Search results for "OTU"

showing 10 items of 2539 documents

Mechanics of deformation of single- and multi-wall carbon nanotubes

2004

Abstract An effective continuum/finite element (FE) approach for modeling the structure and the deformation of single- and multi-wall carbon nanotubes (CNTs) is presented. Individual tubes are modeled using shell elements, where a specific pairing of elastic properties and mechanical thickness of the tube wall is identified to enable successful modeling with shell theory. The incorporation and role of an initial internal distributed stress through the thickness of the wall, due to the cylindrical nature of the tube, are discussed. The effects of van der Waals forces, crucial in multi-wall nanotubes and in tube/tube or tube/substrate interactions, are simulated by the construction of special…

Materials scienceNanocompositeMechanical EngineeringShell (structure)Mechanical properties of carbon nanotubesBendingMechanicsCarbon nanotubeCondensed Matter Physicslaw.inventionStress (mechanics)symbols.namesakeMechanics of MaterialslawsymbolsDeformation (engineering)Composite materialvan der Waals forceJournal of the Mechanics and Physics of Solids
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Scalable manufacturing of fibrous nanocomposites for multifunctional liquid sensing

2021

This research is supported by the Advanced Manufacturing Program (No. 1927623) from the National Science Foundation and by the McIntire-Stennis Cooperative Forestry Research Program (No. 1020630) from the USDA National Institute of Food and Agriculture. The authors also thank WestRock Paper Company for donated the wood pulp used in this research. Open access funding is enabled and organized by CERN. Cellulose-based paper electronics is an attractive technology to meet the growing demands for naturally abundant, biocompatible, biodegradable, flexible, inexpensive, lightweight and highly miniaturizable sensory materials. The price reduction of industrial carbon nanotube (CNT) grades offers op…

Materials scienceNanocompositeOrders of magnitude (temperature)Biomedical EngineeringPharmaceutical ScienceNanoparticleForming processesBioengineeringNanotechnologyLiquid SensingCarbon nanotubelaw.inventionchemistry.chemical_compoundCellulose NanofibrilschemistrylawLeak DetectionEquivalent circuitCarbon NanotubesGeneral Materials ScienceElectronicsDetectors and Experimental TechniquesCellulosePaper-Based ElectronicsBiotechnologyNano Today
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Real time polymer nanocomposites-based physical nanosensors: theory and modeling.

2017

Functionalized carbon nanotubes and graphene nanoribbons nanostructures, serving as the basis for the creation of physical pressure and temperature nanosensors, are considered as tools for ecological monitoring and medical applications. Fragments of nanocarbon inclusions with different morphologies, presenting a disordered system, are regarded as models for nanocomposite materials based on carbon nanoсluster suspension in dielectric polymer environments (e.g., epoxy resins). We have formulated the approach of conductivity calculations for carbon-based polymer nanocomposites using the effective media cluster approach, disordered systems theory and conductivity mechanisms analysis, and obtain…

Materials scienceNanocompositePolymer nanocompositeMechanical EngineeringBioengineeringNanotechnologyGeneral ChemistryDielectricEpoxyCarbon nanotubeConductivity01 natural sciences010305 fluids & plasmaslaw.inventionMechanics of MaterialsNanosensorlawvisual_art0103 physical sciencesvisual_art.visual_art_mediumGeneral Materials ScienceElectrical and Electronic Engineering010306 general physicsGraphene nanoribbonsNanotechnology
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Novel non-destructive evaluation technique for the detection of poor dispersion of carbon nanotubes in nanocomposites

2019

Abstract A wide use of advanced carbon nanotube polymer composites can be boosted by new non-destructive evaluation (NDE) techniques that can test the quality of the products to ensure that their specifications are met. It is well known in literature that the parameter that far more than others can affect the enhancing capabilities of the carbon nanotubes is their dispersion. Here we have presented a novel NDE technique based on infrared thermography able to evaluate the dispersion of the added nanoparticles in polymer nanocomposites. The NDE technique was used to compare pairs of samples whose difference is represented only by the level of dispersion. It was found a significant difference …

Materials scienceNanocompositePolymer nanocompositeMechanical EngineeringNanoparticleCeramics and Composite02 engineering and technologyCarbon nanotube010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesIndustrial and Manufacturing Engineering0104 chemical scienceslaw.inventionSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineMechanics of MaterialslawDispersion (optics)ThermographyThermalHeat transferCeramics and CompositesMechanics of MaterialComposite material0210 nano-technology
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Photo-oxidation behaviour of polyethylene/multi-wall carbon nanotube composite films

2009

Abstract The resistance to accelerated photo-oxidation of polyethylene/multi-walled carbon nanotubes (MW-CNTs) composite films was compared with the photo-oxidation behaviour of pristine polyethylene film. The polyethylene/MW-CNTs films containing different CNTs loading were subjected to accelerated UV-B exposure. At short exposure time, i.e. under 200 h, the rates of carbonyl formation are very similar to that observed for pristine polyethylene film but at longer irradiation times the carbonyl formation increases for lower MW-CNTs contents (0.1, 0.2 and 0.5% wt./wt.), and decreases for higher MW-CNTs contents (1 and 2% wt./wt.). By adding a UV-stabilizer to the films their photo-oxidation …

Materials scienceNanocompositePolymers and PlasticsComposite numberConcentration effectCarbon nanotubePolyethyleneCondensed Matter Physicslaw.inventionchemistry.chemical_compoundchemistryMechanics of MaterialslawMaterials ChemistryPhotochemical degradationIrradiationShort exposureComposite materialPolymer Degradation and Stability
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EMI shielding effects of carbon nanotube cellulose nanocomposite

2010

Electromagnetic interference shielding is an important aspect of modern communication and computer technology. Carbon nanotube cellulose nanocomposite (CNTCNC) provides a novel material as an alternative to traditional metal-based shields for EMI shielding. Stratified structures containing CNTCNC layers combined with existing commercial lossy materials (like ferrite sheets) form effective EMI shields without lowering the signal integrity performance. Significant improvement in shielding effectiveness in stacked CNTCNC layers is noteworthy. CNTCNC is essentially like paper when it comes to flexibility and hence it can be easily conformed to the mechanical structure of the device in need of s…

Materials scienceNanocompositelawEMIElectromagnetic shieldingShieldsFerrite (magnet)Carbon nanotubeComposite materialElectromagnetic interferenceComputer technologylaw.invention2010 IEEE International Symposium on Electromagnetic Compatibility
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Growth and Electrical Characterization of Horizontally Aligned CNTs

2009

Nickel catalyst nanoparticles acting as nucleating seeds for carbon nanotube (CNT) growth were selectively deposited on the sidewalls of titanium nitride (TiN) electrodes by electrochemical deposition (ECD) from a Ni2+ electrolyte solution. Horizontal aligned CNTs were grown selectively from the sidewalls of these TiN electrodes forming a bridging CNT contact between the electrode gaps. Current-voltage measurements demonstrated this could be a promising technique towards nanoscale interconnections and nanoelectronic devices with resistance values for the bridging CNTs as low as 300Ω.

Materials scienceNanoparticlechemistry.chemical_elementNanotechnologyCarbon nanotubeElectrolyteElectrochemistryTitanium nitridelaw.inventionchemistry.chemical_compoundchemistrylawElectrodeTinNanoscopic scaleECS Transactions
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Wide range local resistance imaging on fragile materials by conducting probe atomic force microscopy in intermittent contact mode

2016

International audience; An imaging technique associating a slowly intermittent contact mode of atomic force microscopy (AFM) with a home-made multi-purpose resistance sensing device is presented. It aims at extending the widespread resistance measurements classically operated in contact mode AFM to broaden their application fields to soft materials (molecular electronics, biology) and fragile or weakly anchored nano-objects, for which nanoscale electrical characterization is highly demanded and often proves to be a challenging task in contact mode. Compared with the state of the art concerning less aggressive solutions for AFM electrical imaging, our technique brings a significantly wider r…

Materials scienceNanostructurePhysics and Astronomy (miscellaneous)optimisationNanotechnology02 engineering and technologyPhotovoltaic effectCarbon nanotube010402 general chemistry7. Clean energy01 natural scienceselectric resistance measurementlaw.inventioninfrared detectorslawMicroscopyThin filmNanoscopic scalethin film sensorsatomic force microscopycarbon nanotubesMolecular electronicsself-assembly[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical sciencesCharacterization (materials science)monolayersphotodetectors0210 nano-technology
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Nanorings and rods interconnected by self-assembly mimicking an artificial network of neurons

2013

[EN] Molecular electronics based on structures ordered as neural networks emerges as the next evolutionary milestone in the construction of nanodevices with unprecedented applications. However, the straightforward formation of geometrically defined and interconnected nanostructures is crucial for the production of electronic circuitry nanoequivalents. Here we report on the molecularly fine-tuned self-assembly of tetrakis-Schiff base compounds into nanosized rings interconnected by unusually large nanorods providing a set of connections that mimic a biological network of neurons. The networks are produced through self-assembly resulting from the molecular conformation and noncovalent intermo…

Materials scienceNanostructurePolymersSurface PropertiesEvaporationGeneral Physics and AstronomyNanoparticleNanotechnologyElectronsHardware_PERFORMANCEANDRELIABILITY010402 general chemistry01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyRodCircuitsCIENCIA DE LOS MATERIALES E INGENIERIA METALURGICAHardware_INTEGRATEDCIRCUITSAnimalsHumansNanotechnologyMolecular circuitsRingsSchiff BasesElectronic circuitNeuronsMultidisciplinaryNanotubes010405 organic chemistryFlowElectric ConductivityArchitecturesGeneral ChemistryEvaporation (deposition)0104 chemical sciencesNanostructuresNanoparticlesSelf-assemblyNeural Networks ComputerPrinciplesHardware_LOGICDESIGNModel
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One-Dimensional Porous Carbon/Platinum Composites for Nanoscale Electrodes

2007

Materials scienceNanostructurechemistry.chemical_elementNanotechnologyGeneral ChemistryCarbon nanotubeGeneral MedicineHeterogeneous catalysisCatalysislaw.inventionPorous carbonchemistrylawElectrodePlatinumNanoscopic scaleAngewandte Chemie
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