Search results for "electronics"

showing 10 items of 4340 documents

Fast and continuous synthesis of nanostructured iron spinel in supercritical water: influence of cations and citrates

2014

International audience; Spinel iron oxide nanoparticles were obtained under supercritical water conditions in a continuous and fast (less than 10s) way by modifying the initial stoichiometric Fe II /Fe III molar ratio from (1/2) to (3/0), without base solution, and using citrates directly with iron precursors. This result opens the way of an economical and environmentally benign approach to synthesize superparamagnetic iron oxide nanoparticles (SPIONs) in important yields.

chemistry.chemical_classificationMaterials scienceBase (chemistry)Superparamagnetic iron oxide nanoparticlesGeneral Chemical EngineeringSpinelInorganic chemistry02 engineering and technologyGeneral Chemistryengineering.material010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences7. Clean energySupercritical fluid0104 chemical scienceschemistry.chemical_compoundchemistryMolar ratioengineeringIron oxide cycle[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics0210 nano-technologyStoichiometryIron oxide nanoparticles
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Silica-coated Au@ZnO Janus particles and their stability in epithelial cells

2020

Multicomponent particles have emerged in recent years as new compartmentalized colloids with two sides of different chemistry or polarity that have opened up a wide field of unique applications in medicine, biochemistry, optics, physics and chemistry. A drawback of particles containing a ZnO hemisphere is their low stability in biological environment due to the amphoteric properties of Zn2+. Therefore we have synthesized monodisperse Au@ZnO Janus particles by seed-mediated nucleation and growth whose ZnO domain was coated selectively with a thin SiO2 layer as a protection from the surrounding environment that imparts stability in aqueous media while the Au domain remained untouched. The thi…

chemistry.chemical_classificationMaterials scienceBiocompatibilityBiomoleculeDispersityBiomedical EngineeringNucleationNanotechnologyJanus particlesGeneral ChemistryGeneral MedicineColloidchemistryPhotocatalysisGeneral Materials ScienceLayer (electronics)Journal of Materials Chemistry B
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Polarization holographic recording in Disperse Red1 doped polyurethane polymer film

2011

In this report holographic recording of polarisation and surface relief gratings in Disperse Red 1 (DR1) doped polyurethane polymer films was studied. In this material DR1 is chemically bounded to polyurethane polymer main chain. Polarization holographic recording was performed by two orthogonal circularly polarized 532 nm laser beams. Photoinduced birefringence is a precondition for polarization holograms recording, therefore a detailed study of a photoinduced birefringence and changes of optical properties was performed. The lasers with wavelengths of 375nm, 448nm, 532 nm and 632.8 nm were used as pumping beam for sample excitation. The photoinduced birefringence Δn was measured at 532 nm…

chemistry.chemical_classificationMaterials scienceBirefringencebusiness.industryDopingHolographyPolymerLaserPolarization (waves)law.inventionWavelengthOpticschemistrylawOptoelectronicsbusinessExcitationIOP Conference Series: Materials Science and Engineering
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A Combined Top-Down/Bottom-Up Approach for the Nanoscale Patterning of Spin-Crossover Coordination Polymers

2007

Molecular spin-crossover complexes of 3d–3d transitionmetal ions have been the focus of many researchers’ work because of their fascinating properties associated with the bistability of their electronic states (high spin (HS) or low spin (LS)). Although the origin of the spin-crossover phenomenon is purely molecular, the macroscopic behavior of these systems in the solid state is strongly determined by the interactions, of mainly elastic origin, between the transition-metal ions. Recently, remarkable progress has been made in the area of spin-crossover complexes with infinite one-, two-, or three-dimensional (1D, 2D, 3D) networks, the so-called coordination polymers. The purpose of this app…

chemistry.chemical_classificationMaterials scienceBistabilityCoordination polymerMechanical EngineeringNanotechnologySubstrate (electronics)PolymerDielectricchemistry.chemical_compoundchemistryMechanics of MaterialsSpin crossoverGeneral Materials ScienceThin filmLithographyAdvanced Materials
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Inside Front Cover: A Combined Top-Down/Bottom-Up Approach for the Nanoscale Patterning of Spin-Crossover Coordination Polymers (Adv. Mater. 16/2007)

2007

The background scanning electron microscopy image shows nanometric patterns of the 3D spin crossover coordination polymer Fe(pyrazine)[Pt(CN)4] (see schematic structure in the circle), which have been fabricated using a combination of lift-off and multilayer sequential assembly methods. These patterns, reported by Gabor Molnar, Azzedine Bousseksou, and co-workers on p. 2163, exhibit a bistability of their electronic states (1A1 ⇌ 5T2), and thus represent a novel platform for a wide array of potential applications.

chemistry.chemical_classificationMaterials scienceBistabilitybusiness.industryCoordination polymerScanning electron microscopeMechanical EngineeringSchematicNanotechnologyPolymerchemistry.chemical_compoundchemistryMechanics of MaterialsSpin crossoverOptoelectronicsGeneral Materials ScienceThin filmbusinessNanoscopic scaleAdvanced Materials
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Coherent Electronic Coupling versus Localization in Individual Molecular Dimers

2004

International audience; The electronic excitation transfer and coherent electronic coupling strength were investigated in molecular dimers by spectrally resolved confocal fluorescence spectroscopy. The direct probe of electronic coupling strength distribution was possible due to static disorder in polymer host by single molecule measurements. The dimers with delocalized excitation were also found in comparison to emission originated from localized states. The delocalized and localized state transitions were observed for dimers which were attributed to structural fluctuations of guest-host system.

chemistry.chemical_classificationMaterials scienceDimerConfocalGeneral Physics and Astronomy02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCoupling (electronics)chemistry.chemical_compoundDelocalized electronchemistryFluorescence microscopePhysics::Atomic and Molecular ClustersMolecule[CHIM]Chemical SciencesAtomic physics0210 nano-technologyExcitation
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Fabrication of Robust High-Quality ORMOCER® Inverse Opals

2006

The nanostructuring of ORMOCER® to form inverse opals is described. For this purpose a polymer opal is used as a template and infiltrated with liquid ORMOCER®. After photopolymerization of the resin the host opal is dissolved in tetrahydrofuran and an ORMOCER® inverse opal is obtained. It shows excellent periodicity (by SEM) and optical properties to reveal a high degree of face centered cubic order. This replication process leads to a nanostructured photonic crystal with the outstanding mechanical properties of ORMOCER® and high temperature stability up to 350 °C.

chemistry.chemical_classificationMaterials scienceFabricationPolymers and Plasticsbusiness.industryOrganic ChemistryPolymerCubic crystal systemColloidal crystalPhotopolymerchemistryPolymer chemistryMaterials ChemistryOptoelectronicsThermal stabilityHybrid materialbusinessPhotonic crystalMacromolecular Rapid Communications
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Hybrid silicon on insulator/polymer electro-optical intensity modulator operating at 780  nm

2014

Currently inorganic materials prevail as the nonlinear active medium for light modulation in electro-optical (EO) device technology. A recent promising trend is to consider organic nonlinear optical materials for application in EO modulators due to their multiple advantages including low costs and high EO coefficients. In this paper, we proposed a new type of polymer EO modulator whose fabrication is compatible with the currently used silicon on insulator technology. Our numerical optimization of the proposed structure demonstrates that it is theoretically possible to achieve a half-wave voltage as low as 1.56 V for a 1 cm long modulator structure operating at 780 nm. Based on the results o…

chemistry.chemical_classificationMaterials scienceFabricationbusiness.industrySilicon on insulatorStatistical and Nonlinear PhysicsPolymerOrganic nonlinear optical materialsAtomic and Molecular Physics and OpticsNonlinear systemchemistry.chemical_compoundchemistryWavelength-division multiplexingOptoelectronicsbusinessRefractive indexVoltageJournal of the Optical Society of America B
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Biologizing titanium alloy implant material with morphogenetically active polyphosphate

2015

As a further step towards a new generation of bone implant materials, we developed a procedure for biological functionalization of titanium alloy surfaces with inorganic calcium polyphosphate (Ca-polyP). This polymer has been demonstrated to exhibit morphogenetic activity. The coating of titanium oxidized Ti-6Al-4V scaffolds with biologically active amorphous Ca-polyP microparticles is formed by Ca2+ ion bridges to the silane coupling agent APTMS. This surface is durable and stable as an almost homogeneous Ca-polyP layer onto the metal. The homogenously coated Ca-polyP titanium scaffold was found to be biologically active and supported the growth and functional activity of bone cell-related…

chemistry.chemical_classificationMaterials scienceGeneral Chemical EngineeringPolyphosphateMetallurgytechnology industry and agricultureTitanium alloychemistry.chemical_elementGeneral ChemistryPolymerengineering.materialequipment and suppliesMetalchemistry.chemical_compoundchemistryCoatingChemical engineeringvisual_artvisual_art.visual_art_mediumengineeringSurface modificationLayer (electronics)TitaniumRSC Advances
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Structure of Polymer-Grafted Nanoparticle Melts.

2020

The structure of neat melts of polymer-grafted nanoparticles (GNPs) is studied via coarse-grained molecular dynamics simulations. We systematically vary the degree of polymerization and grafting density at fixed nanoparticle (NP) radius and study in detail the shape and size of the GNP coronas. For sufficiently high grafting density, chain sections close to the NP core are extended and form a dry layer. Further away from the NP, there is an interpenetration layer, where the polymer coronas of neighboring GNPs overlap and the chain sections have almost unperturbed conformations. To better understand this partitioning, we develop a two-layer model, representing the grafted polymer around an N…

chemistry.chemical_classificationMaterials scienceGeneral EngineeringGeneral Physics and AstronomyNanoparticle02 engineering and technologyRadiusPolymerDegree of polymerization010402 general chemistry021001 nanoscience & nanotechnologyGrafting01 natural sciencesArticle0104 chemical sciencesMolecular dynamicsChain (algebraic topology)chemistryChemical physicsGeneral Materials Science0210 nano-technologyLayer (electronics)ACS nano
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