Search results for "NANOCOMPOSITE"

showing 10 items of 641 documents

A chemical and electrochemical multivalent memory made from FeNi3-graphene nanocomposites

2014

FeNi3-graphene nanocomposites present in acetonitrile solutions a redox couple with an electrochemical hysteresis of 2.4 V between the oxidation and the reduction maxima. In view of the high energy required for the reverse transitions, they are here proposed as chemical multilevel memories: permanent, after drying, or erasable in electrolytes, respectively. Keywords: FeNi3-graphene nanocomposites, Voltammetry, Coulovoltammetry, Redox couple, Redox hysteresis

Redox hysteresisHigh energyMaterials scienceInorganic chemistryRedox coupleFeNi3-graphene nanocompositesElectrolyteElectrochemistryRedoxlcsh:ChemistryHysteresischemistry.chemical_compoundlcsh:Industrial electrochemistrylcsh:QD1-999Graphene nanocompositeschemistryChemical engineeringCoulovoltammetryElectrochemistryVoltammetryAcetonitrileVoltammetrylcsh:TP250-261Electrochemistry Communications
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Reprocessing of PLA based nanocomposites: Effect of nanofiller

2017

Several studies investigated the effect of the reprocessing on the properties of PLA. However, recycling of PLA-based nanocomposites was not been investigated in depth so far. PLA is susceptible to thermo-degradation during melt processing operations. For this purpose, the study of thermo-mechanical degradative phenomena associated to its re-processing is of great concern in order to assess the possibility of recycling PLA-based nanocomposites. This work aims to evaluate the effect of reprocessing on morphology and properties of PLA reinforced with different nanofillers, i.e. hydrotalcites (HT) and graphene nanoplatelets (GnPs), pointing out on the role of the nanofiller.

ReprocessingnanocompositePLA
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A self-sterilizing fluorescent Nanocomposite as versatile material with broad-spectrum Antibiofilm features

2020

Abstract Hematogenous spread of infections from colonized central intravenous catheters or central lines is a long-recognized problem with infection rates of 2 and 6.8 per 1000 days, respectively. Besides, removal of severe microbial colonization of implanted biomaterials is still a challenge and usually requires invasive operations. Hence, on demand self-sterilizing materials are required to avoid explant of colonized biomaterials and improve patient compliance. Moreover, photoluminescence is needed to make trackable biomaterials, which can be easily monitored upon implanting them in the body. Here, we propose the incorporation of near infrared (NIR) sensitive red-emitting carbon nanodot (…

ScaffoldMaterials scienceBioengineeringNanotechnologyBiocompatible Materials02 engineering and technology010402 general chemistry01 natural sciencesNanocompositesBiomaterialsAnti-Infective AgentsHumansNanocompositeBiofilmBiomaterialSterilizationPhotothermal therapy021001 nanoscience & nanotechnologyFluorescenceElectrospinning0104 chemical sciencesAntimicrobials Biofilms Nanocomposites Carbon nanodots Self-sterilizing Fluorescent biomaterialsMechanics of MaterialsBiofilmsNanodot0210 nano-technology
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Solution-Processed Ni-Based Nanocomposite Electrocatalysts: An Approach to Highly Efficient Electrochemical Water Splitting

2021

In this study, we report an up-scalable and low-cost solution-processed method to in situ synthesize an earth-abundant non-stoichiometric NiOx-based electrocatalytic film for water oxidation. The catalytic activity was found to be inversely proportional to the baking temperature, which varied from 50 to 500 °C. We found the formation of a hybrid nanocomposite thin film of NiOx nanocrystals (<2 nm size) inside an acetate-based organic matrix at low temperatures (<200 °C). The defective and short-range structural order of the NiOx-based nanocomposite electrocatalysts, compatible with lattice stress, low electrical conductivity, and high density of catalytically active surface species, and hig…

Service (business)NanocompositeEnergy Engineering and Power Technologywater splittingManufacturing engineeringExperimental researchSolution processedNiOx-based nanocompositeMaterials ChemistryElectrochemistryChemical Engineering (miscellaneous)Water splittingelectrocatalystsolution processingElectrical and Electronic Engineering
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Reuse and recycling in construction: novel photocatalytic nano-mortars from valorised industrial wastes

2021

Production of novel eco-composite nano-mortars for architectural finishing, designed to combat environmental pollution affecting building shells, is reported. Specimens consist of a natural hydraulic lime mortar matrix doped with various kinds of nanophotocatalysts, produced from valorized industrial wastes: TiO2-hexaferrite from Fe3O2, and Ti(SO4)2-hydroxyapatite from Atlantic codfish bones. Samples were characterized and their photocatalytic activity was evaluated. Analysis showed that industrial wastes may be usefully reused to produce a new generation of sustainable, cheap and multifunctional novel building materials.

Settore CHIM/03 - Chimica Generale e InorganicaSettore ING-IND/22 - Scienza E Tecnologia Dei Materialireuse Industrial waste valorisation PhotocatalysisSettore CHIM/07 - Fondamenti Chimici delle TecnologieSettore ICAR/10 - Architettura TecnicaNanocomposite material Natural hydraulic lime Recycle &amp
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Preparation and photocatalytic activity of ZnO-SnO2, ZnO-ZnWO4 and SnO2-ZnO-ZnWO4 nanocomposites

2014

Settore CHIM/07 - Fondamenti Chimici Delle TecnologiePhotocatalysis ZnO nanocomposites Sol-gel Heterojunctions
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Printable Thermo- and Photo-stable Poly(D,L-lactide)/Carbon Nanodots Nanocomposites via Heterophase Melt-Extrusion Transesterification

2022

We propose for the first time an one-pot synthesis of carbon nanodots-poly(D,L-lactide) (CDs-PLA) nanocomposites, obtained by a simple reactive melt-extrusion process involving polar surface groups of multicolor CDs and ester bonds of PLA chains. Apart from providing an excellent method to produce polyester-coated CDs, our protocol allows obtaining perfect PLA@CDs blends giving rise to homogeneous extruded PLA@CDs filaments (ePLA@CDs) suitable for 3D printing applications (e.g., additive manufacturing for biomaterials and biodegradable encoded polymer ink technology). We demonstrate that ePLA@CDs filaments can be used to build a huge range of fluorescent objects with increasing architectura…

Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoGeneral Chemical EngineeringSettore FIS/01 - Fisica SperimentaleEnvironmental Chemistrycarbon dots polymer nanocompositesGeneral ChemistryIndustrial and Manufacturing EngineeringChemical Engineering Journal
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Sviluppo di spugne bioerodibili multifunzionali per la promozione di processi riparativi mediante il rilascio controllato di agenti antibiotici e ant…

2023

La salute delle strutture molli e dure del cavo orale è essenziale non solo per preservare le funzioni ad esse direttamente associate, ma anche per promuovere la salute generale dell’organismo. Tra le problematiche di maggiore interesse clinico a carico della cavità orale ritroviamo: i) le complicazioni post-operatorie che possono verificarsi a seguito di comuni avulsioni dentali che, se non trattate tempestivamente, possono sfociare in gravi parodontiti; ii) i fenomeni di osteonecrosi a carico di mascella e mandibola associate a trattamenti farmacologici nonché alla radioterapia; iii) il carcinoma orale a cellule squamose (OSCC) che è tra i più aggressivi tumori del collo e della testa, ca…

Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoSettore MED/28 - Malattie Odontostomatologicheoral disease polyphenols drug delivery system nanostructured lipid carrier nanocomposite polymeric microparticle spray drying 3D-printed scaffold wound healing controlled drug release kinetic evaluation.
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Mixed Numerical-Analytical Model for Predicting the Elastic Properties of Nanocomposites with Random Distribution of CNTs

2009

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineNumerical simulations Nanocomposites.
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Reinforcing effect of carbon nanotubes (CNT) on polymer nanocomposites – A numerical-analytical study

2012

A mixed model, numerical-analytical, is presented that allows one to predict the elastic properties of carbon nanotube (CNT)/polymer composites containing a random distribution of CNTs, while taking account of the curvature that they show when immersed in the polymer. This hybrid approach is a significant advance over micromechanical modeling and can be applied to all nanostructured composites.

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchinecarbon nanotubes nanocomposites numerical menthods
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