Search results for "ponit"

showing 10 items of 17 documents

Nanotechnology and earth construction: the mechanical properties of adobe brick stabilized by Laponite nanoparticles

2014

The contribution describes the experimental analysis for the improvement of the mechanical properties of samples of earth with the addition of Laponite nanoparticles. Were made two types of samples: the first consisting of soil, sand and water; the second consisting of soil, water, sand and Laponite nanoparticles. The operations performed were: chemical analysis of soil and sand; preparation of samples; Scanning Electron Microscope (SEM) observation of samples for the distribution of the elements, especially the Laponite nanoparticles; testing of compression strength and flexural strength of two types of samples; comparisons of the resulted of the mechanical tests. The improvement of the me…

Adobe laponite earth constructionSettore ICAR/12 - Tecnologia Dell'Architettura
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Polystyrene nanoparticles in the presence of (ethylene oxide)13(propylene oxide)30(ethylene oxide)13, N,N-dimethyloctylamine-N-oxide and their mixtur…

2008

Polystyrene nanoparticles were synthesized by emulsion polymerization of styrene. They were functionalized using the conventional surfactant N,N-dimethyloctylamine-N-oxide (ODAO), the tri-block copolymer (ethylene oxide)13(propylene oxide)30(ethylene oxide)13 (L64) and their mixtures. To this purpose, dynamic light scattering and calorimetric experiments were carried out and provided information consistent to each other. The L64 adsorption is Langmuir-type in the copolymer dilute regime and generates complex structures at larger concentrations. In the region where ODAO is in the unimeric state, the adsorption process is cooperative leading to hemi-micelle formation at the polystyrene nanopa…

Ethylene OxideMaterials scienceLightSurface PropertiesOxideGeneral Physics and AstronomyEmulsion polymerizationCalorimetryTRIBLOCK COPOLYMERSStyrenechemistry.chemical_compoundDynamic light scatteringAQUEOUS-SOLUTIONSPolymer chemistryCopolymerScattering RadiationPropylene oxideSURFACTANTSPhysical and Theoretical ChemistryStyreneEthylene oxideLAPONITE CLAYWaterOxidesOctanesHEAT-CAPACITIESSolutionsBLOCK-COPOLYMERSLATEXchemistryChemical engineeringNanoparticlesPolystyrenesMASS-ACTION MODELTHERMODYNAMIC PROPERTIESAdsorptionPolystyrenePhys. Chem. Chem. Phys.
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Tuning the Gelation of Aqueous Laponite Dispersions by means of Block Copolymers and their Homopolymers

2008

GelationBlock CopolymerHomopolymersAqueous Laponite Dispersion
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Darstellung und Zerfall von tertiären Hyponitriten

1971

Dicumylhyponitrit (1a), substituierte Dicumylhyponitrite (1b1f) (p-Br, p-Cl, p-CH3, m-CH3, p-CH3O), Bis-[1.1-diphenyl-athyl]-hyponitrit (1h) und Bis-[1.1-dimethyl-pentyl]-hyponitrit (1g) wurden dargestellt. Die tertiaren Hyponitrite zerfallen bereits rasch bei-40 in Stickstoff und freie Alkoxyradikale, die dann zu den entsprechenden Alkoholen und Ketonen weiter reagieren. Die relativen Reaktivitaten von tert.-Butyloxy-und Cumyloxyradikalen hinsichtlich Wasserstoffabstraktion und β-Spaltung wurden fur verschiedene Losungsmittel bestimmt; Cumyloxyradikale neigen starker zur β-Spaltung als tert-Butyloxyradikale. Die freien Alkoxyradikale konnen Polymerisations- und Autoxydationsreaktionen init…

Inorganic Chemistrychemistry.chemical_compoundAutoxidationHyponitritePolymerizationChemistryRadicalPolymer chemistryAlkoxy groupDecompositionChemische Berichte
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Synthesis, characterization and study of covalently modified triazole LAPONITE® edges

2020

Abstract LAPONITE® (Lap) clay mineral was successful functionalized by triazole groups in a two steps procedure. First, the Lap edges were modified with 3-azidopropyltrimethoxysilane by traditional heating and microwave irradiation. Microwave irradiation allowed us to obtain high loading onto the Lap edges in lower times compared to those obtained through conventional method. Afterwards, the triazole moieties were obtained by reaction between azido functionalized Lap and propargyl alcohol. The successful functionalization of Lap was proved by thermogravimetric analysis, FT-IR spectroscopy, dynamic light scattering and ζ-potential measurements. Finally, the effects of the surface modificatio…

LAPONITE® Covalent modification Triazole moieties HydrogelThermogravimetric analysisMaterials scienceTriazole020101 civil engineeringGeology02 engineering and technologySettore CHIM/06 - Chimica OrganicaPropargyl alcohol021001 nanoscience & nanotechnology0201 civil engineeringlaw.inventionchemistry.chemical_compoundchemistryChemical engineeringDynamic light scatteringOptical microscopeGeochemistry and PetrologylawCovalent bondSurface modification0210 nano-technologySpectroscopySettore CHIM/02 - Chimica Fisica
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Enhancement of adsorption ability of calcium alginate gel beads towards Pd(II) ion. A kinetic and equilibrium study on hybrid Laponite and Montmorill…

2015

Abstract The adsorption ability of hybrid Montmorillonite and Laponite–calcium alginate gel beads towards Pd 2 + ion was studied in the pH range 2–4, in pure water and in aqueous NaCl solution at I = 0.01 mol L − 1 and T = 25 °C. The pseudo second order kinetic equation and the Langmuir and Freundlich isotherms were used to fit the kinetic and thermodynamic experimental data. A comparison of the results already published on the adsorption capacity of calcium alginate gel beads at the same experimental conditions was made. Enhancement of palladium(II) adsorption by alginate beads with the addition of the two clay minerals was obtained, with increments higher than 50% of Pd(II) ion recovered/…

LangmuirAqueous solutionCalcium alginateInorganic chemistrychemistry.chemical_elementGeologyIonchemistry.chemical_compoundAdsorptionMontmorillonitechemistryChemical engineeringGeochemistry and PetrologyAlginate gel beadSettore CHIM/01 - Chimica AnaliticaFreundlich equationAdsorptionLaponiteSequestering ability.Palladium(II) ionMontmorillonitePalladiumApplied Clay Science
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Small Angle Neutron Scattering, X-ray Diffraction, Differential Scanning Calorimetry, and Thermogravimetry Studies to Characterize the Properties of …

2009

Nanocomposites based on laponite RD and (ethylene oxide)98(propylene oxide)67(ethylene oxide)98 (F127)triblock copolymer or poly(ethylene) glycol 2000 (PEG2000) were prepared by using the melting method. Small-angle neutron scattering and the X-ray diffraction experiments provided insights into the organization of the laponite RD dispersed in the macromolecular matrix over a wide length scale. SANS data analysis by means of a fractal law evidenced the formation of clusters of laponite RD at long correlation distance. The single laponite RD particles and the lamellar structure of F127 were described in the shorter length scale. Finally, the crystalline structure of the macromolecule was obse…

Length scaleTGAMaterials scienceEthylene oxidenanocompositepoly(ethylene oxide)poly(propylene oxide)poly(ethylene oxide)SANSXRDAnalytical chemistrypoly(ethylene)glycol 2000laponite RDNeutron scatteringSmall-angle neutron scatteringSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDSCThermogravimetrychemistry.chemical_compoundGeneral EnergyDifferential scanning calorimetrychemistryX-ray crystallographyLamellar structurePhysical and Theoretical Chemistry
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Multifunctional Carrier Based on Halloysite/Laponite Hybrid Hydrogel for Kartogenin Delivery

2018

[Image: see text] A novel carrier system based on halloysite nanotubes (HNT), for the potential intraarticular delivery of kartogenin (KGN) by means laponite (Lap) hydrogel (HNT/KGN/Lap), is developed. The drug was first loaded into HNT, and the hybrid composite obtained was used as filler for laponite hydrogel. Both the filler and the hydrogel were thoroughly investigated by several techniques and the hydrogel morphology was imaged by transmission electron microscopy. Furthermore, the gelating ability of laponite in the presence of the filler and the rheological properties of the hybrid hydrogel were also investigated. The kinetic release of kartogenin from HNT and HNT/Lap hybrid hydrogel …

Materials scienceCarrier system010405 organic chemistryOrganic ChemistryComposite numbertechnology industry and agricultureSettore CHIM/06 - Chimica Organicamacromolecular substancesengineering.materialcomplex mixtures01 natural sciencesBiochemistryHalloysite0104 chemical sciencesKartogenin010404 medicinal & biomolecular chemistryHalloysite nanotubes kartogenin hybrid laponite hydrogelChemical engineeringDrug DiscoveryengineeringSettore CHIM/02 - Chimica FisicaACS Medicinal Chemistry Letters
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Dispersions of nanosilica in biocompatible copolymers

2010

Dispersions of nanosilica in matrices of biocompatible copolymers were prepared by melt blending. Copolymers with variable molecular size at fixed hydrophilic/hydrophobic ratio and nanosilicas with different interfacial areas were studied. For comparison, a nanoclay was also investigated. The interfacial area played a relevant role in conferring peculiar properties on the nanohybrids. Amazingly, the macromolecule adsorbed on the nanosilica surface maintains some crystallinity which was quantitatively evaluated. In contrast, all the macromolecule anchored to the nanoclay surface is amorphous. The change of the crystalline state was reflected in the dielectric and the electrical conductivity …

Materials scienceNanocompositePolymers and PlasticsPoloxamerCondensed Matter PhysicsMicrostructureAmorphous solidCrystallinityPluronics Nanosilica Laponite RD Crystallinity Morphology Thermal stabilityMechanics of MaterialsMaterials ChemistryCopolymerThermal stabilityComposite materialMacromoleculeSettore CHIM/02 - Chimica Fisica
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Pillar[5]arene-Diketopyrrolopyrrole Fluorescent Copolymer: A Promising Recognition and Adsorption Material for Adiponitrile by Selective Formation of…

2017

Conjugated pillar[5]arene-diketopyrrolopyrrole copolymer (P1) is synthesized by the copolymerization of a difunctionalized pillar[5]arene and a diketopyrrolopyrrole-based monomer, which shows large extinction coefficients (1.1 × 104 m-1 cm-1 ) at 519 nm and strong emission at 587 nm. P1 exhibits very strong host-guest binding affinity towards adiponitrile but low binding affinity towards 1,4-dihalobutane and 1,4-bis(imidazol-1-yl)butane. Such an enhanced selectivity is first found in the polypseudorotaxane between pillararene and neutral guests in organic solution and is successfully used for the recognition and adsorption of adiponitrile by the formation of a P1-adiponitrile polypseudorota…

Materials scienceRotaxanesPolymers and PlasticsPolymers010405 organic chemistryOrganic ChemistryButaneConjugated systemPillararene010402 general chemistryAdiponitrile01 natural sciencesFluorescence0104 chemical scienceschemistry.chemical_compoundAdsorptionMonomerchemistryNitrilesPolymer chemistryMaterials ChemistryCopolymerAdsorptionMacromolecular Rapid Communications
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