Search results for "polymeerikemia"

showing 5 items of 5 documents

Highly selective recovery of Ni(II) in neutral and acidic media using a novel Ni(II)-ion imprinted polymer

2022

In this work, an original ion-imprinted polymer (IIP) was synthetized for the highly selective removal of Ni(II) ions in neutral and acidic media. First a novel functional monomer (AMP-MMA) was synthetized through the amidation of 2-(aminomethyl)pyridine (AMP) with methacryloylchloride. Following Ni(II)/AMP-MMA complex formation study, the Ni(II)-IIP was produced via inverse suspension polymerization (DMSO in mineral oil) and characterized with solid state 13C CPMAS NMR, FT-IR, SEM and nitrogen adsorption/desorption experiments. The Ni(II)-IIP was then used in solid-phase extraction of Ni(II) exploring a wide range of pH (from neutral to strongly acidic solution), several initial concentrat…

Ionsporous polymerSolid-phase extractionEnvironmental EngineeringPolymersHealth Toxicology and Mutagenesis116 Chemical sciencesPorous polymerpolymeerikemiaPollutionAdenosine Monophosphate2-(aminomethyl)pyridinenickelNickelSpectroscopy Fourier Transform InfraredEnvironmental Chemistrysolid-phase extractionpolymeeritnikkeliWaste Management and DisposalCadmiumJournal of Hazardous Materials
researchProduct

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
researchProduct

Organic Polyradicals as Redox Mediators: Effect of Intramolecular Radical Interactions on Their Efficiency

2020

The spin–spin interactions between unpaired electrons in organic (poly)radicals, especially nitroxides, are largely investigated and are of crucial importance for their applications in areas such as organic magnetism, molecular charge transfer, or multiple spin labeling in structural biology. Recently, 2,2,6,6-tetramethylpiperidinyloxyl and polymers functionalized with nitroxides have been described as successful redox mediators in several electrochemical applications; however, the study of spin–spin interaction effect in such an area is absent. This communication reports the preparation of a novel family of discrete polynitroxide molecules, with the same number of radical units but differe…

Materials scienceRedox mediatorsRadical02 engineering and technology010402 general chemistryPhotochemistryElectrochemistry01 natural sciencesRedoxlaw.inventiontitanatraneslawTitanatranesnitroxidesspin−spin interactionsMoleculeSettore CHIM/01 - Chimica AnaliticaGeneral Materials SciencepolymeeritElectron paramagnetic resonanceElectrochemical potentialSpin−spin interactionsNitroxides; Redox mediators; Spin−spin interactions; TEMPO; Titanatranes; μ-oxo complexesNitroxidesSettore CHIM/06 - Chimica Organicapolymeerikemia021001 nanoscience & nanotechnologysähkökemia0104 chemical sciencesredox mediatorsμ-oxo complexesUnpaired electronIntramolecular forceorgaaninen kemiaspin-spin interactionsCondensed Matter::Strongly Correlated Electrons0210 nano-technologyTEMPOResearch ArticleACS Applied Materials & Interfaces
researchProduct

Märkälujaliimojen määritys pyrolyysi-kaasukromatografi-massaspektrometrillä

2017

Polymeerien, kuten märkälujaliimojen, analysoiminen on ollut nykyisillä menetelmillä erittäin työlästä tai hidasta. Pyrolyysi edustaa kuitenkin menetelmää, jolla esikäsittely ja aika saadaan minimiin. Menetelmässä näyte pilkotaan pienemmiksi yhdisteiksi, jolloin näyte saadaan helpommin analysoitavaan muotoon. Yleisimmin pyrolyysiä käytetään yhdessä kaasukromatografian kanssa. Työn kirjallisessa osassa perehdyttiin yleisimpien märkälujaliimojen valmistukseen, rakenteisiin ja ominaisuuksiin. Kirjallisuuskatsauksessa käytiin myös läpi pyrolyysin periaatteet, sovellukset sekä kartongin ja eräiden märkälujaliimojen pyrolyysituotteet. Lisäksi työssä perehdyttiin typpimäärityksiin. Työn kokeellise…

glyoksaalipolyakryyliamidimelamiiniformaldehydimassaspektrometriakitosaaniliimatkaasukromatografiapyrolyysianalyysipolymeerikemiakuivatislausbiopolymeeritmärkälujaliimatureaformaldehydipolyaminoamidiepikloorihydriinikemiallinen analyysipyrolyysi
researchProduct

Rigid biobased polycarbonates with good processability based on a spirocyclic diol derived from citric acid

2020

Introducing biobased polymers from renewable sources for use as high-performance thermoplastics with high demands on mechanical rigidity, transparency, thermal stability, as well as good processability, is a significant challenge. In the present work we have designed and prepared a rigid biobased bis-spirocylic diol by di-cycloketalization of a bicyclic diketone (cis-bicyclo[3.3.0]octane-3,7-dione, obtained from citric acid) using trimethylolpropane. This spiro-diol monomer has two reactive primary hydroxyl groups and the synthesis from inexpensive biobased starting materials is straightforward and readily upscalable, involving no chromatographic purification. In order to explore the useful…

kestomuovibiomuovipolymeerikemiapolymeerit
researchProduct