Search results for "Racemic mixture"

showing 10 items of 24 documents

Left, Right, or Both? On the Configuration of the Phenanthroindolizidine Alkaloid Tylophorine from Tylophora indica

2013

The alkaloid (-)-tylophorine was isolated from a sample of Tylophora indica, and the crude extract was analyzed by HPLC/MS(n) and chiral HPLC/MS. While the literature states that the naturally occurring form of this alkaloid is the R-enantiomer and that its S-antipode is usually not found in nature, we confirmed the hypothesis of Govindachari and Nagarajan that natural levorotatory tylophorine is indeed a nearly racemic mixture with a slight excess of the R-enantiomer.

PharmacologyMolecular StructureChemistryAlkaloidOrganic ChemistryIndolizinesPharmaceutical ScienceTylophoraPhenanthrenesHigh-performance liquid chromatographyLevorotatoryAnalytical ChemistryChiral column chromatographyAlkaloidsTylophora indicaComplementary and alternative medicineDrug DiscoveryMolecular MedicineOrganic chemistryRacemic mixturePhenanthrolinesJournal of Natural Products
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Brewster angle microscopy and X-ray GID studies of morphology and crystal structure in monolayers of N-tetradecyl-γ,δ-dihydroxypentanoic acid amide

1997

First-order phase transitions from the low-density fluidlike phase to the condensed phase of monolayers of N-tetradecyl-γ,δ-dihydroxypentanoic acid amides at the air−water interface have been studied by π−A isotherms, Brewster angle microscopy (BAM), and synchrotron X-ray grazing incidence diffraction (GID). The thermodynamic differences between enantiomeric and racemic monolayers are too small to be measured. However, chiral discrimination is observable in the macroscopic domain morphology by BAM. The domains of the condensed phase grow dendritically. The characteristic shapes of domains of the pure S and R enantiomers are mirror images of each other. The domains of the racemic mixture are…

Physics::Biological PhysicsQuantitative Biology::BiomoleculesPhase transitionBrewster's angleMaterials scienceGrazing incidence diffractionCrystal structureSynchrotronSurfaces Coatings and Filmslaw.inventionsymbols.namesakeCrystallographylawMonolayerMaterials ChemistrysymbolsRacemic mixturePhysical and Theoretical ChemistryEnantiomer
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Peptide Metal–Organic Frameworks for Enantioselective Separation of Chiral Drugs

2017

We report the ability of a chiral Cu(II) 3D MOF based on the tripeptide Gly-L-His-Gly (GHG) for the enantioselective separation of metamphetamine and ephedrine. Monte Carlo simulations suggest that chiral recognition is linked to preferential binding of one of the enantiomers as result of either stronger or additional H-bonds with the framework that lead to energetically more stable diastereomeric adducts. Solid phase extraction (SPE) of a racemic mixture by using Cu(GHG) as extractive phase permits isolating more than 50% of the (+)-ephedrine enantiomer as target compound in only four minutes. To the best of our knowledge, this represents the first example of a MOF capable of separating ch…

StereoisomerismTripeptideMolecular Dynamics Simulation010402 general chemistry01 natural sciencesBiochemistryCatalysisMethamphetamineColloid and Surface ChemistryOrganic chemistryMoleculeMetal-Organic FrameworksEphedrineMolecular Structure010405 organic chemistryChemistryDiastereomerEnantioselective synthesisStereoisomerismQuímicaGeneral ChemistryCombinatorial chemistry0104 chemical sciences13. Climate actionRacemic mixtureMetal-organic frameworkPèptidsEnantiomerPeptidesMonte Carlo MethodCopperJournal of the American Chemical Society
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Unusual packing of ET molecules caused by π–π stacking interactions with TRISPHAT molecules in two [ET][TRISPHAT] salts (ET=bis(ethylenedithio)tetrat…

2007

Abstract The synthesis, structure and physical properties of two new radical salts formed with the organic donor bis(ethylenedithio)tetrathiafulvalene (BEDT-TTF or ET) and a racemic mixture of the chiral anion (tris(tetrachlorobenzenediolato)phosphate(V)) (TRISPHAT) are reported. The structure of the salts (ET)4[TRISPHAT]4 · 3.5H2O (1) and (ET)(TRISPHAT) · CH2Cl2 · CH3CN (2) has been solved by X-ray single crystal diffraction. Unusual packings of ET molecules are obtained in the two structures. The electrical properties indicate that both compounds are insulators. This is in agreement with the isolation of the ET molecules and their complete ionization. On the other hand, the anisotropy of …

TrisConductivityCrystal structureInorganic chemistryTRISPHATStackingCrystal structureIonInorganic Chemistrychemistry.chemical_compoundCrystallographyTRISPHATchemistryddc:540Materials ChemistryRacemic mixtureMoleculeElectrocrystallisationTTF-based radical saltsElectronic spin resonancePhysical and Theoretical ChemistryTetrathiafulvaleneInorganica Chimica Acta
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Asymmetric Synthesis of Chiral Bimetallic [Ag28Cu12(SR)24]4– Nanoclusters via Ion Pairing

2016

In this work, a facile ion-pairing strategy for asymmetric synthesis of optically active negatively charged chiral metal nanoparticles using chiral ammonium cations is demonstrated. A new thiolated chiral three-concentric-shell cluster, [Ag28Cu12(SR)24]4–, was first synthesized as a racemic mixture and characterized by single-crystal X-ray structure determination. Mass spectrometric measurements revealed relatively strong ion-pairing interactions between the anionic nanocluster and ammonium cations. Inspired by this observation, the as-prepared racemic mixture was separated into enantiomers by employing chiral quaternary ammonium salts as chiral resolution agents. Subsequently, direct asymm…

asymmetric synthesisInorganic chemistrynanoclusters02 engineering and technology010402 general chemistry01 natural sciencesBiochemistryCatalysisNanoclusterschemistry.chemical_compoundColloid and Surface ChemistryAmmoniumta116chemistry.chemical_classificationion pairingta114Chiral ligandEnantioselective synthesisGeneral Chemistry021001 nanoscience & nanotechnologyChiral resolution0104 chemical sciencesCrystallographychemistryRacemic mixtureCounterionEnantiomer0210 nano-technologyJournal of the American Chemical Society
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Molecular Self-Assembly of Enantiopure Heptahelicene-2-Carboxylic Acid on Calcite (1014)

2012

Chirality can have a decisive influence on the molecular structure formation upon self-assembly on surfaces. In this paper, we study the structures formed by enantiopure (M)-heptahelicene-2-carboxylic acid ((M)-[7]HCA) on the calcite (10 (1) over bar4) cleavage plane under ultrahigh vacuum conditions. Previous noncontact atomic force microscopy studies have revealed that the racemic mixture of (M)-[7]HCA and (P)-[7]FICA (1:1) self-assembles into well-defined molecular double rows that are oriented along the calcite [01 (1) over bar0] direction. Here, we investigate the enantiopure (M)[7]HCA compound, resulting in distinctly different molecular structures upon deposition onto calcite (10 (1)…

chemistry.chemical_classificationCalciteStereochemistryCarboxylic acid530Surfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographychemistry.chemical_compoundGeneral EnergyEnantiopure drugchemistryMoleculeRacemic mixtureMolecular self-assemblyPhysical and Theoretical ChemistryEnantiomerChirality (chemistry)
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On the regioselectivity of the Friedländer reaction leading to huprines: stereospecific acid-promoted isomerization of syn-huprines to their anti-reg…

2001

Abstract Racemic 12-amino-6,7,8,11-tetrahydro-7,11-methanocycloocta[ b ]quinoline derivatives ( syn -huprines) substituted at the 9-position with a methyl or ethyl group, and both enantioenriched forms of the 9-ethyl derivative, obtained by chiral MPLC resolution of the racemic mixture, were readily converted to the corresponding anti -isomers (huprines) by stereospecific acid-promoted (AlCl 3 or triflic acid) isomerization of the endocyclic CC double bond from the 9(10)- to the 8(9)-position. These results support the hypothesis that the hitherto unseen syn -huprines are also formed under the usual acidic Friedlander reaction conditions used to prepare the known huprines, but rearrange in…

chemistry.chemical_classificationDouble bondChemistryStereochemistryOrganic ChemistryQuinolineRegioselectivityCatalysisInorganic Chemistrychemistry.chemical_compoundStereospecificityStructural isomerRacemic mixturePhysical and Theoretical ChemistryTriflic acidIsomerizationTetrahedron: Asymmetry
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2-(4-Fluorophenyl)-1-(4-pyridyl)cyclopentan-1-ol

2007

The crystal structure of the title compound, C16H16FNO, was determined as part of a study of the biological activity of pyridine-substituted cyclo­pentene derivatives as p38 mitogen-activated protein kinase (MAPK) inhibitors. The 4-fluoro­phenyl and 4-pyridyl rings are trans positioned with respect to each other. The compound exists as a racemic mixture. The synthesis was achieved via direct inter­action between the reactive complex Grignard reagent PyMgCl·LiCl and the enolizable ketone 4-fluoro­phenyl­cyclo­penta­none with the assistance of the neodymium salt catalyst NdCl3·2LiCl. The crystal packing is characterized by zigzag chains of mol­ecules, which are connected by O—H⋯N hydrogen bon…

chemistry.chemical_classificationKetoneStereochemistryHydrogen bondSalt (chemistry)Biological activityGeneral ChemistryCrystal structureCondensed Matter PhysicsCatalysisCrystalchemistryRacemic mixtureGeneral Materials ScienceActa Crystallographica Section E Structure Reports Online
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Stereoselective synthesis and properties of 1,3-bis(dicyanomethylidene)indane-5-carboxylic acid acceptor fragment containing nonlinear optical chromo…

2016

A series of organic push–pull type chromophores using indane-1,3-dione 5-carboxylic acid (IDCA) and novel 1,3-bis(dicyanomethylidene)indane 5-carboxylic acid (CICA) electron acceptor fragments have been synthesized and characterized. NMR and X-ray analysis revealed that condensation reactions with the CICA fragment were stereoselective and yielded benzylidenes and azomethines with E double bond configurations. Due to the non-planar geometry these compounds are chiral and were acquired as a racemic mixture. The subsequent functionalization of the carboxylic acid group with 5,5,5-triphenylpentan-1-ol yielded solution-processable glass forming materials (6, 8, 10, 13) with glass transition tem…

chemistry.chemical_classificationMaterials scienceDouble bondCarboxylic acidIndane02 engineering and technologyGeneral ChemistryElectron acceptor010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistryCondensation reaction01 natural sciencesAcceptor0104 chemical sciencesCrystallographychemistry.chemical_compoundchemistryMaterials ChemistryRacemic mixtureMolecule0210 nano-technologyJournal of Materials Chemistry C
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Cooperative supramolecular polymerization and amplification of chirality in C3-symmetrical OPE-based trisamides.

2011

Sergeants-and-soldiers experiments demonstrate the amplification of chirality that transforms the racemic mixture of helical columns formed from OPE-based trisamides into enantiomerically enriched helical structures (see scheme).The cooperative supramolecular polymerization of the trisamides is investigated by theoretical calculations and temperature-dependent UV/Vis and CD experiments. Copyright © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

chemistry.chemical_classificationModels MolecularMolecular StructureOrganic ChemistrySupramolecular chemistryStereoisomerismGeneral ChemistryAmidesCatalysisPolymerizationSupramolecular polymersCrystallographychemistryPolymerizationRacemic mixtureSelf-assemblyChirality (chemistry)Chemistry (Weinheim an der Bergstrasse, Germany)
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