Search results for "chiral [model]"

showing 10 items of 83 documents

Catalytic Enantioselective Conjugate Alkynylation of β-Aryl-β-trifluoromethyl Enones Constructing Propargylic All-Carbon Quaternary Stereogenic Cente…

2016

The enantioselective conjugate alkynylation of β-aryl-β-trifluoromethyl enones has been carried out using terminal alkynes and diethylzinc in the presence of 3,3'-bis(perfluorophenyl)BINOL as the chiral ligand to give the corresponding ketones bearing a trifluoromethylated propargylic quaternary stereocenter with fair to good enantioselectivities. Enones bearing a bulky 2-naphthyl attached to the carbonyl group provided the best enantioselectivities. The synthetic applicability of the resulting products has been demonstrated with their iodocyclization to form 4H-pyrans.

Trifluoromethyl010405 organic chemistryArylOrganic ChemistryChiral ligandEnantioselective synthesisDiethylzinc010402 general chemistry01 natural sciencesBiochemistryCombinatorial chemistry0104 chemical sciencesStereocenterCatalysischemistry.chemical_compoundchemistryPhysical and Theoretical ChemistryConjugateOrganic Letters
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Meson–meson and meson–baryon interactions in a chiral non-perturbative approach

1998

A qualitative account of the meson-meson and meson-baryon interactions using chiral Lagrangians and the inverse amplitude method in coupled channels is done. The method, imposing exact unitarity, proves to be a very useful tool to extend the information contained in the chiral Lagrangians at energies beyond the realm of applicability of chiral perturbation theory. Oset Baguena, Eulogio, Eulogio.Oset@ific.uv.es

UNESCO::FÍSICA::Física molecular:FÍSICA [UNESCO]:FÍSICA::Física molecular [UNESCO]Meson-meson ; Meson-Baryon ; Chiral Lagrangian ; Exact unitarityHigh Energy Physics::LatticeNuclear TheoryHigh Energy Physics::PhenomenologyUNESCO::FÍSICAExact unitarityMeson-BaryonNuclear ExperimentChiral LagrangianMeson-meson
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Chiral Low-Energy Constants: Status and Prospects

2007

7 pages.-- PACS nrs.: 11.15.Pg, 12.38.-t, 12.39.Fe.-- ISI Article Identifier: 000252187200017.-- ArXiv pre-print available at: http://arxiv.org/abs/0710.4405

UNESCO::FÍSICA::Física molecular[PACS] Chiral LagrangiansHigh Energy Physics::LatticeHigh Energy Physics::PhenomenologyUNESCO::FÍSICAHadronicFOS: Physical sciencesPerturbation theoryChiral LagrangianQCDLEC'sHigh Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph):FÍSICA [UNESCO]:FÍSICA::Física molecular [UNESCO]Resonance region[PACS] Quantum chromodynamics (QCD)Chiral Lagrangian; LEC's ; Prediction ; Hadronic ; QCDPrediction[PACS] Expansions for large numbers of components (e.g. 1/Nc expansions)
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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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Chiral separation of ephedrines by liquid chromatography using β-cyclodextrins

2001

β-cyclodextrins (β-CDs) have been evaluated as chiral recognition agents for the enantioseparation of ephedrines by liquid chromatography (LC). The compounds tested were norephedrine, ephedrine, pseudoephedrine, N-methylephedrine and N-methylpseuoephedrine. Two possibilities have been investigated, the employment of a chiral stationary phase consisting of immobilized β-cyclodextrin, and the addition of the chiral selector to the mobile phase. In the latter approach the following chiral agents have been assayed, native β-cyclodextrin (β-CD), methyl-β-cyclodextrin (M-β-CD), carboxyethyl-β-cyclodextrin (CE-β-CD), carboxymethyl-β-cyclodextrin (CM-β-CD) and hydroxypropyl-β-cyclodextrin (HP-β-CD)…

chemistry.chemical_classificationChromatographyCyclodextrinBiochemistryAnalytical ChemistryNasal decongestantChiral column chromatographySolventchemistryIonic strengthmedicineEnvironmental ChemistryEphedrineEnantiomerChiral derivatizing agentSpectroscopymedicine.drugAnalytica Chimica Acta
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Postsynthetic Approach for the Rational Design of Chiral Ferroelectric Metal–Organic Frameworks

2017

International audience; Ferroelectrics (FEs) are materials of paramount importance with a wide diversity of applications. Herein, we propose a postsynthetic methodology for the smart implementation of ferroelectricity in chiral metal−organic frameworks (MOFs): following a single-crystal to single-crystal cation metathesis, the Ca2+ counterions of a preformed chiral MOF of formula Ca6II{CuII24[(S,S)-hismox]12(OH2)3}·212H2O (1), where hismox is a chiral ligand derived from the natural amino acid l-histidine, are replaced by CH3NH3+. The resulting compound, (CH3NH3)12{CuII24[(S,S)-hismox]12(OH2)3}·178H2O (2), retains the polar space group of 1 and is ferroelectric below 260 K. These results op…

chemistry.chemical_classificationStereochemistryChiral ligandRational design02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyMetathesis01 natural sciencesBiochemistryFerroelectricityCatalysis0104 chemical sciencesCrystallographyColloid and Surface Chemistrychemistry[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Metal-organic frameworkCounterion0210 nano-technology
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(−)-(4R,5R)-4,5-Bis[hydroxy(diphenyl)methyl]-2,2-dimethyl-1,3-dioxolane

2008

[93379-48-7] C31H30O4 (MW 466.57) InChI = 1S/C31H30O4/c1-29(2)34-27(30(32,23-15-7-3-8-16-23)24-17-9-4-10-18-24)28(35-29)31(33,25-19-11-5-12-20-25)26-21-13-6-14-22-26/h3-22,27-28,32-33H,1-2H3/t27-,28-/m1/s1 InChIKey = OWVIRVJQDVCGQX-VSGBNLITSA-N (chiral shift reagent; chiral host in inclusion compounds; chiral reagent; chiral ligand for asymmetric catalysis) Alternate Name: TADDOL. Physical Data: mp: 190–192 °C1a; 195–196.5  °C1b; 192–193 °C;1c,e 193.5–195 °C;1d [α]RTd=−68.5 °(c = 1, CH3Cl);1a [α]d = −60.6 °(c = 1, CH3Cl);1b [α]20d = −67 ° (c = 1, CH3Cl);1c [α]20d = −65.1° (c = 1, CH3Cl);1d [α]20d = −64.6°(c = 1, CH3Cl)1e Solubility: soluble in toluene, cyclohexane, dichloromethane and tetra…

chemistry.chemical_compoundCyclohexanechemistryStereochemistryReagentDioxolaneChiral ligandEnantioselective synthesisMedicinal chemistryTolueneTetrahydrofuranDiethyl tartrate
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ChemInform Abstract: Catalytic Enantioselective Conjugate Alkynylation of β-Aryl-β-trifluoromethyl Enones Constructing Propargylic All-Carbon Quatern…

2016

The enantioselective conjugate alkynylation of β-aryl-β-trifluoromethyl enones has been carried out using terminal alkynes and diethylzinc in the presence of 3,3′-bis(perfluorophenyl)BINOL as the chiral ligand to give the corresponding ketones bearing a trifluoromethylated propargylic quaternary stereocenter with fair to good enantioselectivities. Enones bearing a bulky 2-naphthyl attached to the carbonyl group provided the best enantioselectivities. The synthetic applicability of the resulting products has been demonstrated with their iodocyclization to form 4H-pyrans.

chemistry.chemical_compoundTrifluoromethylchemistryOrganocatalysisArylChiral ligandEnantioselective synthesisGeneral MedicineDiethylzincMedicinal chemistryStereocenterConjugateChemInform
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Applications and stereoselective syntheses of P-chirogenic phosphorus compounds.

2016

International audience; Phosphorus compounds bearing chirality on the P-center are usually qualified as P-chirogenic or P-stereogenic. This chemical class concerns natural products, agrochemistry, molecular materials, biology and pharmacy, although it is certainly in coordination chemistry and in asymmetric catalysis using chiral transition metal complexes that P-chirogenic phosphorus compounds are the most used. The chiral phosphine ligands and their uses in asymmetric metal-catalyzed reactions have been widely reviewed in literature. However, an overview covering the applications as well as the stereoselective syntheses of all classes of phosphorus compounds has not yet been provided. Thi…

chemistry.chemical_elementring-closing metathesis010402 general chemistryenantioselective transfer hydrogenation[ CHIM ] Chemical Sciences01 natural sciencesCoordination complexcatalyzed asymmetric hydrogenationchemistry.chemical_compoundactive phosphine oxides[CHIM]Chemical Scienceschiral diphosphine ligandsOrganic chemistryMolecular materialstransition-metal catalysischemistry.chemical_classificationacyl-transfer catalysts010405 organic chemistryPhosphorusEnantioselective synthesisc migration rearrangementGeneral Chemistry0104 chemical scienceschemistrytert-butylphenylphosphine oxideStereoselectivityray crystal-structureChirality (chemistry)PhosphineChemical Society reviews
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Charge-dependent flow and the search for the chiral magnetic wave in Pb-Pb collisions at √sNN = 2.76 TeV

2016

We report on measurements of a charge-dependent flow using a novel three-particle correlator with ALICE in Pb-Pb collisions at the CERN Large Hadron Collider (LHC), and discuss the implications for observation of local parity violation and the chiral magnetic wave (CMW) in heavy-ion collisions. Charge-dependent flow is reported for different collision centralities as a function of the event charge asymmetry. While our results are in qualitative agreement with expectations based on the CMW, the nonzero signal observed in higher harmonics correlations indicates a possible significant background contribution. We also present results on a differential correlator, where the flow of positive and …

chiral magnetic wavePb-Pb collisionsheavy-ion collisionsNuclear Experimentcharge-dependent flowlocal parity violation
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