Search results for "conduct"

showing 10 items of 4412 documents

Polyisoprene-carbon black nanocomposites as tensile strain and pressure sensor materials

2004

Abstract Electrically conductive polymer composites (ECPC) are shown as prospective large-size flexible pressure and stretch sensors for detecting of dangerous deformations and vibrations of vehicle parts. Reversible change of resistance dependent on stretch and pressure is obtained in electro-conductive polymer nanocomposites. At certain concentrations of carbon nano-particles a change of electrical resistance by more than four orders is observed at 40% relative stretch. The maximum sensitivity of nanocomposites is observed in the vicinity of the transition of electro-conductive percolation. Nanocomposites exhibit a very weak semiconductor-like temperature dependence of resistance. The ten…

chemistry.chemical_classificationMaterials scienceNanocompositePolymer nanocompositeMetals and AlloysPolymerCarbon blackCondensed Matter PhysicsMicrostructureSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsStress (mechanics)chemistryElectrical resistance and conductancePercolationElectrical and Electronic EngineeringComposite materialInstrumentationSensors and Actuators A: Physical
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Photoconductivity of Poly(Arylenevinylene)S and Poly(Hetarylenevinylene)S

1994

Abstract The intramolecular condensation of aromatic Schiff bases leads under strong alkaline conditions to the poly(arylenevinylene)s and poly(hetarylenevi-nylene)s A - H. Due to the extreme stereoselectivity the resulting products are rigid, (E)-configurated polymers. The broad band gap of the unsubstituted intrinsic insulators is decreased by alkoxy substituents. Investigations of the photoconductivity and the photoreactivity, as well as of the AC-conductivity of some undoped, doped and quaternized systems are performed.

chemistry.chemical_classificationMaterials sciencePhotoconductivityDopingPolymerConductivityCondensed Matter PhysicsPhotochemistrychemistryIntramolecular forcePolymer chemistryAlkoxy groupStereoselectivityReactivity (chemistry)Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals
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Strategy for good dispersion of well-defined tetrapods in semiconducting polymer matrices.

2014

The morphology or dispersion control in inorganic/organic hybrid systems is studied, which consist of monodisperse CdSe tetrapods (TPs) with grafted semiconducting block copolymers with excess polymers of the same type. Tetrapod arm-length and amount of polymer loading are varied in order to find the ideal morphology for hybrid solar cells. Additionally, polymers without anchor groups are mixed with the TPs to study the effect of such anchor groups on the hybrid morphology. A numerical model is developed and Monte Carlo simulations to study the basis of compatibility or dispersibility of TPs in polymer matrices are performed. The simulations show that bare TPs tend to form clusters in the m…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsPolymersOrganic ChemistryMonte Carlo methodDispersityPolymerHybrid solar cellMatrix (mathematics)chemistryMicroscopy Electron TransmissionSemiconductorsTransmission electron microscopyMaterials ChemistryCopolymerCadmium CompoundsComposite materialWell-definedSelenium CompoundsMonte Carlo MethodMacromolecular rapid communications
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Proton Conducting Membrane Prepared by Cross-Linking Highly Sulfonated Peek for PEMFC Application

2009

The proton conducting membrane was prepared by cross-linking highly sulfonated and sulfinated poly(etheretherketone) (SsPEEK). The cross-linked membrane is low cost due to its use of non-expensive chemical and simple production procedure. The membrane exhibited high proton conductivity (0.04 S/cm at 60 °C), extremely reduced water uptake, enhanced strength and stability compared with that of non-cross-linked membrane. These results suggested that the cross-linked PEEK membrane is a suitable candidate of proton conducting membranes for polymer electrolyte membrane fuel cell (PEMFC) applications, particularly promising to be used in direct methanol fuel cell (DMFC) due to its lower methanol c…

chemistry.chemical_classificationMaterials scienceProton exchange membrane fuel cellElectrolytePolymerConductivitychemistry.chemical_compoundDirect methanol fuel cellMembranechemistryChemical engineeringPeekMethanolNuclear chemistryASME 2009 7th International Conference on Fuel Cell Science, Engineering and Technology
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Theoretical Design of Organic Metals Based on the Phthalocyanine Macrocycle

1990

Phthalocyanine molecular crystals and cofacially linked polymers are well documented as low-dimensional materials that may attain high electrical conductivities. Air-stable conductivities on the order of 1 to 1000 S/cm after partial oxidation by iodine have been reported.1–3 These conductivity studies indicate that the electrical conductivity has very little dependence on the identity of the atom complexed in the cavity, but is strongly dependent on the orientation and spacing of the phthalocyanine rings. A columnar stacking with minimum spacing leads to a maximum interaction between π-molecular orbitals on adjacent rings and promotes the highest conductivity. More effective π-interactions …

chemistry.chemical_classificationMaterials scienceStackingPolymerConductivityConjugated systemPhotochemistrychemistry.chemical_compoundCrystallographychemistryAtomic orbitalElectrical resistivity and conductivityPhthalocyanineMolecule
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Fully Vacuum-Processed Wide Band Gap Mixed-Halide Perovskite Solar Cells

2017

Methylammonium lead mixed-halide perovskites MAPb(BrxI1–x)3 are promising materials for the preparation of tandem devices. When exposed to light, MAPb(BrxI1–x)3 segregates in iodide- and bromide-rich phases, limiting the achievable photovoltage and hence the attainable device efficiency. To date only solution-processed mixed-halide perovskites have been demonstrated. We present fully vacuum-deposited mixed-halide perovskite thin films with band gap of 1.72 and 1.87 eV, prepared by controlling the deposition rates of the different halide precursors. When used in thin-film devices, these materials lead to power conversion efficiencies of 15.9 and 10.5%, respectively, which are among the highe…

chemistry.chemical_classificationMaterials scienceTandemRenewable Energy Sustainability and the EnvironmentBand gapbusiness.industryIodideWide-bandgap semiconductorEnergy Engineering and Power TechnologyHalide02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesFuel TechnologychemistryChemistry (miscellaneous)Materials ChemistryOptoelectronicsThin film0210 nano-technologybusinessDeposition (law)Perovskite (structure)ACS Energy Letters
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Optical Field-Induced Mass Transport in Soft Materials

2013

Abstract The dependence of the surface relief formation in amorphous chalcogenide (As 2 S 3 and As-S-Se) and Disperse Red 1 dye grafted polyurethane polymer films on the polarization state of holographic recording light beams was studied. It is shown that the direction of lateral mass transport on the film surface is determined by the direction of light electric vector and photoinduced anisotropy in the film. We propose a photoinduced dielectropfhoretic model to explain the photoinduced mass transport in amorphous films. Model is based on the photoinduced softening of the matrix, formation of defects with enhanced or decreased polarizability, and their drift under the electrical field gradi…

chemistry.chemical_classificationMaterials sciencebusiness.industryChalcogenideHolographic recordingPolymerOptical fieldSurface relief gratingsPhysics and Astronomy(all)Polarization (waves)Molecular physicsAmorphous solidchemistry.chemical_compoundCondensed Matter::Materials ScienceOpticschemistryAmorphous chalcogenide filmsAzo-dye polymersPolarizabilityCondensed Matter::SuperconductivityLight beambusinessAnisotropyPhysics Procedia
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Effect of conductivity of hole injection layer on the performance of a blue light emitting solution processable OLED

2005

The performance of blue emitting OLED devices, using a polyspiro as blue light emitting polymer, were studied as a function of the conductivity of a novel hybrid hole injection material. The hole injection material is based on a polyarylamine using a molecular magnet as oxidant. The charge density and the luminance of the devices changed considerably with increasing conductivity of the hole injection layer. The change in device performance can be attributed to a change from a hole limited device to a balanced charge carrier device and eventually to an electron limited device. The performance of the optimized device configuration is significantly improved with respect to a device making use …

chemistry.chemical_classificationMaterials sciencebusiness.industryCharge densityPolymerElectronConductivitylaw.inventionchemistryPEDOT:PSSlawOLEDOptoelectronicsCharge carrierbusinessLight-emitting diodeOrganic Light-Emitting Materials and Devices IX
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ChemInform Abstract: Liquid-Crystalline Ordering as a Concept in Materials Science: From Semiconductors to Stimuli-Responsive Devices

2013

While the unique optical properties of liquid crystals (LCs) are already well exploited for flat-panel displays, their intrinsic ability to self-organize into ordered mesophases, which are intermediate states between crystal and liquid, gives rise to a broad variety of additional applications. The high degree of molecular order, the possibility for large scale orientation, and the structural motif of the aromatic subunits recommend liquid-crystalline materials as organic semiconductors, which are solvent-processable and can easily be deposited on a substrate. The anisotropy of liquid crystals can further cause a stimuli-responsive macroscopic shape change of cross-linked polymer networks, w…

chemistry.chemical_classificationMaterials sciencebusiness.industryNanotechnologyGeneral MedicinePolymerSubstrate (electronics)CrystalOrganic semiconductorSemiconductorchemistryLiquid crystalArtificial muscleAnisotropybusinessChemInform
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Economical device for measuring thickness of a thin polymer film

1994

An inexpensive device (about $2K) for thickness measurements of thin (<1 μm) polymer films has been constructed. The homogeneous film is placed on a bulk substrate and three semiconductor lasers of different wavelengths are used to measure the reflectances at normal incidence. The thickness can be deduced with typically 4–8 nm uncertainty.

chemistry.chemical_classificationMaterials sciencebusiness.industryPolymerSubstrate (electronics)Semiconductor laser theoryOptical reflectionWavelengthCarbon filmchemistryHomogeneousOptoelectronicsThin filmbusinessInstrumentationReview of Scientific Instruments
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