Search results for "quantum dot"

showing 10 items of 418 documents

Acceptor Concentration Dependence of Förster Resonance Energy Transfer Dynamics in Dye–Quantum Dot Complexes

2014

The dynamics of the photoinduced Forster resonance energy transfer (FRET) in a perylene diimide–quantum dot organic–inorganic hybrid system has been investigated by femtosecond time-resolved absorption spectroscopy. The bidentate binding of the dye acceptor molecules to the surface of CdSe/CdS/ZnS multishell quantum dots provides a well-defined dye-QD geometry for which the efficiency of the energy transfer reaction can be easily tuned by the acceptor concentration. In the experiments, the spectral characteristics of the chosen FRET pair facilitate a selective photoexcitation of the quantum dot donor. Moreover, the acceptor related transient absorption change that occurs solely after energy…

Physics::Biological PhysicsAbsorption spectroscopyChemistryCondensed Matter::Mesoscopic Systems and Quantum Hall EffectPhotochemistryAcceptorSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPhotoexcitationCondensed Matter::Materials Sciencechemistry.chemical_compoundGeneral EnergyFörster resonance energy transferQuantum dotChemical physicsUltrafast laser spectroscopyMoleculePhysics::Chemical PhysicsPhysical and Theoretical ChemistryPeryleneThe Journal of Physical Chemistry C
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An assembly of organic-inorganic composites using halloysite clay nanotubes

2018

Halloysite is natural tubular clay suitable as a component of biocompatible nanosystems with specific functionalities. The selective modification of halloysite inner/outer surfaces can be achieved by exploiting supramolecular and covalent interactions resulting in controlled colloidal stability adjusted to the solvent polarity. The functionalized halloysite nanotubes can be employed as reinforcing filler for polymers as well as carriers for the sustained release of active molecules, such as antioxidants, flame-retardants, corrosion inhibitors, biocides and drugs. The tubular morphology makes halloysite a perspective template for core-shell metal supports for mesoporous catalysts. The cataly…

Polymers and PlasticsHalloysite nanotube02 engineering and technologyReview01 natural sciencesunclassified drug adsorptionFlame retardantcovalent bondColloid and Surface ChemistryhalloysiteControlled drug deliverychemistry.chemical_classificationemulsionquantum dotSurfaces and InterfacesPolymerSelf assembly021001 nanoscience & nanotechnologynanorodPickering emulsionCorrosion inhibitoroil spillSolventSelective modification Kaolinite chemicals and drugNanorodBiocompatibility0210 nano-technologyOil water interfaceYarn Covalent interactionNanotubeMaterials scienceSupramolecular chemistrysustained drug releasecatalysiengineering.material010402 general chemistryHalloysitebioremediationPhysical and Theoretical ChemistryhydrophobicityMesoporous catalystpetroleummetal nanoparticlePhase interfacemetal bindingReinforcing fillerPickering emulsion0104 chemical sciencesOrganic-inorganic compositeNanotubeFilled polymerchemistryChemical engineeringengineeringSelf-assemblyCatalystMesoporous material
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Hybrid Gold/Silica/Quantum-Dots supramolecular-nanostructures encapsulated in polymeric micelles as potential theranostic tool for targeted cancer th…

2018

Abstract Efficient theranostic tools are today more and more frequently represented by the nano-sized systems. In this paper, polymeric micelles were produced and exploited to encapsulate both an antitumor drug (Doxorubicin) and gold core–shell quantum dots nanoparticles (Au-SiO2/QDs). α,β-poly(N-hydroxyethyl)- dl -aspartamide (PHEA) was functionalized with lipoic acid (LA), polyethylenglycol (PEG), and folic acid (FA) pendant moieties to obtain a synthetic derivative (PHEA-LA-PEG-FA) able to self assemble in aqueous medium giving rise to the formation of polymeric micelles exposing on their surface both targeting groups (FA) and hydrophilic chains (PEG). The drug carrying ability of PHEA-L…

Polymers and PlasticsSupramolecular chemistryGeneral Physics and AstronomyNanoparticle02 engineering and technology010402 general chemistry01 natural sciencesMicellePhysics and Astronomy (all)Polymeric micelleTheranosticagentPEG ratioPhotothermal treatmentMaterials ChemistrymedicineDoxorubicinQuantum dots gold core–shellPolymers and PlasticChemistryOrganic Chemistrytechnology industry and agriculturePhotothermal therapy021001 nanoscience & nanotechnologyCombinatorial chemistryImaging agent0104 chemical sciencesSettore CHIM/09 - Farmaceutico Tecnologico ApplicativoQuantum dot0210 nano-technologymedicine.drugEuropean Polymer Journal
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Production of nanometer-size GaAs nanocristals by nanosecond laser ablation in liquid.

2012

This paper reports the formation and characterization of spherical GaAs quantum dots obtained by nanosecond pulsed laser ablation in a liquid (ethanol or methanol). The produced bare GaAs nanoparticles demonstrate rather narrow size distribution which depends on the applied laser power density (from 4.25 to 13.9 J/cm 2 in our experiments) and is as low as 2.5 nm for the highest power used. The absolute value of the average diameter also decreases significantly, from 13.7 to 8.7 nm, as the laser power increases in this interval. Due to the narrow nanoparticle size dispersion achieved at the highest laser powers two absorption band edges are clearly distinguishable at about 1.72 and 3.15 eV w…

Potential wellMaterials sciencebusiness.industryBiomedical EngineeringAnalytical chemistryNanoparticleBioengineeringGeneral ChemistryCondensed Matter PhysicsLaserNanocrystalline materiallaw.inventionCondensed Matter::Materials ScienceQuantum dotAbsorption bandlawOptoelectronicsGeneral Materials ScienceLaser power scalingbusinessHigh-resolution transmission electron microscopyJournal of nanoscience and nanotechnology
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Syntheses and Characterizations of Functional Polycyclic Aromatic Hydrocarbons and Graphene Nanoribbons

2020

In contrast to zero-bandgap graphene, nanostructures of graphene, such as graphene quantum dots (GQDs) and graphene nanoribbons (GNRs) have open bandgaps due to the quantum confinement effect, and are thus highly interesting for semiconductor applications, for example in nanoelectronics and optoelectronics. While conventional methods cannot provide GQDs and GNRs with chemically precise structures, large polycyclic aromatic hydrocarbon (PAH) molecules can be regarded as atomically precise GQDs. Moreover, extension of the PAH synthesis can lead to GNRs with well-defined chemical structures. In this account, we summarize our recent achievements in our synthetic exploration of PAHs and GNRs wit…

Potential wellNanostructure010405 organic chemistryChemistryGrapheneNanotechnologyGeneral Chemistry010402 general chemistry01 natural sciences0104 chemical scienceslaw.inventionlawQuantum dotGraphene nanoribbonsBulletin of the Chemical Society of Japan
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Size dependent light absorption modulation and enhanced carrier transport in germanium quantum dots devices

2015

Quantum confinement in closely packed arrays of Ge quantum dots (QDs) was studied for energy applications. In this work, we report an efficient tuning mechanism of the light harvesting and detection of Ge QDs. Thin films of SiGeO alloys, produced by rf-magnetron sputtering, were annealed at 600 degrees C in N-2 to induce precipitation of small amorphous Ge QDs into the oxide matrix. Varying the Ge content, the QD size was tailored between 2 and 4 nm, as measured by high resolution transmission electron microscopy. X-ray photoelectron spectroscopy (XPS) measurements indicate the formation of pure SiO2, as well as the presence of a sub-stoichiometric Ge oxide shell at the QD interface. Light …

Precipitation (chemical)Materials scienceAmorphous alloyBand gapchemistry.chemical_elementHigh resolution transmission electron microscopyPhotoconductive gainGermaniumNanocrystalMetal-insulator semiconductor deviceSettore ING-INF/01 - ElettronicaSettore FIS/03 - Fisica Della MateriaAbsorption spectroscopyQuantum confinement effectQuantum confinementElectromagnetic wave absorptionLight absorptionThin filmGermanium oxideOxide filmHigh-resolution transmission electron microscopyGermanium quantum dotPotential wellMIS deviceAmorphous filmGermaniumQuantum dotsRenewable Energy Sustainability and the Environmentbusiness.industryPhotoconductivitySolar cellPreferential trappingMIM deviceSemiconductor deviceSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsPhotovoltaicschemistryMetal insulator boundarieQuantum dotrf-Magnetron sputtering Semiconductor quantum dotOptoelectronicsCharge carrierX ray photoelectron spectroscopy Effective mass approximationbusinessQuantum chemistryPhotovoltaicMagnetron sputteringSolar Energy Materials and Solar Cells
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Cryopreservation of MHC Multimers: Recommendations for Quality Assurance in Detection of Antigen Specific T Cells

2015

Fluorescence-labeled peptide-MHC class I multimers serve as ideal tools for the detection of antigen-specific T cells by flow cytometry, enabling functional and phenotypical characterization of specific T cells at the single cell level. While this technique offers a number of unique advantages, MHC multimer reagents can be difficult to handle in terms of stability and quality assurance. The stability of a given fluorescence-labeled MHC multimer complex depends on both the stability of the peptide-MHC complex itself and the stability of the fluorochrome. Consequently, stability is difficult to predict and long-term storage is generally not recommended. We investigated here the possibility of…

Quality ControlHistologyT-LymphocytesSerum albuminquality assuranceBiologyrecommendations for MHC multimer storageMajor histocompatibility complexcryopreservationEpitopeCryopreservationPathology and Forensic MedicineFlow cytometryCryoprotective AgentsAntigen specificQuantum DotsmedicineHumansFluorescent Dyesmedicine.diagnostic_testStaining and LabelingcryoprotectantHistocompatibility Antigens Class IReproducibility of ResultsCell BiologyMHC multimerFlow CytometryMolecular biologyMHC multimerBiochemistrybiology.proteinSpecial Section : Improving Methods for Blood Cell AnalysisIndicators and Reagentsglycerol in T cell stainingProtein MultimerizationPeptidesCytometry
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Uptake of silica covered Quantum Dots into living cells: Long term vitality and morphology study on hyaluronic acid biomaterials

2015

Quantum Dots (QDs) are promising very bright and stable fluorescent probes for optical studies in the biological field but water solubility and possible metal bio-contamination need to be addressed. In this work, a simple silica-QD hybrid system is prepared and the uptake in bovine chondrocytes living cells without any functionalization of the external protective silica shield is demonstrated. Moreover, long term treated cells vitality (up to 14 days) and the transfer of silica-QDs to the next cell generations are here reported. Confocal fluorescence microscopy was also used to determine the morphology of the so labelled cells and the relative silica-QDs distribution. Finally, we employ sil…

Quantum DotNanoparticleBiocompatible Materials02 engineering and technology01 natural scienceschemistry.chemical_compoundNanoparticleLabellingHyaluronic acidFluorescence microscopeLong term cell stainingBiocompatible MaterialSilicon Dioxide021001 nanoscience & nanotechnologyMechanics of MaterialsSelf-healing hydrogelsMaterials Science (all)0210 nano-technologySilica Quantum DotMaterials scienceFluorescence confocal microscopyCell SurvivalSilicon dioxideChondrocyte bovine cellHyaluronic acidConfocalBioengineeringNanotechnologyCondensed Matter Physic010402 general chemistryBiomaterialsChondrocytesQuantum DotsAnimalsMechanics of MaterialCell ShapeSilica Quantum DotsAnimalMechanical Engineeringtechnology industry and agricultureChondrocyteequipment and suppliesSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)0104 chemical sciencesMicroscopy FluorescencechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoQuantum dotBiophysicsNanoparticlesSurface modificationCattleMaterials Science and Engineering: C
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Competition between memory-keeping and memory-erasing decoherence channels

2014

We study the competing effects of simultaneous Markovian and non-Markovian decoherence mechanisms acting on a single spin. We show the existence of a threshold in the relative strength of such mechanisms above which the spin dynamics becomes fully Markovian, as revealed by the use of several non-Markovianity measures. We identify a measure-dependent nested structure of such thresholds, hinting at a causality relationship among the various non-Markovianity witnesses used in our analysis. Our considerations are then used to argue the unavoidably non-Markovian evolution of a single-electron quantum dot exposed to both intrinsic and Markovian technical noise, the latter of arbitrary strength. 

Quantum decoherenceNON-MARKOVIAN DYNAMICSMarkov processFOS: Physical sciencesRelative strengthSPINS01 natural sciencesNoise (electronics)Settore FIS/03 - Fisica Della Materia010305 fluids & plasmasCausality (physics)symbols.namesakeSYSTEMSQuantum mechanics0103 physical sciencesStatistical physicsQuantum information010306 general physicsSpin-½PhysicsQuantum Physics/dk/atira/pure/subjectarea/asjc/3100/3107Atomic and Molecular Physics and OpticsQuantum dotsymbolsSEMICONDUCTOR QUANTUM DOTSQuantum Physics (quant-ph)
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The use of quantum dots in organic chemistry

2009

Abstract We discuss the main mechanisms of interaction between quantum dots (QDs) of different types and organic molecules within the framework of the use of photo-physical properties of colloidal semiconductor nanoparticles for sensing organic and biochemical compounds. We reviewed the recent literature in the field to provide a picture of the state of the art of our knowledge and perspectives on this challenging field. Bearing in mind analysis in organic chemistry based on luminescence and electrochemical changes, we discuss surface interaction based on the use of QDs capped with thiol, cystein, citrate, surfactant, purine and nitroxides, and we explain ligand-analyte, bioconjugate-analyt…

Quantum dotChemistryNanoparticleOrganic chemistryNanotechnologyLuminescenceSpectroscopySemiconductor NanoparticlesAnalytical ChemistryOrganic moleculesTrAC Trends in Analytical Chemistry
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