Search results for "lcsh:TP250-261"

showing 4 items of 44 documents

Correlation between the fractal dimension of the electrode surface and the EIS of the zinc anodic dissolution for different kinds of galvanized steel

2004

The roughness of the working electrode is one of the factors that affects the electrochemical impedance spectroscopy (EIS) data of the zinc anodic dissolution process. The fractal dimension of digital images of shooping plate, hot dip galvanized steel, continuous hot-dipped galvanized steel and electro-galvanized steel are related with their respective EIS data. Keywords: EIS, Fractal dimension, Roughness, Galvanized steel, Corrosion

Working electrodeMaterials scienceMetallurgychemistry.chemical_elementZincSurface finishFractal dimensionGalvanizationCorrosionDielectric spectroscopylcsh:Chemistrysymbols.namesakechemistrylcsh:Industrial electrochemistrylcsh:QD1-999ElectrodeElectrochemistrysymbolslcsh:TP250-261Electrochemistry Communications
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An electrochemical impedance and ac-electrogravimetry study of PNR films in aqueous salt media

2002

Electrochemical impedance spectra and ac-eletrogravimetry of poly(neutral red) films are studied in different aqueous media. The dependence of these experimental data on the nature of alkaline cation and monovalent anion present in the solution and on the pH is analysed. During the electrochemical processes, it is observed that all three species—the salt cation, the salt anion and the hydronium ion—participate to balance the electrical charge within the film. It is also possible to conclude that the participation of anions takes place faster than hydronium ions participation. Besides, the relative participation of these species is related to the pH of the solution. Keywords: Poly (neutral r…

chemistry.chemical_classificationAqueous solutionHydroniumInorganic chemistryAnalytical chemistrySalt (chemistry)Concentration effectElectrochemistrylcsh:Chemistrychemistry.chemical_compoundlcsh:Industrial electrochemistrylcsh:QD1-999chemistryElectrogravimetryElectrochemistryCounterionlcsh:TP250-261Electrode potential
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Electrochemical monitoring of the oxidative coupling of alkynes catalyzed by triphenylphosphine gold complexes

2012

Electrochemical monitoring of the oxidative coupling of alkynes in the homogeneous phase through catalytic cycles involving triphenylphosphine gold complexes and selectfluor as oxidant reveals that at least two gold species in +3 and +1 oxidation states are implicated. Electrochemically driven homocoupling of terminal alkynes using molecular oxygen as the oxidant can be performed using such catalysts. Keywords: Gold catalysis, Oxidative coupling of alkynes, Oxygen, Voltammetry

chemistry.chemical_elementGold catalysisElectrochemistryPhotochemistryOxygenCombinatorial chemistryCatalysislcsh:ChemistryOxygenchemistry.chemical_compoundQUIMICA ORGANICAlcsh:Industrial electrochemistrylcsh:QD1-999chemistryHomogeneousOxidative coupling of alkynesElectrochemistryVoltammetryOxidative coupling of methaneTriphenylphosphineSelectfluorVoltammetrylcsh:TP250-261Electrochemistry Communications
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Net currents obtained from zero-average potentials in single amphoteric nanopores

2013

We have studied experimentally and theoretically the rectifying properties of a single asymmetric nanopore functionalized with amphoteric lysine groups and characterized the net current obtained with zero-average time dependent potentials. The pH-controlled rectification phenomena may be relevant to bio-electrochemistry, pH sensing and regulation, and energy conversion. (C) 2013 Elsevier B.V. All rights reserved.

pH sensing and regulationChemistryAmphoteric poreZero (complex analysis)Analytical chemistryRectificationEnergy conversionlcsh:ChemistryNanoporelcsh:Industrial electrochemistrylcsh:QD1-999RectificationChemical physicsFISICA APLICADAElectrochemistryPh sensingNet (polyhedron)Energy transformationNanofluidic ratchetCurrent (fluid)lcsh:TP250-261
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