Search results for "Succinic anhydride"

showing 4 items of 14 documents

pH-sensitive hydrogel based on a novel photocross-linkable copolymer.

2004

A pH sensitive hydrogel has been prepared by a UV irradiation technique. Starting polymer was the PHM (poly hydroxyethylaspartamide methacrylated) obtained from polyaspartamide (PHEA) partially derivatized with methacrylic anhydride (MA). This new copolymer has been further derivatized with succinic anhydride (SA) to obtain PHM-SA that has been cross-linked by UV irradiation to form a pH sensitive hydrogel. The network, recovered after washing as a powder, has been been characterized by FT-IR spectrophotometry and particle size distribution analysis. Moreover, to have information about water affinity of the prepared sample, swelling measurements have been carried out in aqueous media mimick…

chemistry.chemical_classificationPolymers and PlasticspH sensitive hydrogels polyaspartamide drug releasePolymersSuccinic anhydrideMethacrylic anhydrideChemical modificationBioengineeringHydrogelsPolymerHydrogen-Ion ConcentrationBiomaterialschemistry.chemical_compoundCross-Linking ReagentschemistryDrug deliveryPolymer chemistryMaterials ChemistryCopolymerMicroparticleDrug carrierNuclear chemistryBiomacromolecules
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Gamma radiation induced maleation of polypropylene using supercritical CO 2 : preliminary results

2000

Abstract The charging of maleic anhydride (MA) and dicumyl peroxide (DCP) into polypropylene matrices has been carried out by CO2 in supercritical conditions. The grafting of MA into polymer chains was done through gamma irradiation in CO2 atmosphere (0.1 MPa, 25°C). The grafting was successful and the amount of grafted anhydride was dependent on the amount of MA and DCP charged into the polypropylene matrix. The presence of grafted succinic anhydride was shown by FT-IR spectroscopy and its amount was determined through a calibration curve derived from standard samples. The effect of swelling due to supercritical CO2, maleic anhydride grafting and gamma irradiation on the molecular structur…

chemistry.chemical_classificationPolypropylenePolymers and PlasticsChemistryOrganic ChemistrySuccinic anhydrideChemical modificationMaleic anhydridePolymerGraftingSupercritical fluidchemistry.chemical_compoundChemical engineeringPolymer chemistryMaterials ChemistrymedicineSwellingmedicine.symptomPolymer
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Enantioselective synthesis of sabina ketone

2003

Both enantiomers of sabina ketone were efficiently prepared via an easy synthesis of 1-diazo-5-methylene-6-methylheptan-2-one, starting from succinic anhydride, followed by its highly enantioselective cyclization catalyzed by chiral dirhodium(II) compounds having ortho-metalated phosphines as ligands.

chemistry.chemical_classificationchemistry.chemical_compoundKetonechemistryOrganic ChemistryDrug DiscoverySuccinic anhydrideEnantioselective synthesisOrganic chemistryEnantiomerBiochemistryCatalysisTetrahedron Letters
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Crystal structure of 3-(tri-phenyl-phosphoranyl-idene)-2,5-di-hydro-furan-2,5-dione tetra-hydro-furan monosolvate.

2018

The title pseudo-polymorph of 3-(triphenylphosphoranylidene)-2,5-dihydrofuran-2,5-dione crystallizes with a tetrahydrofuran solvent molecule, viz. C22H17O3P·C4H8O. The succinic anhydride ring is approximately planar (r.m.s. deviation = 0.032 Å). The tetrahydrofuran molecule is disordered over two orientations about a pseudo-twofold axis with refined occupancy ratio 0.718 (4):0.282 (4). In the crystal, C—H...O hydrogen bonds link molecules of the dihydrofuran-2,5-dione derivative into chains parallel to the b axis and arranged into layers stacked along [100] alternating with hydrogen-bonded tetrahydrofuran layers.

crystal structure02 engineering and technologyCrystal structure010403 inorganic & nuclear chemistryRing (chemistry)01 natural sciencesCrystalchemistry.chemical_compoundFuranpseudopolymorphGeneral Materials ScienceCrystallographybiologytetrahydrofuran solvateHydrogen bondSuccinic anhydrideGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter Physicsbiology.organism_classification0104 chemical sciencesCrystallographychemistryQD901-999Tetra0210 nano-technologyylidDerivative (chemistry)Acta crystallographica. Section E, Crystallographic communications
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