Search results for "surface functionalization"

showing 10 items of 18 documents

Label-free histamine detection with nanofluidic diodes through metal ion displacement mechanism

2017

[EN] We design and characterize a nanofluidic device for the label-free specific detection of histamine neurotransmitter based on a metal ion displacement mechanism. The sensor consists of an asymmetric polymer nanopore fabricated via ion track-etching technique. The nanopore sensor surface having metal-nitrilotriacetic (NTA-Ni2+) chelates is obtained by covalent coupling of native carboxylic acid groups with N-alpha,N-alpha-bis(carboxymethyl)-L-lysine (BCML), followed by exposure to Ni2+ ion solution. The BCML immobilization and subsequent Ni2+ ion complexation with NTA moieties change the surface charge concentration, which has a significant impact on the current-voltage (I-V) curve after…

Nitrilotriacetic AcidPolymersSurface PropertiesCarboxylic acidInorganic chemistryCarboxylic Acids02 engineering and technologyElectrolyte010402 general chemistry01 natural sciencesNanofluidic sensorIonMetalNanoporeschemistry.chemical_compoundColloid and Surface ChemistryNickelNanotechnologyNeurotransmitterSurface chargePhysical and Theoretical ChemistryNTA-metal complexElectrodesChelating AgentsIonschemistry.chemical_classificationNeurotransmitter AgentsHydrolysisElectric ConductivityEstersSurfaces and InterfacesGeneral MedicineModels Theoretical021001 nanoscience & nanotechnology0104 chemical sciencesNanoporechemistryMetalsCovalent bondSurface functionalizationFISICA APLICADAvisual_artvisual_art.visual_art_medium0210 nano-technologyHistamineHistamineBiotechnologyColloids and Surfaces B: Biointerfaces
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Toxicological assessment of mesoporous silica particles in the nematode Caenorhabditis elegans

2018

[EN] Here we report the toxicological evaluation of mesoporous silica particles (MSPs) in the nematode C. elegans. Specifically, we have investigated the effect of bare micro- (M0) and nano-sized (N0) MSPs, and their corresponding functionalized particles with a starch derivative (Glu-N) (M1 and N1, respectively) on C. elegans ageing parameters. The toxicity of MSPs, their impact on C. elegans lifespan, movement capacity, progeny and ability to survive upon exposure to acute oxidative stress were assessed. This study demonstrated that both size particles assayed (M0 and N0), labeled with rhodamine and monitored through fluorescence microscopy, are ingested by the nematode. Moreover, toxicit…

TECNOLOGIA DE ALIMENTOSNematodesLongevityNanoparticle02 engineering and technology010402 general chemistrymedicine.disease_cause01 natural sciencesBiochemistrySurface FunctionalizationRhodaminechemistry.chemical_compoundQUIMICA ORGANICAIn vivoToxicity TestsOral intakemedicineAnimalsParticle SizeCaenorhabditis elegansGeneral Environmental ScienceLifespanChemistryQUIMICA INORGANICAStarchMesoporous silicaSilicon Dioxide021001 nanoscience & nanotechnology0104 chemical sciencesOxidative StressMesoporous SilicaNanotoxicologyToxicityBiophysicsNanoparticlesHealthspan0210 nano-technologyMesoporous materialOxidative stressEnvironmental Research
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Generic Method for Modular Surface Modification of Cellulosic Materials in Aqueous Medium by Sequential Click-Reaction and Adsorption

2012

A generic approach for heterogeneous surface modification of cellulosic materials in aqueous medium, applicable for a wide range of functionalizations, is presented. In the first step, carboxymethyl cellulose (CMC) modified with azide or alkyne functionality, was adsorbed on a cellulosic substrate, thus, providing reactive sites for azide–alkyne cycloaddition click reactions. In the second step, functional units with complementary click units were reacted on the cellulose surface, coated by the click-modified CMC. Selected model functionalizations on diverse cellulosic substrates are shown to demonstrate the generality of the approach. The concept by sequentially combining the robust physic…

AzidesMagnetic Resonance SpectroscopyPolymers and PlasticsSurface Propertiesta221BioengineeringMicroscopy Atomic ForceCatalysisNanocellulosePolyethylene GlycolsmaterialsBiomaterialschemistry.chemical_compoundAdsorptionSpectroscopy Fourier Transform Infraredotorhinolaryngologic diseasesMaterials ChemistrymedicineOrganic chemistryAnimalsCotton FiberCelluloseta216ta116ta215ta218nanocelluloseFluorescent Dyesta214ta114Photoelectron Spectroscopyclick-reactionsSubstrate (chemistry)WaterSerum Albumin BovineCombinatorial chemistrycelluloseCarboxymethyl cellulosefunctionalchemistryadsorptionAlkynesCarboxymethylcellulose SodiumSurface functionalizationClick chemistrySurface modificationCattleAzidemedicine.drugBIOMACROMOLECULES
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Reversible self-assembly of metal chalcogenide/metal oxide nanostructures based on Pearson hardness.

2010

Nanotechnology has reached a stage of development where not individual nanoparticles but rather systems of greater complexity are the focus of concern. These complex structures incorporate two or more types of materials, an example of which is the formation of metal–semiconductor hybrids, which effectively combine the properties of both materials. The assembly of multicomponent nanoparticles from constituents with different optical, electrical, magnetic, and chemical properties can lead to novel functionalities that are independent of the individual components and may be tailored to fit a specific application. These applications include such far-reaching challenges as solar energy conversio…

chalcogenides; HSAB principle; MnO nanoparticles; surface functionalization; WS2 nanotubesMaterials scienceNanostructureChalcogenideInorganic chemistryNanoparticleIonic bondingWS2 nanotubesGeneral ChemistryCatalysisMnO nanoparticleschemistry.chemical_compoundChemical engineeringchemistryMoleculeSurface modificationchalcogenidesSelf-assemblyHSAB principleBifunctionalsurface functionalizationAngewandte Chemie (International ed. in English)
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Technological innovation around protein and cell biochip for diagnosis: a translational research from nanoworld to patient

2009

International audience; A great challenge in biosensors and diagnosis devices relies on the way to reconstitute relevant biological mechanisms on surface of the biochips and which analytical tools are convenient to provide accurate and rapid information on the structures and function of molecules attached to this surface. A better control in the realization of biochips can be obtained in combining different complementary approaches while always keeping in mind the biological key point. Researches in CLIPP are focused towards this objective. Conception, realization and characterization of protein and cell chips are presented. We detail different strategies of materials engineering1,2,3, chem…

[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biophysics[ SDV.BBM.BP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biophysicsatomic force microscopynanostructurationdiagnosisbiochip[SDV.BBM.BP] Life Sciences [q-bio]/Biochemistry Molecular Biology/Biophysicssurface functionalizationmass spectrometry
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A redox-sensitive nanofluidic diode based on nicotinamide-modified asymmetric nanopores

2017

[EN] We demonstrate a redox-sensitive nanofluidic diode whose ion rectification is modulated by the oxidation and reduction of chemical moieties incorporated on its surface. To achieve this goal, we have first synthesized the chemical compounds 1-(4-aminobutyl)-3-carbamoylpyridin-1-ium (Nic-BuNH2) and 3-carbamoyl-1-(2,4-dinitrophenyl)pyridinium (Nic-DNP). Then, the surface of track-etched single asymmetric nanopores is decorated with the redox-sensitive Nic-BuNH2 and Nic-DNP molecules using carbodiimide coupling chemistry and Zincke reaction, respectively. The success of the modification reactions is monitored through the changes in the current¿voltage (I¿V) curves prior to and after pore f…

Track-etchingReducing agent02 engineering and technology010402 general chemistryPhotochemistry01 natural sciencesRedoxIonchemistry.chemical_compoundMaterials ChemistryMoleculeOrganic chemistryRedox reactionSurface chargeElectrical and Electronic EngineeringNicotinamideInstrumentationCurrent rectificationMetals and Alloys021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanoporechemistrySurface functionalizationFISICA APLICADASurface modificationPyridiniumSynthetic nanopores0210 nano-technologySensors and Actuators B: Chemical
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Microfibrillar polymeric ocular inserts for triamcinolone acetonide delivery.

2019

Abstract Despite eye drops generally represent the most convenient, simple and patient-friendly formulations to treat ocular diseases, they suffer from poor retention on the ocular surface and low drug bioavailability leading to the necessity of prolonged and continuous treatment over time. Therefore, ocular insert could represent an innovative way to benefit from ocular topical administration while minimizing all the relevant limitation related to this route of administration. Polymeric non-erodible mucoadhesive ocular inserts should be comfortable and should rapidly adhere on the ocular surface, remain in situ for prolonged period, assure a reproducible and controlled drug release as well…

DrugTriamcinolone acetonidegenetic structuresPolymersmedia_common.quotation_subjectPoly(butylene succinate) (PBS)Pharmaceutical ScienceAdministration Ophthalmic02 engineering and technologyAbsorption (skin)Eye030226 pharmacology & pharmacyTriamcinolone Acetonide03 medical and health sciencesRoute of administration0302 clinical medicinemedicineMucoadhesionAnimalsHumansSettore BIO/15 - Biologia FarmaceuticaButylene GlycolsGlucocorticoidsmedia_commonDrug ImplantsElectrospinningPlasma-assisted surface functionalizationChemistry021001 nanoscience & nanotechnologyeye diseasesBioavailabilityPolyesterDrug LiberationSurface modificationCattleOcular insert0210 nano-technologymedicine.drugBiomedical engineeringInternational journal of pharmaceutics
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Spectroscopic and Theoretical Study of the Grafting Modes of Phosphonic Acids on ZnO Nanorods

2013

Metal oxides are versatile substrates for the design of a wide range of SAM-based organic-inorganic materials among which ZnO nanostructures modified with phosphonic SAM are promising semiconducting systems for applications in technological fields such as biosensing, photonics, and field-effect transistors (FET). Despite previous studies reported on various successful grafting approaches, issues regarding preferred anchoring modes of phosphonic acids and the role of a second reactive group (i.e., a carboxylic group) are still a matter of controversial interpretations. This paper reports on an experimental and theoretical study on the functionalization of ZnO nanorods with monofunctional alk…

Materials scienceNanostructureOXIDE SURFACESNanoparticleMetalchemistry.chemical_compoundSELF-ASSEMBLED MONOLAYERSNANOPARTICLESOrganic chemistrySELF-ASSEMBLED MONOLAYERS; RAY PHOTOELECTRON-SPECTROSCOPY; POLARIZABLE CONTINUUM MODEL; MOLECULAR-ORBITAL METHODS; SENSITIZED SOLAR-CELLS; SURFACE FUNCTIONALIZATION; OXIDE SURFACES; ZINC-OXIDE; NANOPARTICLES; ALUMINUMZINC-OXIDEPhysical and Theoretical ChemistryBifunctionalSelf-assembled monolayerSURFACE FUNCTIONALIZATIONALUMINUMCombinatorial chemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsMOLECULAR-ORBITAL METHODSGeneral EnergychemistryPOLARIZABLE CONTINUUM MODELvisual_artRAY PHOTOELECTRON-SPECTROSCOPYvisual_art.visual_art_mediumSurface modificationNanorodSENSITIZED SOLAR-CELLSBiosensorThe Journal of Physical Chemistry C
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PREPARATION AND CHARACTERIZATION OF BIOPOLYMERIC POROUS STRUCTURES FOR ADVANCED APPLICATIONS

Porous biopolymers received an increasing academic and industrial interest finding application in several fields such as tissue engineering, bioprocess intensification and waste removal. Tissue engineering combines the knowledge of materials science and bioengineering in order to develop structures able to substitute and restore the normal function of injured or diseased tissues. In this context, polymeric 3D or 2D scaffolds are widely investigated as temporary cell guidance during the tissue restore. Porous biomaterials can offer a versatile and cost effective way for immobilization of filamentous microorganisms in submerged fermentation processes for the production of biologically active …

Bioprocess intensificationBiopolymerElectrospinningTissue EngineeringParticulate leachingImage ProcessingPorous structureSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMelt mixingSurface functionalizationWaste RemovalGrapheneBiopolymers; Porous structure; Melt mixing; Electrospinning; Particulate leaching; Image Processing; Bioremediation; Tissue Engineering; Bioprocess intensification; Waste Removal; Graphene; Surface functionalization;Bioremediation
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Grafting of hyperbranched polymers: From unusual complex polymer topologies to multivalent surface functionalization

2013

Abstract In this feature article, the grafting of hyperbranched polymers to different substrates is reviewed. Both grafting onto macromolecules with different topologies (homogeneous grafting) and the resulting complex polymer architectures containing highly branched segments as well as their applications are discussed. In the second part grafting of hyperbranched polymers on surfaces, i.e., planar surfaces and spherical particles (heterogeneous grafting), with respect to specific applications, such as bio-repellent surfaces or soluble carbon nanotubes is described. In all cases, the one-step synthesis and the resulting highly branched topology of the hyperbranched building blocks is benefi…

Particle functionalizationMaterials sciencePolymers and PlasticsPolyglycerolNanoparticleNanotechnologyCarbon nanotubelaw.inventionlawPolymer chemistryMaterials ChemistryCarbon nanotube functionalizationHyperbranched polymerchemistry.chemical_classificationComplex polymer architectureNanocompositeOrganic ChemistryHypergraftingPolymerGraftingchemistrySurface functionalizationBio-repellent surfacesSurface modificationHybrid materialMacromoleculePolymer
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