Search results for "Surfaces"

showing 10 items of 2837 documents

Patterning of Magnetic Bimetallic Coordination Nanoparticles of Prussian Blue Derivatives by the Langmuir–Blodgett Technique

2012

We report a novel method to prepare patterns of nanoparticles over large areas of the substrate. This method is based on the adsorption of the negatively charged nanoparticles dispersed in an aqueous subphase onto a monolayer of the phospholipid dipalmitoyl-l-α-phosphatidylcholine (DPPC) at the air-water interface. It has been used to prepare patterns of nanoparticles of Prussian blue analogues (PBA) of different size (K(0.25)Ni[Fe(CN)(6)](0.75) (NiFe), K(0.25)Ni[Cr(CN)(6)](0.75) (NiCr), K(0.25)Ni[Co(CN)(6)](0.75) (NiCo), Cs(0.4)Co[Cr(CN)(6)](0.8) (CsCoCr), and Cs(0.4)Co[Fe(CN)(6)](0.9) (CsCoFe)). The behavior of DPPC monolayer at the air-water interface in the presence of the subphase of P…

Prussian blueAqueous solutionBrewster's angleMaterials scienceNanoparticle02 engineering and technologySurfaces and Interfaces010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesLangmuir–Blodgett film0104 chemical sciencesCrystallographychemistry.chemical_compoundsymbols.namesakeAdsorptionchemistryMonolayerElectrochemistrysymbolsGeneral Materials Science0210 nano-technologyBimetallic stripSpectroscopyLangmuir
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EIS and Ac-electrogravimetry study of PB films in KCl, NaCl, and CsCl aqueous solutions

2003

Prussian Blue films have been studied by means of ac-electrogravimetry, electrochemical impedance spectroscopy, and electrochemical quartz crystal microbalance in different aqueous salt solutions. Impedance data was interpreted in terms of a model based on a potential drop at the electrode/film interface and a potential drop at the film/solution interface. Quantitative results obtained by the fitting of impedance and ac-electrogravimetry allow to conclude that the main contribution to the potential drop at the film/solution interface is due to the dehydration-hydration process of cations on entering or leaving the film.

Prussian blueAqueous solutionChemistryAnalytical chemistryQuartz crystal microbalanceElectrochemistrySurfaces Coatings and FilmsDielectric spectroscopychemistry.chemical_compoundElectrogravimetryElectrodeMaterials ChemistryPhysical and Theoretical ChemistryElectrical impedance
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Solvent-Independent Electrode Potentials of Solids Undergoing Insertion Electrochemical Reactions: Part III. Experimental Data for Prussian Blue Unde…

2012

Prussian blue-modified electrodes immersed in K+-containing solutions can be used to obtain a solvent-independent redox potential system. On the basis of theoretical modeling of diffusion processes occurring under the conditions of voltammetry of immobilized particles, voltammetric and chronoamperometric data can be combined to obtain solvent-independent electrode potentials for the K+-assisted one-electron reduction of Prussian blue to Berlin white. Data for water, MeOH, EtOH, MeCN, DMS, DMF, and NM are provided.

Prussian blueChemistryDiffusionInorganic chemistryElectrochemistryRedoxSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsSolventchemistry.chemical_compoundGeneral EnergyStandard electrode potentialElectrodePhysical and Theoretical ChemistryVoltammetryThe Journal of Physical Chemistry C
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Identification of Processes Associated with Different Iron Sites in the Prussian Blue Structure by in Situ Electrochemical, Gravimetric, and Spectros…

2012

The physicochemical properties of Prussian blue films are strongly dependent on the ratio Fe3+/Fe2+ in the structure. This ratio can be modulated by electrochemical techniques such as cyclic voltammetry, and some information about physicochemical properties can be extracted from in situ auxiliary techniques. Prussian blue films have been studied by the use of in situ vis–NIR spectroscopy, quartz crystal microbalance, and electrochemical techniques (cyclic voltammetry and electrochemical impedance spectroscopy). By cyclic voltammetry + absorbance derivative curves + mass derivative curves, it has been possible to identify at least three different processes during the reduction of Prussian bl…

Prussian blueChemistryInorganic chemistryAnalytical chemistryQuartz crystal microbalanceElectrochemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDielectric spectroscopyAbsorbancechemistry.chemical_compoundGeneral EnergyGravimetric analysisPhysical and Theoretical ChemistryCyclic voltammetrySpectroscopyThe Journal of Physical Chemistry C
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Innovative Combination of Three Alternating Current Relaxation Techniques: Electrical Charge, Mass, and Color Impedance Spectroscopy. Part II: Prussi…

2009

The simultaneous recording of three impedance functions (electrochemical impedance, color, and mass impedance) allows the role of different species to be distinguished easily during electrochemical processes in conducting and electrochromic films. Herein, this technique has been applied to the study of the Prussian blue films at several potentials between the blue form (Prussian blue) and the colorless form (Everitt’s salt). At these potentials, these electrochemical reactions take place by means of exchange of different ions. Thus, the exchange of potassium cations is related to the changes of absorbance at 690 nm, whereas the exchange of protons does not introduce color changes at this wa…

Prussian blueChemistryRelaxation (NMR)Analytical chemistryElectrochemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIonDielectric spectroscopyAbsorbancechemistry.chemical_compoundGeneral EnergyElectrochromismPhysical and Theoretical ChemistryElectrical impedanceThe Journal of Physical Chemistry C
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Sol-gel produced humidity sensor

1993

Abstract The sol-gel produced polycrystalline Prussian Blue thick films as planar humidity sensors have been investigated by impedance spectroscopy. The equivalent circuit used allows simulation in all the investigated r.h. range (10–100%). The region of changes of sample resistance is about five orders, which is enough for high measuring sensitivity.

Prussian blueMaterials scienceMetals and AlloysAnalytical chemistryHumidityCondensed Matter PhysicsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDielectric spectroscopychemistry.chemical_compoundPlanarchemistryMaterials ChemistryEquivalent circuitCrystalliteElectrical and Electronic EngineeringInstrumentationSensitivity (electronics)Sol-gelSensors and Actuators B: Chemical
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Spin polarization in electrodeposited thin films of the molecule-based magnetic semiconductor Cr5.5(CN)12·11.5H2O

2013

The magnetoresistance (MR) effect of thin films of the Prussian Blue Analogue (PBA) Cr5.5(CN)12·11.5H2O, prepared by electrochemical deposition, has been measured using the standard two-point probe method. This molecule-based ferrimagnetic material, with a Tc = 240 K, exhibits MR up to 2% at 6 T and 200 K.

Prussian blueMaterials scienceSpin polarizationMagnetoresistanceCondensed matter physicsMetals and Alloys02 engineering and technologyGeneral ChemistryMagnetic semiconductor010402 general chemistry021001 nanoscience & nanotechnologyElectrochemistry01 natural sciencesCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundchemistryFerrimagnetismMaterials ChemistryCeramics and CompositesDeposition (phase transition)Thin film0210 nano-technologyChemical Communications
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Interfacial role of Cesium in Prussian Blue Films

2015

The simultaneous measurement of current, mass, motional resistance and absorbance magnitudes allows the electrochemical cation insertion process to be explained during successive voltammograms around the Prussian Blue ⇄ Everitt's Salt system in CsCl aqueous acid solutions. Two different ways for the entrance of cesium to the porous structure of Prussian Blue have been observed. Firstly, Cs+ is spontaneously absorbed as CsCl into the interstitial cluster of water of the channels formed by the Fe(II)low spinCNFe(III)high spin structural units of the crystal. This chemical absorption involves a spontaneous substitution of inner water molecules of the interstitial water cluster. Finally, Cs+ …

Prussian bluemotional resistanceprussian blueRenewable Energy Sustainability and the EnvironmentChemistryremoval of Cesiumchemistry.chemical_elementNanotechnologyCondensed Matter PhysicsElectrochemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundChemical engineeringelectrochemistryQCM-RCaesiumMotional resistanceMaterials ChemistryElectrochemistry
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Study of localized pulsed laser depassivation by interferometric probe

1997

Optical interferometry has been implemented as a novel approach to monitor sensitively the localized pulsed laser depassivation of iron or stainless steel samples. This new method, complementing the previous transient current measurements and channel flow double-electrode, is based on the time-resolved measurement of the rear surface displacement of the test sample induced by the laser generated ultrasonic wave. The removal of any material, such as the passive film, from the irradiated surface results in an enhancement of the longitudinal component of the laser generated ultrasonic wave, which is manifested in a change of the displacement characteristics of the rear surface of the test samp…

Pulsed laserMaterials sciencebusiness.industryGeneral Physics and AstronomySurfaces and InterfacesGeneral ChemistrySurface displacementCondensed Matter PhysicsLaserDisplacement (vector)Surfaces Coatings and FilmsOpen-channel flowlaw.inventionInterferometryOpticslawUltrasonic sensorIrradiationbusinessApplied Surface Science
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Ulrich bundles on K3 surfaces

2019

We show that any polarized K3 surface supports special Ulrich bundles of rank 2.

Pure mathematics14J60Algebra and Number TheoryMathematics::Commutative Algebra13C1414F05 13C14 14J60 16G60010102 general mathematics14F05acm bundlesACM vector sheaves and bundlesK3 surfaces01 natural sciencesUlrich sheavesMathematics - Algebraic GeometryMathematics::Algebraic Geometry0103 physical sciencesFOS: Mathematicssheaves010307 mathematical physics0101 mathematicsmoduli[MATH]Mathematics [math]Algebraic Geometry (math.AG)Mathematics
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