Search results for "pvdf"

showing 10 items of 15 documents

Lithium ion conducting PVdF-HFP composite gel electrolytes based on N-methoxyethyl-N-methylpyrrolidinium bis(trifluoromethanesulfonyl)-imide ionic li…

2010

Blends of PVDF-HFP and ionic liquids (ILs) are interesting for application as electrolytes in plastic Li batteries. They combine the advantages of the gel polymer electrolytes (GPEs) swollen by conventional organic liquid electrolytes with the nonflammability, and high thermal and electrochemical stability of ILs. In this work we prepare and characterize PVDF-HFP composite membranes swollen with a solution of LiTFSI in ether-functionalized pyrrolidinium-imide (PYRA12O1). The membranes are filled in with two different types of silica: i) mesoporous SiO2 (SBA-15) and a commercial nano-size one (HiSilTM T700). The ionic conductivity and the electrochemical properties of the gel electrolytes ar…

Materials sciencePVdFEnergy Engineering and Power TechnologyIonic bondingchemistry.chemical_elementElectrolyteIonic liquidchemistry.chemical_compoundIonic conductivityThermal stabilityElectrical and Electronic EngineeringPhysical and Theoretical ChemistryGel polymer electrolyteSettore CHIM/02 - Chimica FisicaChromatographyRenewable Energy Sustainability and the EnvironmentPVdF; Ionic liquids; Pyrrolidinium; Gel polymer electrolytes; Lithium battery; Nanoscale fillersLithium batteryLithium batteryMembraneSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiChemical engineeringchemistryIonic liquidLithiumNanoscale fillerNanoscale fillersPyrrolidinium
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HARVESTING DALLE PRECIPITAZIONI

2013

Settore ING-IND/31 - ElettrotecnicaEnergy harvesting piezoelectric materials PVDF
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Utilization of Poly(vinylchloride) and Poly(vinylidenefluoride) as Macroinitiators for ATRP Polymerization of Hydroxyethylmethacrylate. Electroanalyt…

2015

The utilization of poly(vinylchloride) (PVC) and poly(vinylidenefluoride) (PVDF) as macroinitiators for atom transfer radical polymerization (ATRP) of hydroxyethylmethacrylate (HEMA) was studied performing electroanalytical investigations and “grafting from” experiments in order to achieve information on the possibility of modifying such commercial polymers by this controlled free radical polymerization technique. This study was performed changing various operating parameters such as the nature of the copper salt, the ligand, the solvent, the temperature and the reaction time. Electroanalytical data suggest that PVC can be easily activated by both CuCl/ Tris(2-pyridylmethyl)amine (TPMA) and…

Polymers and PlasticsOrganic ChemistryPVDF(Hydroxyethyl)methacrylateATRPPVCchemistry.chemical_compoundchemistryPolymerizationElectroanalytical measurementPolymer chemistryMaterials ChemistryCopolymergrafting from
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Advancements in Sustainable PVDF Copolymer Membrane Preparation Using Rhodiasolv® PolarClean As an Alternative Eco-Friendly Solvent

2021

In this work, Rhodiasolv® PolarClean was employed as a more sustainable solvent for the preparation of poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) flat sheet membranes via phase inversion technique by coupling vapour induced phase separation (VIPS) and non-solvent induced phase separation (NIPS) processes. Preliminary calculations based on Hansen solubility parameters well predicted the solubilization of the polymer in the selected solvent. The effect of exposure time on humidity and the influence of polyethylene glycol (PEG), polyvinyl pyrrolidone (PVP) and sulfonated polyether sulfone (S-PES) on membrane properties and performance, were evaluated. Three different coagulation …

Materials scienceMicrofiltrationUltrafiltrationEnvironmental engineeringPolyethylene glycolPVDF-HFP membrane preparationEnvironmental technology. Sanitary engineeringchemistry.chemical_compoundvihreä kemiaPolarCleanPhase inversion (chemistry)green solventsTD1-1066chemistry.chemical_classificationkalvot (tekniikka)General EngineeringmuovitekniikkaPolymerpolymeerikemiaTA170-171SolventHildebrand solubility parameterMembranechemistryChemical engineeringliuottimet
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ENERGIA ELETTRICA DALLE PRECIPITAZIONI

2013

Settore ING-IND/31 - Elettrotecnicaenergy harvesting piezoelectric materials PVDF.
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Resource or waste? A perspective of plastics degradation in soil with a focus on end-of-life options.

2018

‘Capable-of-being-shaped’ synthetic compounds are prevailing today over horn, bone, leather, wood, stone, metal, glass, or ceramic in products that were previously left to natural materials. Plastic is, in fact, economical, simple, adaptable, and waterproof. Also, it is durable and resilient to natural degradation (although microbial species capable of degrading plastics do exist). In becoming a waste, plastic accumulation adversely affects ecosystems. The majority of plastic debris pollutes waters, accumulating in oceans. And, the behaviour and the quantity of plastic, which has become waste, are rather well documented in the water, in fact. This review collects existing information on pla…

PLA polylactic acidPS polystyreneETS European Emissions Trading schemePOM polyoxymethyleneHMC heat melt compactor technology02 engineering and technology010501 environmental sciencesNHV net habitable volumeLDPE low-density polyethylene01 natural sciencesPC polycarbonateResin identification codeLCP liquid crystal polymerslcsh:Social sciences (General)PAC pro-oxidant additive containingPET polyethylene terephthalateEPR Extended Producers ResponsibilityMultidisciplinaryWaste managementNatural materials021001 nanoscience & nanotechnologyPU or PUR polyurethaneSettore AGR/02 - Agronomia E Coltivazioni ErbaceeEPS expandable polystyreneRIC resin identification codeSettore AGR/14 - PedologiaPVDF polydifluoroethylenelcsh:H1-990210 nano-technologyBiogeoscienceGPPS Polystyrene (General Purpose)PVC polyvinyl chlorideResource (biology)Polymethyl methacrylatePA polyamidePBT polybutylene terephthalatePSU polyarylsulfonePTFE polytetrafluoroethylenePMMA polymethyl methacrylatePHA polyhydroxyalkanoateMicrobiologyPEEK polyaryletheretherketoneArticleEnvironmental scienceEnvironmental science Biogeoscience Industry MicrobiologyPPA polyphthalamideTPE thermoplastic polyester elastomerNatural degradationIndustryPPS polyphenylene sulphidelcsh:Science (General)ABS acrylonitrile-butadiene-styrene0105 earth and related environmental sciencesbusiness.industryPP polypropyleneHDPE high-density polyethyleneBPA bisphenol AHBCD hexabromocyclododecaneFuture studyAgricultureDOM dissolved organic matterDegradation (geology)Environmental sciencebusinesslcsh:Q1-390Heliyon
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Rainfall energy harvester

2015

This chapter provides a detailed study on the harvest of the energy contained in raindrops by means of piezoelectric transducers. The energy harvester has the role of an electric source, able to recharge storage devices of small electronic components, such wireless sensors, by using the vibrational energy released by the drops hitting the transducer, reducing in such a way the chemical waste of conventional batteries. In technical literature, diverse studies agree on the level of suitable generated voltage on the electrodes of a piezoelectric transducer subjected to rainfall, but a complete characterization on the supplied power is still missing. This work, also to limit optimistic forecast…

HydrologySettore ING-IND/31 - ElettrotecnicaEnvironmental scienceEnergy harvester piezoelectric effect lead zirconate titanate PZT polyvinylidene difluoride PVDF cantilever structureSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciEnergy harvester
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Modification of PVDF nanoparticles by controlled free radical graft copolymerization in supercritical carbon dioxide

2014

PVDF (polyvinylidenefluoride) membranes are widely used in microfiltration (MF) and ultrafiltration (UF) due to their excellent processability, chemical resistance, well-controlled porosity, and good thermal properties [1]. Moreover this polymer is also frequently adopted in bio-medical devices owing to its good biocompatibility [2]. On the other hand, the use of PVDF membranes in biomedical applications is limited to some extent by the hydrophobicity of their exposed area, which mainly arises from the nature of the pore surface. Prompted by these considerations in the present work we have studied the modification of PVDF nanoparticles with hydroxyethylmethacrylate (HEMA) thus obtaining a m…

pvdf nanoparticles supercritical carbon dioxide
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SVILUPPO DI UN SISTEMA DI ENERGY HARVESTING DALLA PIOGGIA

2014

Settore ING-IND/31 - ElettrotecnicaEnergy Harvesting Piezoelectric transducers PVDF
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Transport of amino acids through liquid membranes supported on novel poly(vinylidenefluoride) porous flat-sheet matrix

1997

Flat-sheet membranes from poly(vinylidenefluoride) (PVDF) were prepared by the phase inversion process. LiCl was used as a modifying agent. The porosity, maximum pore size and LEPW (liquid entry pressure of water) were determined. Three types of these membranes were tested as a support for n-decanol supported liquid membranes (SLM). Transport of eight amino acids, selected to cover a wide variety of side chains, and of phenylalanine methyl ester through n-decanol SLM were studied. The ability of amino acids to permeates through these membranes depends on the type of flat-sheet PVDF used as a support. An increase in porosity and pore size of the microporous matrix resulted in an increase of …

chemistry.chemical_classificationGeneral Chemical EngineeringGeneral ChemistryMicroporous materialPVDF flat-sheetAmino acidMatrix (chemical analysis)membrane stabilityMembraneFlux (metallurgy)chemistryChemical engineeringSide chainOrganic chemistrysupported liquid membranePhase inversion (chemistry)amino acids transportPorosity
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