Search results for "Volta"

showing 10 items of 2055 documents

Synthesis, characterization and crystal structure of 2-dicyanomethylene-1,3-bis(ferrocenylmethyl)-1,3-diazolidine

1993

By reaction of N,N′-ethylenebis(ferrocenylmethylamine)1 with tetracyanoethylene in dichloromethane the yellow compound 2-dicyanomethylene-1,3-bis(ferrocenylmethyl)-1,3-diazolidine 2 can be isolated. The single-crystal structure of 2 has been determined. It crystallizes in the non-centrosymmetric trigonal space group P3221, a= 12.255(2), c= 13.831(7)A, Z= 3. Refinement of the atomic parameters by least-squares techniques gave a final R factor of 0.038 (R′= 0.034) for 1782 observed reflections having I > 2.5δ(I). Anomalous values of the bond distances and the vinyl carbon chemical shift in the 13C NMR spectrum of 2 are explained on the basis of a polarization due to a combination of the elect…

chemistry.chemical_compoundCrystallographychemistryStereochemistryDiamineX-ray crystallographyMoleculeGeneral ChemistryComproportionationDifferential pulse voltammetryCrystal structureTetracyanoethyleneCarbon-13 NMRJ. Chem. Soc., Dalton Trans.
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Selenophene-Based Hole-Transporting Materials for Perovskite Solar Cells

2021

Two novel and simple donor-π-bridge-donor (D-π-D) hole-transporting materials (HTMs) containing two units of the p-methoxytriphenylamine (TPA) electron donor group covalently bridged by means of the 3,4-dimethoxyselenophene spacer through single and triple bonds are reported. The optoelectronic and thermal properties of the new selenium-containing HTMs have been determined using standard experimental techniques and theoretical density functional theory (DFT) calculations. The selenium-based HTMs have been incorporated in mesoporous perovskite solar cells (PSCs) in combination with the triple-cation perovskite [(FAPbI3 )0.87 (MAPbBr3 )0.13 ]0.92 [CsPbI3 ]0.08 . Limited values of power conver…

chemistry.chemical_compoundMaterials sciencechemistryCovalent bondPhotovoltaic systemThermalPhysical chemistryDensity functional theoryElectron donorGeneral ChemistryMesoporous materialTriple bondPerovskite (structure)
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Electrochemical behaviour of inorganic redox substances dispersed into Nafion® films

1999

Abstract The voltammetric response of a Nafion ® film deposited on an indium tin oxide (ITO) electrode was studied. It was observed that the response is affected by the thickness of the Nafion ® layer. Also, the voltammograms show differences depending on the concentration and composition of the supporting electrolyte solution. The ITO–Nafion ® system can be stabilised by repetitive cyclic voltammetry, and then the inner hydrogen reduction is not detected by electrochemical impedance spectroscopy. Different substances were dispersed into the Nafion ® matrix in order to study their electrochemical response.

chemistry.chemical_compoundMaterials sciencechemistrySupporting electrolyteNafionInorganic chemistryElectrodeMaterials ChemistryCyclic voltammetryElectrochemistryRedoxDielectric spectroscopyIndium tin oxideInternational Journal of Inorganic Materials
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Indium Selenide Solar Cells

1981

Indium selenide photovoltaic devices are described. Transport and photovoltaic properties are discussed. Efficiencies of 6% are reported and ways of improvement are proposed.

chemistry.chemical_compoundMaterials sciencechemistrybusiness.industrySelenidePhotovoltaic systemOptoelectronicschemistry.chemical_elementQuantum dot solar cellbusinessCopper indium gallium selenide solar cellsOhmic contactIndium
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Structure and properties of zwitterionic polysoaps: functionalization by redox-switchable moieties

2007

Redoxactive monomeric and polymeric surfactants containing viologen and N-alkylated nicotinic acid moieties were synthesized. These systems are potentially able to trigger reversible changes of self-organization by creation or removal of a charge via a redox reaction. Hence, they are investigated with respect to solubility, aggregation behavior, and their electrochemical properties in water. — All monomers, but only the viologen polymers are water-soluble and drastically decrease the surface tension of water. Critical micelle concentrations are observed for the monomers only. — The chemical reversibility of the redox reactions of the compounds in water was investigated using cyclic voltamme…

chemistry.chemical_compoundMonomerchemistrymedicineMoietyViologenSolubilityCyclic voltammetryElectrochemistryPhotochemistryMicelleRedoxmedicine.drug
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Surface periodic poling in congruent lithium tantalate

2006

The first demonstration of surface periodic poling of lithium tantalate at high voltages is reported. Periodic domain inversion with mark-to-space ratios close to the optimum 50:50 was successfully achieved down to micrometre periods with good uniformity and repeatability.

chemistry.chemical_compoundOpticsMaterials sciencechemistrybusiness.industryPeriodic polingOptical materialsLithium tantalateElectrical and Electronic EngineeringbusinessVoltageElectronics Letters
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A Theoretical and Experimental Study of Electrochemical pH Control at Gold Interdigitated Microband Arrays

2021

In electroanalysis, solution pH is a critical parameter that often needs to be adjusted and controlled for the detection of particular analytes. This is most commonly performed by the addition of chemicals, such as strong acids or bases. Electrochemical in-situ pH control offers the possibility for the local adjustment of pH at the point of detection, without additional reagents. FEA simulations have been performed to guide experimental design for both electroanalysis and in-situ control of solution pH. No previous model exists that describes the generation of protons at an interdigitated electrode array in buffered solution with one comb acting as a protonator, and the other as the sensor.…

chemistry.chemical_compoundWork (thermodynamics)Materials sciencechemistrypH indicatorReagentMethyl redElectrodeOxideAnalytical chemistryCyclic voltammetryElectrochemistry
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Studien zum Vorgang der Wasserstoffübertragung, 41. Elektroreduktion von Acetophenon unter Mitwirkung optisch aktiver Leitsalze

1977

Die Anderung des Carbinol/Pinakol-Verhaltnisses2) (C/P) und der optischen Induktion bei der Elektroreduktion von Acetophenon mit (1 R, 2S)-N-(3-Cyanpropyl)-N-methylephedriniumbromid (1) und (1 R, 2 S)-N,N-Dimethylephedriniumbromid (2) als Leitsalze wird untersucht in Abhangigkeit: a) vom Potential (Tabelle 1), b) von der Stromdichte (Tabelle 2), c) von Pulsbedingungen (Tabelle 3), d) vom pH (Tabelle 4), e) von der Anwesenheit anderer Kationen (Tabelle 5), f) vom Losungsmittel (Tabelle 6), g) von der Temperatur (Tabelle 7) und h) von der Art des Elektrodenmaterials (Tabelle 8). — Es werden tensammetrische und cyclovoltammetrische Messungen durchgefuhrt. Die in trockenem Dimethylformamid erha…

chemistry.chemical_compoundchemistryBromideSupporting electrolyteOrganic ChemistryHydrogen transferDimethylformamidePhysical and Theoretical ChemistryOptically activeCyclic voltammetryMedicinal chemistryAcetophenoneJustus Liebigs Annalen der Chemie
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Surface modification of graphite+polymer composite and ITO electrodes by Nafion®+cupromeronic phthalocyanine films

1999

Abstract The surface of indium tin oxide (ITO) and graphite+polymer composite electrodes can be modified by Nafion ® films containing a little amount of dispersed electroactive substances, such as phthalocyanines. This procedure allows the recovery of electroanalytical information on the electroactive deposited substance. The preparation methods for these types of modified electrodes are discussed from the voltammetric results obtained in this work. The Nafion ® net acts as a permeable membrane to the hydrogen ions. Furthermore, the presence of methylviologen within the Nafion ® film makes the electron transport throughout this membrane easy.

chemistry.chemical_compoundchemistryGeneral Chemical EngineeringNafionInorganic chemistryElectrochemistryPhthalocyanineSurface modificationGraphiteSemipermeable membraneCyclic voltammetryIndium tin oxideElectrode potentialElectrochimica Acta
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Novel electrolytes for electrochemical double layer capacitors based on 1,1,1,3,3,3-hexafluoropropan-2-ol

2012

Abstract 1,1,1,3,3,3-Hexafluoropropan-2-ol (HFIP) was tested for its applicability as solvent in electrolytes for energy storage devices. A comprehensive characterization with respect to solubility, conductivity, as well as chemical and electrochemical stability was carried out with different conducting salts. Furthermore, different HFIP solutions containing standard supporting electrolytes and alkali metal fluorides, respectively, were applied in electrochemical double layer capacitor cells. Their behavior was studied with impedance spectroscopy and cyclic voltammetry at low scan rates and compared to the current benchmark electrolytes based on propylene carbonate (PC) and acetonitrile (AN…

chemistry.chemical_compoundchemistryGeneral Chemical EngineeringPropylene carbonateElectrodeInorganic chemistryElectrochemistryElectrolyteCyclic voltammetryGlassy carbonSolubilityElectrochemistryDielectric spectroscopyElectrochimica Acta
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