Search results for "METAL NANOPARTICLES"

showing 10 items of 170 documents

Asymmetric hydrogenation of ethyl pyruvate over aqueous dispersed Pt nanoparticles stabilized by a cinchonidine-functionalized β-cyclodextrin

2021

International audience; Cinchonidine-functionalized β-cyclodextrin was used as stabilizing agent for platinum nanoparticles dispersed in water, but also as chiral modifier for the asymmetric hydrogenation of ethyl pyruvate at 30 °C under 40 bar of hydrogen. This functionalized cyclodextrin allowed getting more stable, more catalytically active and also more enantioselective Pt nanoparticles compared to control catalytic systems. NMR and MALDI-MS analyses clearly showed the reduction of the vinyl group of the cinchonidine graft during the nanoparticles preparation. Under hydrogen pressure, the hydrogenation of the quinolinic moiety was also proven and can be responsible for the difficul…

Metal nanoparticles010402 general chemistryPlatinum nanoparticles01 natural sciencesCatalysisCatalysislcsh:Chemistrychemistry.chemical_compoundPolymer chemistryCyclodextrinMoiety[CHIM]Chemical SciencesCinchonidineCinchonidinechemistry.chemical_classificationAqueous solutionCyclodextrin010405 organic chemistryChemistryProcess Chemistry and TechnologyAsymmetric hydrogenationEnantioselective synthesisGeneral Chemistry[CHIM.CATA]Chemical Sciences/CatalysisSettore ING-IND/27 - Chimica Industriale E Tecnologica0104 chemical sciencesAsymmetric hydrogenationlcsh:QD1-999Metal nanoparticles Asymmetric hydrogenation Cyclodextrin Cinchonidine
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Synthesis and antibacterial activity of iron-hexacyanocobaltate nanoparticles.

2018

This paper deals with the synthesis and characterization of iron-hexacyanocobaltate (FeHCC) and its antibacterial properties. The nanoparticles were prepared by a facile co-precipitation technique. Crystal structure, particle morphology, and elemental composition were determined using X-ray Powder Diffraction, X-ray fluorescence spectroscopy, Transmission Electron Microscopy (TEM), and Infrared Spectroscopy (IR). The antibacterial activity of the FeHCC nanoparticles was tested against Escherichia coli and Staphylococcus aureus as models for Gram-negative and Gram-positive bacteria, respectively, by bacterial counting method and microscopic visualization (TEM, FEG-SEM, and fluorescence micro…

Metal-hexacyanoferrateStaphylococcus aureusIronColony Count MicrobialInfrared spectroscopyNanoparticleMetal Nanoparticles02 engineering and technologyMicrobial Sensitivity TestsBacterial growth010402 general chemistrymedicine.disease_cause01 natural sciencesBiochemistryFluorescence spectroscopyInorganic ChemistryMicroscopy Electron TransmissionmedicineFluorescence microscopeEscherichia coliEscherichia coliCyanidesChemistryIron-hexacyanocobaltateCobalt021001 nanoscience & nanotechnology0104 chemical sciencesAnti-Bacterial AgentsSpectrometry FluorescenceStaphylococcus aureuMicroscopy Electron ScanningAntibacterial activity0210 nano-technologyAntibacterial activityReactive Oxygen SpeciesNuclear chemistryMacromoleculeJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry
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Ligand-Stabilized Au13Cux (x = 2, 4, 8) Bimetallic Nanoclusters: Ligand Engineering to Control the Exposure of Metal Sites

2013

Three novel bimetallic Au-Cu nanoclusters stabilized by a mixed layer of thiolate and phosphine ligands bearing pyridyl groups are synthesized and fully characterized by X-ray single crystal analysis and density functional theory computations. The three clusters have an icosahedral Au13 core face-capped by two, four, and eight Cu atoms, respectively. All face-capping Cu atoms in the clusters are triply coordinated by thiolate or pyridyl groups. The surface ligands control the exposure of Au sites in the clusters. In the case of the Au13Cu8 cluster, the presence of 12 2-pyridylthiolate ligands still leaves open space for catalysis. All the 3 clusters are 8-electron superatoms displaying opti…

Models MolecularPhosphinesPyridinesSurface PropertiesInorganic chemistryMetal NanoparticlesCrystal structureLigandsBiochemistryCatalysisNanoclusterschemistry.chemical_compoundColloid and Surface ChemistryCluster (physics)Sulfhydryl CompoundsBimetallic stripta214ta114LigandThermal decompositionGeneral ChemistryCrystallographychemistryQuantum TheoryDensity functional theoryGoldCopperPhosphineJournal of the American Chemical Society
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Structural and Theoretical Basis for Ligand Exchange on Thiolate Monolayer Protected Gold Nanoclusters

2012

Ligand exchange reactions are widely used for imparting new functionality on or integrating nanoparticles into devices. Thiolate-for-thiolate ligand exchange in monolayer protected gold nanoclusters has been used for over a decade; however, a firm structural basis of this reaction has been lacking. Herein, we present the first single-crystal X-ray structure of a partially exchanged Au(102)(p-MBA)(40)(p-BBT)(4) (p-MBA = para-mercaptobenzoic acid, p-BBT = para-bromobenzene thiol) with p-BBT as the incoming ligand. The crystal structure shows that 2 of the 22 symmetry-unique p-MBA ligand sites are partially exchanged to p-BBT under the initial fast kinetics in a 5 min timescale exchange reacti…

Models Molecularchemistry.chemical_classificationta114LigandMetal NanoparticlesBridging ligandGeneral ChemistryAssociative substitutionCrystal structureCrystallography X-RayLigandsBiochemistryArticleCatalysisNanoclustersCrystallographyColloid and Surface ChemistrychemistryMonolayerSolventsThiolThermodynamicsDensity functional theoryGoldJournal of the American Chemical Society
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Metallic Nanoparticles Linked to Molecular Switches as Signal Processing Devices

2009

We explore theoretically the use of nanoscale switches whose conductance can be varied between two states by an external stimulus to implement signal processing devices. The building block is formed by a metallic nanoparticle linked to two electrodes by an organic ligand and a molecular switch. The system implementation exploits the sharp current resonance of the system that occurs when the frequencies of the applied potential and the induced variation on the switch conductance coincide.

Molecular switchSignal processingMaterials sciencebusiness.industryBiomedical EngineeringConductanceNanoparticleBioengineeringGeneral ChemistryApplied potentialCondensed Matter PhysicsElectrodeOptoelectronicsGeneral Materials SciencebusinessMetal nanoparticlesNanoscopic scaleJournal of Nanoscience and Nanotechnology
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Antiviral efficacy of cerium oxide nanoparticles.

2022

The authors gratefully acknowledge the financial support by the Estonian Research Council Grants (COVSG2, PRG629, PRG1496), Estonian Centre of Excellence in Research project “Advanced materials and high-technology devices for sustainable energetics, sensorics and nanoelectronics” TK141 (2014-2020.4.01.15-0011) and University of Tartu Development Fund (PLTFYARENG53). The research was partly conducted using the NAMUR+ core facility funded by projects “Center of nanomaterials technologies and research” (2014-2020.4.01.16-0123) and TT13.

MultidisciplinarySilverSARS-CoV-2HumansMetal NanoparticlesCOVID-19Nanoparticles:NATURAL SCIENCES::Physics [Research Subject Categories]CeriumSilicon DioxideAntiviral AgentsScientific reports
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Biogenic iron-silver nanoparticles inhibit bacterial biofilm formation due to Ag+ release as determined by a novel phycoerythrin-based assay

2020

Silver nanoparticles (Ag-NPs) can be considered as a cost-effective alternative to antibiotics. In the presence of Fe(III)-citrate and Ag+, Klebsiella oxytoca DSM 29614 produces biogenic Ag-NPs embedded in its peculiar exopolysaccharide (EPS). K. oxytoca DSM 29614 was cultivated in a defined growth medium–containing citrate (as sole carbon source) and supplemented with Ag+ and either low or high Fe(III) concentration. As inferred from elemental analysis, transmission and scanning electron microscopy, Fourier transform infrared spectrometry and dynamic light scattering, Ag-EPS NPs were produced in both conditions and contained also Fe. The production yield of high-Fe/Ag-EPS NPs was 12 times …

Nanoparticle production yieldNanoparticleBacterial exopolysaccharide; Biofilm formation inhibition; Biogenic bimetal nanoparticles; Nanoparticle production yield; Phycoerythrin fluorescence–based assay; Silver ion release;Biogenic bimetal nanoparticlesSettore BIO/19 - Microbiologia GeneraleApplied Microbiology and BiotechnologySilver nanoparticleNOBacterial exopolysaccharide; Biofilm formation inhibition; Biogenic bimetal nanoparticles; Nanoparticle production yield; Phycoerythrin fluorescence–based assay; Silver ion release03 medical and health scienceschemistry.chemical_compoundDynamic light scatteringBiofilm formation inhibitionPhycoerythrin fluorescence–based assay030304 developmental biology0303 health sciencesGrowth mediumbiology030306 microbiologySilver ion releaseBiofilmKlebsiella oxytocaGeneral Medicinebiology.organism_classificationFluorescenceBacterial exopolysaccharidechemistryYield (chemistry)BiotechnologyNuclear chemistry
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Custom-shaped metal nanostructures based on DNA origami silhouettes.

2015

The DNA origami technique provides an intriguing possibility to develop customized nanostructures for various bionanotechnological purposes. One target is to create tailored bottom-up-based plasmonic devices and metamaterials based on DNA metallization or controlled attachment of nanoparticles to the DNA designs. In this article, we demonstrate an alternative approach: DNA origami nanoshapes can be utilized in creating accurate, uniform and entirely metallic (e.g. gold, silver and copper) nanostructures on silicon substrates. The technique is based on developing silhouettes of the origamis in the grown silicon dioxide layer, and subsequently using this layer as a mask for further patterning…

NanostructureMaterials scienceFabricationSilverSiliconmetallic nanostructuresSilicon dioxideeducationta221ta220chemistry.chemical_elementMetal NanoparticlesNanotechnologymetallizationplasmonicschemistry.chemical_compoundDNA origamiDNA nanotechnologyGeneral Materials Scienceta216ta215PlasmonPhysicsMetamaterialself-assemblyDNASilicon DioxideMaterials scienceChemistrychemistryDNA origamiGoldLayer (electronics)CopperBiotechnologyNanoscale
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Advanced Functional Structures Based on Interpolyelectrolyte Complexes

2013

This review considers interpolyelectrolyte complexes, with a particular emphasis on advanced macromolecular co-assemblies based on polyionic species with nonlinear topology and on polymer–inorganic hybrids formed by interpolyelectrolyte complexes containing metal ions and/or metal nanoparticles.

NanostructureMaterials scienceMetal ions in aqueous solutionNanotechnologyMetal nanoparticlesTopology (chemistry)PolyelectrolyteMacromolecule
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Toward Single Electron Nanoelectronics Using Self-Assembled DNA Structure

2016

DNA based structures offer an adaptable and robust way to develop customized nanostructures for various purposes in bionanotechnology. One main aim in this field is to develop a DNA nanobreadboard for a controllable attachment of nanoparticles or biomolecules to form specific nanoelectronic devices. Here we conjugate three gold nanoparticles on a defined size TX-tile assembly into a linear pattern to form nanometer scale isolated islands that could be utilized in a room temperature single electron transistor. To demonstrate this, conjugated structures were trapped using dielectrophoresis for current-voltage characterization. After trapping only high resistance behavior was observed. However…

NanostructureMaterials scienceTransistors Electronicta221Metal NanoparticlesElectronsBioengineeringNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesnanoelectronicsNanobiotechnologyGeneral Materials ScienceA-DNAParticle Sizeta114Mechanical EngineeringTemperatureCoulomb blockadeDNA structureDNAGeneral ChemistryDielectrophoresis021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesCharacterization (materials science)NanoelectronicsColloidal goldGold0210 nano-technologyDimerizationNano Letters
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