Search results for "Spectroscopy"

showing 10 items of 10293 documents

Host-guest interactions for extracting antibiotics with a γ-cyclodextrin poly(glycidyl-co-ethylene dimethacrylate) hybrid sorbent

2021

Abstract A procedure for the solid-phase extraction of antibiotics (enoxacin, ofloxacin, norfloxacin, ciprofloxacin, and sparfloxacin) in water has been developed. The sorbent used is based on a poly(glycidyl-co-ethylene dimethacrylate) network, whose previously modified surface has been functionalized with γ-cyclodextrin through a click-chemistry reaction. The architecture of the material has been characterized by thermogravimetric analysis, N2 adsorption-desorption, Raman spectroscopy, confocal microscopy, and scanning electron microscopy, showing good capability to be used as a filler for extraction cartridges. The optimization of the extraction methodology shows good intra-day and inter…

chemistry.chemical_classificationDetection limitThermogravimetric analysisAqueous solutionSorbentCyclodextrinChemistrySolid Phase Extraction010401 analytical chemistryExtraction (chemistry)02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesAnti-Bacterial Agents0104 chemical sciencesAnalytical Chemistrysymbols.namesakesymbolsMethacrylatesSurface modificationAdsorption0210 nano-technologyRaman spectroscopygamma-CyclodextrinsNuclear chemistryTalanta
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Cations mobility and water adsorption in zeolites

2002

As already pointed out [1], dielectric relaxation spectroscopy can be a convenient tool for probing ion dynamic in solids which depends on i) the structure in which ions are embedded and ii) the nature of the interaction ion/network. Consequently, the results obtained from this technique can be used as a data base for theoretical studies which goal is to calculate the ion binding energy and to simulate ionic displacements. Inversely, theoretical calculations are essential for confirming the experimental data and more particularly the method which is used for analysing the dielectric experimental response.

chemistry.chemical_classificationDielectric relaxation spectroscopyAdsorptionIon bindingMaterials scienceBase (chemistry)chemistryChemical physicsIonic bondingDielectricIon
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Application of Furan as a Diene: Preparation of Condensed 1,3-Oxazines by Retro-Diels−Alder Reactions

2004

(Di-exo-3-amino-7-oxabicyclo[2.2.1]hept-5-en-2-yl)methanol (3) was treated with oxo carboxylic acids [p-toluoylpropionic acid, cis- or trans-(p-toluoyl)cyclohexanecarboxylic acid, -benzoic acid or methanobenzocyclooctenecarboxylic acid] to furnish the oxanorbornene-fused pyrrolo[1,3]oxazine 4, the isoindolo[1,3]oxazines 5 and 6, and the methanobenzocyclooctenepyrrolo[1,3]oxazine 10, together with the retro-Diels−Alder products pyrrolooxazinone 7, oxazinoisoindolones 8 and 9, and oxazinopyrrolobenzocyclooctene 11. On reflux in chlorobenzene, furan was released from the oxanorbornene heterocycles 5 and 10 to give the retro-Diels−Alder products. The structures of the new compounds were establi…

chemistry.chemical_classificationDieneOrganic ChemistryOxazinesNuclear magnetic resonance spectroscopyCyclohexanecarboxylic acidRetro-Diels–Alder reactionchemistry.chemical_compoundchemistryChlorobenzeneFuranOrganic chemistryPhysical and Theoretical ChemistryBenzoic acidEuropean Journal of Organic Chemistry
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Photolysis of enol acetates and α-bromo derivatives ofo-(acyloxy)acetophenones

1985

UV irradiation of enol acetates 3a – g in benzene gives mainly o-(acetoxy)acetophenones 2 and 2-methylchromones 4. Under the same conditions, the dimethyl derivatives 3h and 3i remain unaffected. The α-bromo ketone 5a gives rise to mixtures of o-(acetoxy)acetophenone (2a), the diketone 6, and/or α-acetoxy-o-hydroxyacetophenone (7), depending on the irradiation conditions. The similarities and differences between the two series of experiments, as well as their possible mechanistic implications, are discussed. Photolyse von Enolacetaten und α-Bromderivaten von o-(Acyloxy)acetophenonen UV-Bestrahlung der Enolacetate 3a – g in Benzol liefert o-(Acetoxy)acetophenone 2 und 2-Methyl-chromone 4 als…

chemistry.chemical_classificationDiketoneKetoneIntramolecular reactionChemistryStereochemistryOrganic ChemistryPhotodissociationNuclear magnetic resonance spectroscopyEnolMedicinal chemistrychemistry.chemical_compoundPhysical and Theoretical ChemistryBenzeneAcetophenoneLiebigs Annalen der Chemie
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Spectroscopic behavior of metal–drug complexes. Infrared spectra of Cu(II) dimer complexes with acetazolamide (H2acm) and an analogue sulfonamide (B-…

1999

Abstract The infrared spectra of the drugs H2acm and B-H2ats, and their copper(II) dimer complexes with stoichiometries [Cu(acm)(NH3)2(OH2)]2·H2O and [Cu(B-ats)(NH3)2]2 are reported and discussed. The Raman spectra of H2acm and B-H2ats are also reported. An assignment of H2acm and B-H2ats modes in the complexes is proposed in comparison with the modes of the free ligands. The spectral modifications due to the deprotonation and coordination effects are analyzed. The ν(N–H) modes of the sulfonamido, carbonamido and Nring–H of the imine tautomer have been accurately assigned. Important information about the S–O and S–N vibrations has been obtained.

chemistry.chemical_classificationDimerIminechemistry.chemical_elementInfrared spectroscopyPhotochemistryTautomerCopperSulfonamideCrystallographychemistry.chemical_compoundsymbols.namesakeDeprotonationchemistrysymbolsRaman spectroscopySpectroscopyVibrational Spectroscopy
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2020

Reduction of the aluminum iodide AlI2AriPr8 (1; AriPr8 = C6H-2,6-(C6H2-2,4,6-Pri3)2-3,5-Pri2) with 5% w/w Na/NaCl in hexanes gave a dark red solution from which the monomeric alanediyl :AlAriPr8 (2) was isolated in ca. 28% yield as yellow-orange crystals. Compounds 1 and 2 were characterized by X-ray crystallography, electronic and NMR spectroscopy, and theoretical calculations. The Al atom in 2 is one-coordinate, and the compound displays two absorptions in its electronic spectrum at 354 and 455 nm. It reacts with H2 under ambient conditions to give the aluminum hydride {AlH(μ-H)AriPr8}2, probably via a weakly bound dimer of 2 as an intermediate.

chemistry.chemical_classificationDimerIodideALUMINUM HYDRIDEchemistry.chemical_elementGeneral ChemistryNuclear magnetic resonance spectroscopy010402 general chemistry01 natural sciencesBiochemistryCatalysis0104 chemical sciences3. Good healthchemistry.chemical_compoundCrystallographyColloid and Surface ChemistryMonomerchemistryAluminiumYield (chemistry)AtomJournal of the American Chemical Society
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Stannacycloalkyl and stannepinyl derivatives of dipeptides

1994

Stannacyclohexyl and stannacycloheptyl derivatives of dipeptides (CH2)nSnAA · xH2O (H2AA = H2GlyGly, with n = 5, x = 2 or n = 6, x = 1; H2AA = H2GlyAla, H2GlyVal, H2GlyMet, with n = 5, 6, x = 1) and stannepinyl glycylglycinate monohydrate have been obtained by the reaction of (CH2)nSnCl2 or stannepinyl dichloride with Na2AA. According to infrared and 119Sn Mossbauer data of the solid compounds, AA acts as a tridentate ONN ligand and tin has a trigonalbipyramidal environment. An analogous structure has been inferred from 1H, 13C, and 119Sn NMR data for the undissociated molecules in methanol solution.

chemistry.chemical_classificationDipeptideBicyclic moleculeLigandStereochemistrychemistry.chemical_elementGeneral ChemistryNuclear magnetic resonance spectroscopyInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryMoleculeMethanolTinLactoneApplied Organometallic Chemistry
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Synthesis of peptides with α,β‐dehydroamino acids, I. synthesis of N‐benzyloxycarbonyl and N‐trifluoroacetyl dipeptides of dehydroalanine and dehydro…

1984

Condensation of amides of N-(benzyloxycarbonyl)- and N-(trifluoroacetyl)amino acid with pyruvic and phenylpyruvic acid yields, in the presence of p-toluenesulfonic acid as a catalyst, N-(benzyloxycarbonyl)- and N-(trifluoroacetyl)dehydro dipeptides with C-terminal Δ Ala and ΔPhe, respectively (Table 2 and 3). Synthese von Peptiden mit α,β-Dehydroaminosauren, I. - Synthese von N-(Benzyloxycarbonyl)-und N-(Trifluoracetyl) dipeptiden von Dehydroalanin und Dehydrophenylalanin Die Kondensation von Nα-(Benzyloxycarbonyl)- und Nα-(Trifluoracetyl)aminosaureamiden mit Brenztrauben- und Phenylbrenztraubensaure in Gegenwart von p-Toluolsulfonsaure als Katalysator fuhrt zu N-(Benzyloxycarbonyl)- und N-…

chemistry.chemical_classificationDipeptideChemistryStereochemistryOrganic ChemistryPhenylpyruvic acidNuclear magnetic resonance spectroscopyCondensation reactionCatalysisAmino acidchemistry.chemical_compoundAcid catalysisDehydroalaninePhysical and Theoretical ChemistryLiebigs Annalen der Chemie
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Diorganotin(IV) dipeptide complexes with potential antitumour activity

1993

A series of complexes of the dimethylltin(IV) moiety with dipeptides has been synthesized. The dipeptides are L-alanyl-L-histidine (H2AlaHis), L-methionyl-L-methionine (H2MetMet), L-glycyl-L-histidine (H2GlyHis) and L-histidyl-L-glycine (H2HisGly). The complexes have been characterized by IR and 119Sn Mossbauer spectroscopy in the solid state and by 1H NMR in CD3OD and D2O solutions. They consist of monomeric entities, with the tin atom arranged in a pentacoordinated trigonal bipyramidal structure. The dipeptides are coordinated via the amino group, deprotonated peptide nitrogen and carboxylate group. Neither imidazole in histidine-containing dipetides, nor the thioether group in MetMet, is…

chemistry.chemical_classificationDipeptideChemistryStereochemistryPeptideGeneral ChemistryNuclear magnetic resonance spectroscopyInorganic Chemistrychemistry.chemical_compoundTrigonal bipyramidal molecular geometryThioetherMoietyImidazoleCarboxylateApplied Organometallic Chemistry
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Complexes of tryptophan dipeptides with the R2Sn(IV)2+ ion (R=Me, Ph): Spectroscopic studies, solution properties and structural implications

1995

Tryptophan dipeptides such as L-tryptophyl-L-alanine (H 2 TrpAla), L-tryptophyl-L-tyrosine (H 2 TrpTyr), L-tryptophyl-L-tryptophan (H 2 TrpTrp), along with L-histidyl-L-tyrosine (H 2 HisTyr), were reacted with R 2 SnO (R=Me, Ph) yielding the corresponding complexes. The complexes have been characterized by IR and 119 Sn Mossbauer spectroscopy in the solid state and by 1 H and 13 C NMR in CD 3 OD solutions. Monomeric species were detected, with the tin atom arranged in a pentacoordinated trigonal-bipyramidal structure. The dipeptides are coordinated via the terminal amino group, deprotonated peptide nitrogen and terminal carboxylate group. No side-chain appears to be involved in bonding. Det…

chemistry.chemical_classificationDipeptideChemistryStereochemistryTryptophanPeptideGeneral ChemistryNuclear magnetic resonance spectroscopyCarbon-13 NMRInorganic ChemistryCrystallographychemistry.chemical_compoundDeprotonationCarboxylateConformational isomerismApplied Organometallic Chemistry
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