Search results for "ionic liquids"

showing 10 items of 186 documents

Supported Poly(Ionic Liquid)-Heteropolyacid Based Materials for Heterogeneous Catalytic Fructose Dehydration in Aqueous Medium

2022

Two sets of four different supported catalyst materials were prepared. One set was obtained by polymerization of a bis-vinylimidazolium salt, which formed a poly(ionic liquid) coating on SiO2, TiO2, boron nitride BN, and carbon nitride C3N4. The other set was, instead, obtained by immobilizing Keggin heteropolyacid H3PW12O40 onto poly-imidazolium functionalized materials. All the catalysts, including the bare supports, were subjected to physical and chemical characterization by XRD, SEM, Specific Surface Area and pore size measurements, TGA, FTIR, and acidity-basicity measurements. The catalytic activity of the materials was tested versus the fructose dehydration in water solution at two di…

fructose dehydrationDehydrationOrganic ChemistryWaterPharmaceutical ScienceFructoseSettore CHIM/06 - Chimica OrganicaSilicon DioxideheteropolyacidCatalysisAnalytical Chemistryionic liquidsChemistry (miscellaneous)Drug DiscoveryHumansMolecular MedicineFuraldehydeHybrid materialsSettore CHIM/07 - Fondamenti Chimici Delle TecnologiePhysical and Theoretical ChemistryHybrid materials; ionic liquids; heteropolyacid; fructose dehydration
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C60-TEMPO-IL hybrid: “release and catch” organocatalyst for the oxidation of alcohols

2014

fullerene ionic liquids alcohol oxidation 2266-tetramethylpiperidine 1-oxyl
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Supramolecular Hydro- and Ionogels: A Study of Their Properties and Antibacterial Activity.

2017

Diimidazolium-based organic salts, bearing peptides or amino acids as anions have been synthesised and tested for their gelling ability in biocompatible solvents. These low molecular weight salts were successfully used as gelators in phosphate buffered saline (PBS) solution and ionic liquids. Then, the properties of the obtained soft materials were analysed in terms of melting temperature and gel strength as accounted for by rheological investigations. The gel-phase formation was studied by using UV/Vis and resonance light scattering measurements, whereas the morphology of the soft materials was analysed by using polarised optical microscopy and scanning electron microscopy. To get informat…

gelantibacterial activity; gels; hydrogels; ionic liquids; ionogels; Chemistry (all)Scanning electron microscopeSupramolecular chemistryIonic Liquids02 engineering and technologyMicrobial Sensitivity Tests010402 general chemistryGram-Positive Bacteria01 natural sciencesCatalysischemistry.chemical_compoundRheologyantibacterial activityX-Ray DiffractionPhase (matter)Gram-Negative BacteriaOrganic chemistryThermal stabilityhydrogelsionic liquidOrganic ChemistryChemistry (all)ImidazolesGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesAnti-Bacterial AgentsionogelchemistryChemical engineeringionogelsSelf-healing hydrogelsIonic liquidMicroscopy Electron ScanningSolventshydrogel0210 nano-technologyAntibacterial activityRheologyGelsChemistry (Weinheim an der Bergstrasse, Germany)
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MICROWAVE-ASSISTED FUNCTIONALIZATION OF HALLOYSITE NANOTUBE SURFACE

2014

Halloysite, Al2Si2O5·2H2O, is a naturally occurring two-layered alluminosilicate, chemically similar to kaolin, which has a predominantly high-aspect-ratio hollow tubular structure in the submicrometer range and an internal diameter in the nanometer range. The size of halloysite nanotubes (HNTs), generally varies from 50 to 70 nm in external diameter, ca. 15 nm diameter lumen, and 0.5 to 1 μm in length. Halloysite tubes have aluminol (Al-OH) groups on the internal surface and siloxan groups (Si-O-Si) on the external surface. The very large diameter of the halloysite lumen makes it potentially suitable for the accommodation of a range of guests. In recent reports, for example, the mesoporous…

halloysite ionic liquids microwave solvent-free synthesis
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The Role Played by Ionic Liquids in Carbohydrates Conversion into 5-Hydroxymethylfurfural: A Recent Overview

2022

Obtaining industrially relevant products from abundant, cheap, renewable, and low-impacting sources such as lignocellulosic biomass, is a key step in reducing consumption of raw fossil materials and, consequently, the environmental footprint of such processes. In this regard, a molecule that is similar to 5-hydroxymethylfurfural (5-HMF) plays a pivotal role, since it can be produced from lignocellulosic biomass and gives synthetic access to a broad range of industrially important products and polymers. Recently, ionic liquids (ILs) have emerged as suitable solvents for the conversion of biomass and carbohydrates into 5-HMF. Herein, we provide a bird’s-eye view on recent achievements about t…

heterogenous catalysisOrganic ChemistryCarbohydratesIonic LiquidsPharmaceutical ScienceSettore CHIM/06 - Chimica OrganicaCatalysisAnalytical Chemistryhomogenous catalysiscarbohydrates conversionChemistry (miscellaneous)Drug DiscoverySolventsMolecular Medicine5-hydrodroxymethylfurfuralFuraldehydePhysical and Theoretical ChemistryHexosesMolecules
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Cross-Linked Imidazolium Salts as Scavengers for Palladium.

2014

Five imidazolium-based materials have been synthesised and used for the first time as palladium scavengers. Radical reactions of suitable bis-vinylimidazolium salts led to a series of insoluble materials through homo-polymerisation, immobilisation with a 3-mercaptopropyl-modified silica gel or co-polymerisation with ethylene glycol dimethylacrylate. These materials were screened as palladium scavengers with a set of palladium(0) and palladium(II) compounds in different solvents and at different starting amounts of palladium. In many cases, residual amounts of palladium were lower than 5 ppm, as requested for the manufacture of active pharmaceutical ingredients and fine chemicals. The applic…

inorganic chemicalsActive ingredientSilica gelchemistry.chemical_elementGeneral ChemistrySettore CHIM/06 - Chimica OrganicaScavenger (chemistry)chemistry.chemical_compoundchemistrySuzuki reactionIonic liquidOrganic chemistryEthylene glycolcross-coupling imidazolium salts ionic liquids palladium supported catalystsPalladiumChemPlusChem
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Electronic and Steric Effects: How Do They Work in Ionic Liquids? The Case of Benzoic Acid Dissociation

2010

The need to have a measure of the strength of some substituted benzoic acids in ionic liquid solution led us to use the protonation equilibrium of sodium p-nitrophenolate as a probe reaction, which was studied by means of spectrophotometric titration at 298 K. In order to evaluate the importance of electronic effect of the substituents present on the aromatic ring, both electron-withdrawing and -donor substituents were taken into account. Furthermore, to have a measure of the importance of the steric effect of the substituents both para- and ortho-substituted benzoic acids were analyzed. The probe reaction was studied in two ionic liquids differing for the ability of the cation to give hydr…

inorganic chemicalsSteric effectsionic liquids ion pair formation carboxylic acidsChemistryHydrogen bondorganic chemicalsOrganic ChemistryInorganic chemistryProtonationSettore CHIM/06 - Chimica OrganicaDissociation (chemistry)chemistry.chemical_compoundIonic liquidElectronic effectEquilibrium constantBenzoic acidThe Journal of Organic Chemistry
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Mononuclear rearrangement of heterocycles in ionic liquids catalyzed by copper(II) salts

2008

Abstract The reactivity of E- and Z-phenylhydrazones of 3-benzoyl-5-phenyl-1,2,4-oxadiazole in the presence of CuCl2 and Cu(ClO4)2·6H2O has been studied in four imidazolium ionic liquids [bmim][X] (X=BF4−, PF6−, SbF6− and CF3SO3−). The reaction may follow different mechanistic patterns, depending on the nature of the ionic liquid anion, accounting for both qualitative and kinetic data. In the presence of CuCl2, two processes take place at the same time, i.e., the E⇆Z isomerization and the rearrangement of Z-isomer into the relevant 4-benzoylamino-2,5-diphenyl-1,2,3-triazole. In contrast, in the presence of Cu(ClO4)2·6H2O, the rearrangement occurs only in solution of [bmim][BF4] and [bmim][C…

ionic liquids MHR reaction copper (II) catalysisOrganic ChemistryTriazolechemistry.chemical_elementSettore CHIM/06 - Chimica OrganicaPhotochemistryBiochemistryMedicinal chemistryCopperCatalysisIonchemistry.chemical_compoundchemistryDrug DiscoveryIonic liquidReactivity (chemistry)Isomerization
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[bmim][F] a TSIL differently acting on aromatic nuclei

ionic liquids SNArSettore CHIM/06 - Chimica Organica
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How mixing ionic liquids affects a Diels-Alder reaction

ionic liquids binary mixtures Diels-Alder reactionSettore CHIM/06 - Chimica Organica
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