Search results for "SURFACE MODIFICATION"

showing 10 items of 417 documents

Blend scaffolds with polyaspartamide/polyester structure fabricated via TIPS and their RGDC functionalization to promote osteoblast adhesion and prol…

2019

Target of this work was to prepare a RGDC functionalized hybrid biomaterial via TIPS technique to achieve a more efficient control of osteoblast adhesion and diffusion on the three-dimensional (3D) scaffolds. Starting from a crystalline poly(l-lactic acid) (PLLA) and an amorphous alpha,beta-poly(N-2-hydroxyethyl) (2-aminoethylcarbamate)-d,l-aspartamide-graft-polylactic acid (PHEA-EDA-g-PLA) copolymer, blend scaffolds were characterized by an appropriate porosity and pore interconnection. The PHEA-EDA-PLA interpenetration with PLLA improved hydrolytic susceptibility of hybrid scaffolds. The presence of free amino groups on scaffolds allowed to tether the cyclic RGD peptide (RGDC) via Michael…

Materials sciencePolyesters0206 medical engineeringBiomedical EngineeringBiocompatible Materialscyclic RGDC02 engineering and technologyPeptides CyclicPLLACell LineBiomaterialsMiceHydrolysischemistry.chemical_compoundCell AdhesionCopolymerAnimalsCell adhesionMaleimideporous scaffoldCell ProliferationOsteoblastsTissue ScaffoldsMetals and AlloysBiomaterialPHEA021001 nanoscience & nanotechnology020601 biomedical engineeringPolyesterChemical engineeringchemistryCeramics and CompositesMichael reactionSurface modificationTIPSPeptides0210 nano-technology
researchProduct

Blends of nylon 6 with a polyethylene functionalized by photooxidation

1990

An easy and cheap method to prepare functionalized polyethylene is reported in which polyethylene is photooxidized and then melt-blended with nylon. Structural, rheological, and mechanical modifications indicate that carbonyl, formed during photooxidation, and amine groups react giving rise to copolymers which stabilize the blends. Photooxidized polyethylene from waste could be very effective in preparing polyethylene/polyamide blends with improved properties. This new approach improves over current methods in which compatibilization of polyolefines and polyamides is mostly performed by reacting functionalized polyolefines with polyamides in molten state. The functionalization is achieved b…

Materials sciencePolymers and PlasticsChemical modificationGeneral ChemistryCompatibilizationPolyethyleneSurfaces Coatings and Filmschemistry.chemical_compoundNylon 6chemistryPolyamidePolymer chemistryMaterials ChemistryCopolymerSurface modificationMelt flow indexJournal of Applied Polymer Science
researchProduct

Material valorisation of amorphous polylactide. Influence of thermo-mechanical degradation on the morphology, segmental dynamics, thermal and mechani…

2012

[EN] This paper reports the effects of multiple mechanical recycling on the structure and properties of amorphous polylactide (PLA). The influence of the thermo-mechanical degradation induced by means of five successive injection cycles was initially addressed in terms of macroscopic mechanical properties and surface modification. A deeper inspection on the structure and morphology of PLA was associated to the thermal properties and viscoelastic behaviour. Although FT-IR analysis did not show significant changes in functional groups, a remarkable reduction in molar mass was found by viscometry. PLA remained amorphous throughout the reprocessing cycles, but the occurrence of a cold-crystalli…

Materials sciencePolymers and PlasticsMechanical propertiesViscoelasticityThermo-mechanical degradationThermodynamic propertiesDegradationSegmental dynamicsCold-crystallizationMaterials ChemistryMechanical recyclingRecyclingComposite materialMaterialsMolar massTermoplàsticsViscometerDynamic mechanical analysisCondensed Matter PhysicsMaterial valorisationAmorphous solidDynamicsPolylactide (PLA)Mechanics of MaterialsPolylactidesMAQUINAS Y MOTORES TERMICOSFunctional groupsSurface modificationRelaxation (physics)Degradation (geology)
researchProduct

Multi-functional polyhedral oligomeric silsesquioxane-functionalized carbon nanotubes for photo-oxidative stable Ultra-High Molecular Weight Polyethy…

2016

Abstract Nanohybrid (phPOSS- f -CNTs) based on Carbon Nanotubes (CNTs) and Phenyl Polyhedral Olygomenric Silsesquioxane (phPOSS) have been synthesized to be used as multifunctional filler for polymer nanocomposites. The success of the functionalization procedure has been demonstrated via accurate spectroscopic, spectrometric and thermo-gravimetric analyses. The results reveal that a large portion of phPOSS is covalently linked to CNTs, while a small amount of phPOSS remains physically adsorbed due to the strong interactions coming from π electron coupling between the CNTs and phenyl rings in phPOSS. Small amounts (1 wt.%) of phPOSS- f -CNTs have been dispersed in Ultra High Molecular Weight…

Materials sciencePolymers and PlasticsPolymer nanocompositeCarbon NanotubeUHMWPEPOSS Carbon Nanotubes Functionalization UHMWPE Photo-oxidation resistanceGeneral Physics and Astronomy02 engineering and technologyCarbon nanotube010402 general chemistry01 natural scienceslaw.inventionPhysics and Astronomy (all)chemistry.chemical_compoundlawMaterials ChemistryMoleculeComposite materialFunctionalizationPOSSUltra-high-molecular-weight polyethylenePolymers and PlasticNanocompositeOrganic ChemistryCarbon Nanotubes; Functionalization; Photo-oxidation resistance; POSS; UHMWPE; Physics and Astronomy (all); Polymers and Plastics; Organic ChemistryPhoto-oxidation resistance021001 nanoscience & nanotechnologySilsesquioxane0104 chemical scienceschemistryChemical engineeringCovalent bondSurface modificationCarbon Nanotubes0210 nano-technologyEuropean Polymer Journal
researchProduct

Transition to Reinforced State by Percolating Domains of Intercalated Brush-Modified Cellulose Nanocrystals and Poly(butadiene) in Cross-Linked Compo…

2013

The classic nanocomposite approach aims at percolation of low fraction of exfoliated individual reinforcing nanoscale elements within a polymeric matrix. By contrast, many of the mechanically excellent biological nanocomposites involve self-assembled and space-filled structures of hard reinforcing and soft toughening domains, with high weight fraction of reinforcements. Here we inspect a new concept toward mimicking such structures by studying whether percolation of intercalated domains consisting of alternating rigid and reinforcing, and soft rubbery domains could allow a transition to a reinforced state. Toward that, we present the functionalization of rigid native cellulose nanocrystals …

Materials sciencePolymers and PlasticsSurface PropertiesUltraviolet RaysComposite numberta221NanoparticleBioengineering02 engineering and technology010402 general chemistryElastomer01 natural sciencesNanocompositesBiomaterialsTensile StrengthButadienesMaterials ChemistrySulfhydryl CompoundsComposite materialCelluloseta116ta218Nanocompositeta214ta114021001 nanoscience & nanotechnology0104 chemical sciencesElastomersNanocrystalPercolationMicroscopy Electron ScanningClick chemistryNanoparticlesSurface modificationClick Chemistry0210 nano-technologyBiomacromolecules
researchProduct

ePTFE functionalization for medical applications

2021

Abstract Polytetrafluoroethylene (PTFE) is a ubiquitous material used in implants and medical devices in general due to its high biocompatibility and inertness; blood vessels, heart, jawbone, nose, eyes, or abdominal wall can benefit from its properties in the case of disease or injury. Its expanded version, ePTFE, is an improved version of PTFE with better mechanical properties, which extend its medical applications. However, ePTFE implants often lack improvement in properties such as antibacterial, antistenosis, or tissue integration properties. Improvements in these properties by several strategies of functionalization for medical purposes are discussed in this review. Covalent and non-c…

Materials sciencePolytetrafluoroethylenePolymers and PlasticsBiocompatibilityCell seedingTissue integration02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCatalysis0104 chemical sciencesElectronic Optical and Magnetic MaterialsBiomaterialschemistry.chemical_compoundColloid and Surface ChemistrychemistryMaterials ChemistrySurface modification0210 nano-technologyBiomedical engineeringMaterials Today Chemistry
researchProduct

Nonthrombogenic, Biodegradable Elastomeric Polyurethanes with Variable Sulfobetaine Content

2014

For applications where degradable polymers are likely to have extended blood contact, it is often important for these materials to exhibit high levels of thromboresistance. This can be achieved with surface modification approaches, but such modifications may be transient with degradation. Alternatively, polymer design can be altered such that the bulk polymer is thromboresistant and this is maintained with degradation. Toward this end a series of biodegradable, elastic polyurethanes (PESBUUs) containing different zwitterionic sulfobetaine (SB) content were synthesized from a polycaprolactone-diol (PCL-diol):SB-diol mixture (100:0, 75:25, 50:50, 25:75 and 0:100) reacted with diisocyanatobuta…

Materials sciencePolyurethanesThrombogenicityBiocompatible MaterialsElastomerFibrinolytic AgentsHardnessTensile StrengthUltimate tensile strengthPolymer chemistryAbsorbable ImplantsMaterials TestingAnimalsGeneral Materials ScienceBlood Coagulationchemistry.chemical_classificationbiodegradable polyurethane sulfobetaine cardiovascular thromboresistance vascular graft zwitterionPolymerBiodegradationElectrospinningBetainechemistryChemical engineeringSurface modificationDegradation (geology)Cattle
researchProduct

Fast Polymeric Functionalization Approach for the Covalent Coating of MoS2 Layers

2021

We present the covalent coating of chemically exfoliated molybdenum disulfide (MoS2) based on the polymerization of functional acryl molecules. The method relies on the efficient diazonium anchoring reaction to provoke the in situ radical polymerization and covalent adhesion of functional coatings. In particular, we successfully implement hydrophobicity on the exfoliated MoS2 in a direct, fast, and quantitative synthetic approach. The covalent functionalization is proved by multiple techniques including X-ray photoelectron spectroscopy and TGA-MS. This approach represents a simple and general protocol to reach dense and homogeneous functional coatings on 2D materials.

Materials scienceRadical polymerizationAdhesionMetalls de transicióengineering.materialchemistry.chemical_compoundchemistryCoatingChemical engineeringPolymerizationCovalent bondengineeringSurface modificationMoleculeGeneral Materials ScienceMaterialsMolybdenum disulfideACS Applied Materials & Interfaces
researchProduct

Synthesis of Au-CdS@CdSe Hybrid Nanoparticles with a Highly Reactive Gold Domain.

2017

We propose a novel route to synthesize semiconductor–gold hybrid nanoparticles directly in water, resulting in much larger gold domains than previous protocols (up to 50 nm) with very reactive surfaces which allow further functionalization. This method advances the possibility of self-assembly into complex structures with catalytic activity toward the reduction of nitro compounds by hydrides. The large size of these gold domains in hybrid particles supports efficient light scattering at the plasmon resonance frequency, making such structures attractive for single-particle studies.

Materials scienceReduction of nitro compoundsNanoparticleNanotechnology02 engineering and technologySurfaces and Interfaces010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesLight scattering0104 chemical sciencesDomain (software engineering)CatalysisElectrochemistrySurface modificationGeneral Materials ScienceSurface plasmon resonance0210 nano-technologySpectroscopyLarge sizeLangmuir : the ACS journal of surfaces and colloids
researchProduct

Anti-bacterial activity of graphene oxide as a new weapon nanomaterial to combat multidrug-resistance bacteria.

2016

Antibiotic resistance in microbial pathogens has become a serious health problem in the world. The increasing spread of hospital acquired infections especially in immunocompromised and cancer patients caused by multidrug-resistant (MDR) microbial pathogens is restricting the choices for impressive antibiotic therapy. So many efforts have been made to develop new compounds with antimicrobial activity. In recent years, nanoparticles, particularly graphene oxide (GO) nanoparticles have found many applications in various fields, including antibacterial action, pathogens bio detection, cancer therapy, and drug and gene delivery. The use of graphene oxide as an antibacterial agent for the treatme…

Materials scienceSilverBiocompatibilityBioengineeringNanotechnology02 engineering and technology010402 general chemistryGram-Positive Bacteria01 natural sciencesNanomaterialslaw.inventionNanocompositesBiomaterialsAntibiotic resistancelawDrug Resistance Multiple BacterialGram-Negative BacteriaAntibacterial agentTitaniumGrapheneOxides021001 nanoscience & nanotechnologyAntimicrobial0104 chemical sciencesAnti-Bacterial AgentsMultiple drug resistanceMechanics of MaterialsSurface modificationGraphiteZinc Oxide0210 nano-technologyCopperMaterials scienceengineering. C, Materials for biological applications
researchProduct