Search results for "Electronics"

showing 10 items of 4340 documents

Ab initio modeling of excitonic and charge-transfer states in organic semiconductors: the PTB1/PCBM low band gap system.

2013

A detailed quantum chemical simulation of the excitonic and charge-transfer (CT) states of a bulk heterojunction model containing poly(thieno[3,4-b]thiophene benzodithiophene) (PTB1)/[6,6]-phenyl-C61-butyric acid methyl ester (PCBM) is reported. The largest molecular model contains two stacked PTB1 trimer chains interacting with C60 positioned on top of and lateral to the (PTB1)3 stack. The calculations were performed using the algebraic diagrammatic construction method to second order (ADC(2)). One main result of the calculations is that the CT states are located below the bright inter-chain excitonic state, directly accessible via internal conversion processes. The other important aspects…

Chemistrybusiness.industryBand gapAb initioTrimerCharge (physics)General ChemistryInternal conversion (chemistry)BiochemistryMolecular physicsCatalysisPolymer solar cellOrganic semiconductorDelocalized electronColloid and Surface ChemistryOptoelectronicsbusinessJournal of the American Chemical Society
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Modeling of the Low-Frequency Noise in Thermal Lens Spectrometry

1998

The low-frequency noise observed in thermal lens spectrometry (TLS) can be modeled by assuming that the heated region, constituted by the thermal lens gradient and associated convective stream, behaves as a weakly damped harmonic oscillator with a natural frequency, vo, which is forced to move at an externally imposed pump frequency, vp. Out-of-phase lower-frequency oscillations of the TLS signal can be produced both by transient events, such as the beginning of the TLS experiment and small changes in the pump beam stability, and by drift of boundary conditions, such as the temperature of the surroundings. A model is developed and checked using 1-(2-pyridylazo)-2-napthol (PAN) solutions in …

Chemistrybusiness.industryInfrasoundNatural frequencyGeneral ChemistryNoise (electronics)law.inventionLens (optics)OpticslawThermalTransient (oscillation)businessBeam (structure)Harmonic oscillatorIsrael Journal of Chemistry
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Subphthalocyanines as narrow band red-light emitting materials

2007

A series of new light emitting subphthalocyanines, lower homologues of phthalocyanines, were synthesized having color points covering the red-orange region of the visible spectrum. Additionally, they were found to be of potential use as narrow band emitters for red-light emitting diodes.

Chemistrybusiness.industryOrganic ChemistryPhotochemistryBiochemistryFluorescencelaw.inventionNarrow bandlawDrug DiscoveryOptoelectronicsRed lightbusinessDiodeVisible spectrumLight-emitting diodeTetrahedron Letters
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Dual-emitting Langmuir-Blodgett film-based organic light-emitting diodes.

2010

Langmuir-Blodgett (LB) films containing alternating layers of the metallosurfactants bis(4,4'-tridecyl-2,2'-bipyridine)-(4,4'-dicarboxy-2,2'-bipyridine) ruthenium(II)-bis(chloride) (1) and bis[2-(2,4-difluorophenyl)pyridine](4,4'-dinonadecyl-2,2'-bipyridine)iridium(III) chloride (2) have been prepared. Langmuir monolayers at the air-water interface of 1 and 2 with different anions in the subphase have been characterized by pi-A compression isotherms and Brewster angle microscopy (BAM). The transferred LB films have been characterized by IR, UV-vis and emission spectroscopy, and atomic force microscopy (AFM). Electroluminescent devices formed by LB films containing alternating layers of thes…

Chemistrychemistry.chemical_elementSurfaces and InterfacesElectroluminescenceCondensed Matter PhysicsLangmuir–Blodgett filmRutheniumBipyridinechemistry.chemical_compoundCrystallographyMonolayerElectrochemistryOLEDOrganic chemistryGeneral Materials ScienceIridiumLayer (electronics)SpectroscopyLangmuir : the ACS journal of surfaces and colloids
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Chirality-controlled preparation and single molecule characterisation of carbon nanotubes

2011

Nanostructures have gained increasing attention not only for their basic scientific richness, but also because they promise novelties and potentials that may lead to technological revolution. Carbon nanotubes (CNT’s) are one of the primary focuses of nanotechnology because of their unique physical properties such as huge Young modulus, high tensile strength, thermal and electrical conductivity. However many of their physical properties are extremely sensitive to their atomic structure. In order to optimize utilization of CNTs, their fundamental material properties should be well understood. A single shell of a CNT is composed of a wrapped up sheet of graphite. Depending on the wrapping, sin…

Chirality sortingNanoelectronicshybrid materialDNACarbon nanotube
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Demonstration of an efficient pumping scheme for a 7.36-nm Ni-like samarium soft x-ray laser

2010

The demonstration of a 7.36 nm Ni-like Sm soft x-ray laser pumped by 36 J of a Nd:glass chirped pulse amplification laser is presented. Double-pulse single-beam non-normal incidence pumping was applied for the efficient soft x-ray laser generation. Here the applied technique included a new single optic focusing geometry for large beam diameters, a single-pass grating compressor traveling-wave tuning capability and an optimized high energy laser double-pulse. This scheme has the potential for even shorter wavelength soft x-ray laser pumping.

Chirped pulse amplificationDistributed feedback laserMaterials scienceActive laser mediumbusiness.industryAstrophysics::High Energy Astrophysical PhenomenaFar-infrared laserPhysics::OpticsLaser pumpingLaserlaw.inventionOpticslawOptoelectronicsPhysics::Atomic PhysicsLaser power scalingLaser beam qualitybusinessSPIE Proceedings
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Core/Shell Gel Beads with Embedded Halloysite Nanotubes for Controlled Drug Release

2019

The use of nanocomposites based on biopolymers and nanoparticles for controlled drug release is an attractive notion. We used halloysite nanotubes that were promising candidates for the loading and release of active molecules due to their hollow cavity. Gel beads based on chitosan with uniformly dispersed halloysite nanotubes were obtained by a dropping method. Alginate was used to generate a coating layer over the hybrid gel beads. This proposed procedure succeeded in controlling the morphology at the mesoscale and it had a relevant effect on the release profile of the model drug from the nanotube cavity.

ChitosanNanotubeMaterials scienceNanocompositeAlginateNanoparticleHalloysiteDrug releaseSurfaces and Interfacesengineering.materialHalloysiteSurfaces Coatings and FilmsChitosangel beadschemistry.chemical_compoundChemical engineeringchemistryCoatinglcsh:TA1-2040Gel beadMaterials ChemistryengineeringMoleculelcsh:Engineering (General). Civil engineering (General)Layer (electronics)Coatings
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Approaches to estimate the time and height at the peak maximum in liquid chromatography based on a modified Gaussian model

2011

The time and height at the peak maximum are key parameters to describe a chromatographic peak with prediction or optimization purposes, or in the qualitative/quantitative analysis of samples. Three different approaches to estimate these parameters, using the experimental points in the peak maximum region, are here described and compared. The approaches are based on the reliable description of the peak profile using a modified Gaussian model with a parabolic variance (PVMG). In the first approach, non-linear fitting of the chromatographic data to the PVMG model is carried out to obtain the time and height at the peak maximum (Approach I). In the other two approaches, the PVMG model is linear…

Chromatography Reverse-PhaseSulfonamidesChromatographyLinear fittingChemistryElutionOrganic ChemistryNormal DistributionGeneral MedicineBiochemistryNoise (electronics)Analytical Chemistrysymbols.namesakeModels ChemicalRobustness (computer science)symbolsAlprenololGaussian network modelAlgorithmsJournal of Chromatography A
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Preparation of Pd coated anodic alumina membranes for gas separation media

2007

Different procedures of Pd electroless deposition onto anodic alumina membranes were investigated to form a dense metal layer covering pores. The main difficulty was related to the amorphous nature of anodic alumina membranes, determining low chemical stability in solutions at pH > 9, where Pd plating works more efficiently. As a consequence, it was necessary to find the operative conditions allowing Pd deposition without damaging the membrane: to reduce alumina dissolution, the plating bath was buffered at pH 8.5 by addition of either NaHCO 3 or Na 2 B 4 O 7 ·H 2 O. Acceptable conversion of Pd was found after a deposition time of 3 min. Single and multiple deposition steps (each lasting 3 …

ChromatographyAluminaAmorphous materialsDissolutionPalladiumPlatingRenewable Energy Sustainability and the EnvironmentChemistryCondensed Matter PhysicsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAmorphous solidMembraneSettore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringPlatingMaterials ChemistryElectrochemistryGas separationSolubilityDissolutionDeposition (chemistry)Layer (electronics)
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The application of porous silica layers in open tubular columns for liquid chromatography

1987

Two methods to realize a porous retentive silica layer on the inner wall of 10–25 µm fused silica capillaries for OTLC, etching and precipitation of silica from solution, have been investigated. Etching of the fused silica capillaries with 1M KOH, creates an activated surface, but the capacity of the silica layer is too small to serve as retentive layer in OTLC. Better prospects are offered by the precipitation of silica from a solution of polyethoxysiloxane, dynamically coated on the inner wall of the fused silica capillary. It appears to be possible to deposite a porous silica layer up to 0.8 µm thick (in a 25 µm capillary) by this method, which seems to be suitable for liquid-solid an dy…

ChromatographyLiquid-liquid chromatographyCapillary actionPrecipitation (chemistry)ChemistryOrganic ChemistryClinical Biochemistryrespiratory systemBiochemistryFused silica capillaryAnalytical ChemistryEtching (microfabrication)PorosityLayer (electronics)Chromatographia
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