Search results for " ELECTROCHEMICAL"

showing 10 items of 141 documents

Luminescent Ionic Transition-Metal Complexes for Light-Emitting Electrochemical Cells

2012

Higher efficiency in the end-use of energy requires substantial progress in lighting concepts. All the technologies under development are based on solid-state electroluminescent materials and belong to the general area of solid-state lighting (SSL). The two main technologies being developed in SSL are light-emitting diodes (LEDs) and organic light-emitting diodes (OLEDs), but in recent years, light-emitting electrochemical cells (LECs) have emerged as an alternative option. The luminescent materials in LECs are either luminescent polymers together with ionic salts or ionic species, such as ionic transition-metal complexes (iTMCs). Cyclometalated complexes of Ir(III) are by far the most util…

IonsMaterials scienceLuminescenceLightMolecular StructureIonic bondingNanotechnologycopper(I) complexes; electroluminescence; iridium(III) complexes; light-emitting electrochemical cells; ruthenium(II) complexesGeneral ChemistryElectrochemical TechniquesElectroluminescenceCatalysisElectrochemical celllaw.inventionTransition metallawOLEDOrganometallic CompoundsTransition ElementsLuminescenceLight-emitting diodeDiode
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Bright Blue Phosphorescence from Cationic Bis-Cyclometalated Iridium(III) Isocyanide Complexes

2012

We report new bis-cyclometalated cationic indium(III) complexes [((CN)-N-boolean AND)(2)Ir(CN-tert-Bu)(2)](CF3SO3) that have tert-butyl isocyanides as neutral auxiliary ligands and 2-phenylpyridine or 2-(4'-fluoropheny1)-R-pyridines (where R is 4-methoxy, 4-tert-butyl, or 5-trifluoromethyl) as (CN)-N-boolean AND ligands. The complexes are white or pale yellow solids that show irreversible reduction and oxidation processes and have a large electrochemical gap of 3.58-3.83 V. They emit blue or bluegreen phosphorescence in liquid/solid solutions from a cyclometalating-ligand-centered excited state. Their emission spectra show vibronic structure with the highest-energy luminescence peak at 440-…

Ir(Iii) ComplexesIsocyanideCationic polymerizationchemistry.chemical_elementEmitting Electrochemical-CellsExcited-State PropertiesElectroluminescent DevicesPhotochemistryAncillary LigandsInorganic Chemistrychemistry.chemical_compoundchemistryExcited stateEfficient BlueIii ComplexesMetal-ComplexesEmission spectrumIridiumPhysical and Theoretical ChemistryPhosphorescenceLuminescenceTurn-On TimesPhotophysical PropertiesSolid solutionInorganic Chemistry
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Redox tuning and species distribution in Maya Blue-type materials: a reassessment.

2013

Maya Blue-type specimens prepared from indigo (1 wt %) plus kaolinite, montmorillonite, palygorskite, sepiolite, and silicalite are studied. Liquid chromatography with diode array detection, ultra-performance liquid chromatography coupled with mass spectrometry, and pyrolysis-silylation gas chromatography-mass spectrometry analyses of the extracts from these specimens combined with spectral and solid-state voltammetry, electrochemical impedance spectroscopy, and scanning electrochemical microscopy techniques provide evidence for the presence of a significant amount of dehydroindigo and isatin accompanying indigo and other minority organic compounds in all samples. Solid-state electrochemist…

Isatingas chromatography mass spectrometryMagnesium CompoundsMass spectrometryIndigo CarmineUPLC-MSIndigoMass Spectrometrychemistry.chemical_compoundScanning electrochemical microscopyMagnesium SilicatesmedicineElectrochemistryHumansGeneral Materials ScienceKaolinChromatography High Pressure LiquidMaya BlueChromatographyChemistryIsatinSilicon CompoundsPalygorskitevoltammetry of microparticlesDielectric spectroscopyMontmorillonitePINTURABentoniteGas chromatography–mass spectrometryOxidation-Reductionmedicine.drugNuclear chemistryChromatography LiquidACS applied materialsinterfaces
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Scanning electrochemical microscopy as a probe of Ag+ binding kinetics at Langmuir phospholipid monolayers

2005

A new method has been developed for measuring local adsorption rates of metal ions at interfaces based on scanning electrochemical microscopy (SECM). The technique is illustrated with the example of Ag+ binding at Langmuir phospholipid monolayers formed at the water/air interface. Specifically, an inverted 25 microm diameter silver disc ultramicroelectrode (UME) was positioned in the subphase of a Langmuir trough, close to a dipalmitoyl phosphatidic acid (DPPA) monolayer, and used to generate Ag+ via Ag electro-oxidation. The method involved measuring the transient current-time response at the UME when the electrode was switched to a potential to electrogenerate Ag+. Since the Ag+/Ag couple…

LangmuirBinding SitesSilverTime FactorsSurface PropertiesChemistryMetal ions in aqueous solutionAnalytical chemistryPhosphatidic AcidsGeneral Physics and AstronomyUltramicroelectrodeMicroscopy Scanning ProbeSurface pressureKineticsScanning electrochemical microscopyAdsorptionCationsElectrodeMonolayerElectrochemistrylipids (amino acids peptides and proteins)AdsorptionPhysical and Theoretical ChemistryPhospholipidsPhysical Chemistry Chemical Physics
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Comments on 'formation and characterization of nanotubes of La(OH) 3 obtained using porous alumina membranes'

2010

New experimental evidence concerning the formation of La(OH)3 nanowires on anodic alumina membranes by cathodic polarization in 0.05 M lanthanum nitrate solution is provided to further support the conclusions previously reached in our work (Bocchetta et al 2007 Electrochem. Commun. 9 683-8) and recently criticized by González-Rovira et al (Nanotechnology 2008 19 495305). Some unconvincing aspects of the paper of González-Rovira et al, according to which the same electrochemical process should lead to the formation of hydroxycarbonate nanotubes, are also discussed.

Lanthanum nitrateMaterials scienceMechanical EngineeringAlumina membranesNanowireBioengineeringNanotechnologyCathodic polarizationGeneral ChemistryElectrochemistryAnodeCharacterization (materials science)Settore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringLa(OH)3 nanowireelectrogeneration of base anodic alumina membraneMechanics of MaterialsAnodic alumina membranes Electrochemical process Experimental evidence Hydroxy carbonates Lanthanum nitrates Porous alumina membranesGeneral Materials ScienceElectrical and Electronic EngineeringPorosity
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Detection of archaeological forgeries of Iberian lead plates using nanoelectrochemical techniques. The lot of fake plates from Bugarra (Spain)

2014

Identification of forgeries is of considerable interest in studies of archaeological signariums and written Iberian artifacts, elements of capital importance for the knowledge of that culture, because there are many Iberian inscribed lead plate counterfeits circulating in the market and among many museum funds. A case study of identification of forgeries of archaeological lead using voltammetry of microparticles (VMP) and scanning electrochemical microscopy (SECM), aided by conventional optical microscopy and scanning electron microscopy (SEM/EDX) is described. The electrochemical methods are essentially non-invasive so can be applied to samples of nanoscopic size. Application to the authen…

Lead inscriptions IberianScanning electrochemical microscopyVoltammetry of microparticlesArchaeologyPalaeographyPathology and Forensic MedicineScanning electrochemical microscopyLead plateArchaeologyPINTURALawGeologyHeritage authentication
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Spectral and microscopic study of self-assembly of novel cationic spermine amides of betulinic acid

2016

Supramolecular characteristics of two spermine amides of betulinic acid (1 and 2) were studied by measuring and evaluating their UV-VIS-NIR spectra in aqueous acetonitrile and DOSY-NMR spectra in tetradeuteromethanol, accompanied by atomic force microscopy (AFM) images, scanning electron microscopy (SEM) micrographs, and transmission electron microscopy (TEM) micrographs. Fibrous supramolecular self-assembly of 1 and 2 was observed by AFM images, as well as by the SEM and TEM micrographs. Bathochromic shifts of the absorbance maximum at 870nm to 1015-970nm in the UV-VIS-NIR spectra were observed with increasing water content in the acetonitrile/water systems, indicating formation of fibrous…

Magnetic Resonance SpectroscopyScanning electron microscopeClinical BiochemistrySupramolecular chemistrymacromolecular substancesDOSY-NMRMicroscopy Atomic Force010402 general chemistry01 natural sciencesBiochemistryAbsorbancechemistry.chemical_compoundEndocrinologyMicroscopy Electron TransmissionBathochromic shiftBetulinic AcidAcetonitrileta116Molecular BiologyPharmacologyAqueous solutionMolecular Structure010405 organic chemistryChemistryOrganic Chemistryta1182technology industry and agricultureAmidesTriterpenes0104 chemical sciencesCrystallographyTransmission electron microscopySEMTEMSpermineMicroscopy Electrochemical ScanningAFMPentacyclic TriterpenesChirality (chemistry)Steroids
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Dismantling and electrochemical copper recovery from Waste Printed Circuit Boards in H2SO4–CuSO4–NaCl solutions

2019

Abstract The worldwide growing of electrical and electronic equipment makes increasingly urgent to find environmentally friendly treatments for e-waste. In this paper, the attention has been focused on i) the eco-friendly dismantling of the electronic components from Waste Printed Circuit Boards and ii) recovering of pure metallic copper, which is the most abundant metal and one of the most valuable in Printed Circuit Boards. After an experimental optimization study, we found that a solution containing 0.5 M H2SO4, 0.4 M CuSO4, and 4 M NaCl can be successfully used to disassemble the electronic components from the boards by leaching of all exposed metals. Air was blown into the leaching sol…

Materials science020209 energyStrategy and ManagementMetal ions in aqueous solutionchemistry.chemical_element02 engineering and technologyElectrochemistryIndustrial and Manufacturing EngineeringElectrochemical cellMetal0202 electrical engineering electronic engineering information engineering0505 lawGeneral Environmental ScienceRenewable Energy Sustainability and the EnvironmentChloride-sulphate solution Circular economy Copper recovery Electrochemical recovering Waste printed circuit boards05 social sciencesCopperSettore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringchemistryvisual_artElectronic component050501 criminologyvisual_art.visual_art_mediumLeaching (metallurgy)Cyclic voltammetryJournal of Cleaner Production
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Ion-Selective Organic Electrochemical Transistors

2014

Ion-selective organic electrochemical transistors with sensitivity to potassium approaching 50 μA dec(-1) are demonstrated. The remarkable sensitivity arises from the use of high transconductance devices, where the conducting polymer is in direct contact with a reference gel electrolyte and integrated with an ion-selective membrane.

Materials scienceConductometryTransistors ElectronicTransconductanceInorganic chemistryBiosensing TechniquesElectrolyteElectrochemistrylaw.inventionlawGeneral Materials ScienceOrganic ChemicalsPolyvinyl ChlorideIonsConductive polymerbusiness.industryMechanical EngineeringTransistorMembranes ArtificialEquipment DesignEquipment Failure AnalysisMembraneMechanics of MaterialsPotassiumOptoelectronicsbusinessBiosensorOrganic electrochemical transistorAdvanced Materials
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Effect of the anode composition on the performance of reversible chlor-alkali electro-absorption cells

2020

Abstract In this work, the performances of a reversible electrochemical cell for the storage of energy using the chloralkaline process was investigated. The cell operates at room temperature with liquid electrolytes in both compartments. In the electrolyzer mode, the cell transforms a sodium chloride solution into hydrogen and chlorine, which is then disproportionated to form hypochlorous acid and hypochlorite. In fuel cell operation mode, the cell becomes an electro-absorber to oxidize hydrogen at the anode while reducing hypochlorous acid at the cathode. Because of the low solubility of hydrogen, a special mechanical device is used to produce hydrogen microbubbles in the anodic compartmen…

Materials scienceHydrogenChlor-alkalichemistry.chemical_elementFiltration and SeparationReversible electrochemical cells02 engineering and technologyElectrolyteElectrochemistryRutheniumAnalytical Chemistrylaw.inventionElectrochemical cell020401 chemical engineeringlawChlorine0204 chemical engineeringElectrolysisMicrobubbles021001 nanoscience & nanotechnologyCathodeAnodechemistryChemical engineeringElectro-absorber0210 nano-technology
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