (11.4%) and curcumenes (12.1%). Vesicles were prepared using phosphatidylcholine, and ethylene or propylene glycol were added to the water phase (10% (v/v)) to improve vesicle performances as delivery systems. Vesicles were deeply characterized by light scattering,…

Pig skinAsteraceaePolyvinyl alcohollaw.inventionchemistry.chemical_compoundColloid and Surface ChemistrylawPhosphatidylcholineOils VolatilePhospholipid vesiclesHumansPhysical and Theoretical ChemistryEssential oilCells CulturedPhospholipidsSkinLiposomeChromatographyTerpenesVesicleHuman keratinocytesSurfaces and InterfacesGeneral MedicinePenetration (firestop)CreamingchemistryEthylene/propylene glycolBiophysicsNanocarriersSantolina insularis essential oilBiotechnology
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