Search results for "Electronic effect"

showing 10 items of 45 documents

Gold-Catalyzed Intramolecular Hydroamination of o-Alkynylbenzyl Carbamates: A Route to Chiral Fluorinated Isoindoline and Isoquinoline Derivatives

2013

Enantiomerically pure fluorinated isoindoline and dihydroisoquinoline scaffolds have been prepared through a diastereoselective addition of fluorinated nucleophiles to Ellman’s N-(tert-butanesulfinyl)imines followed by a sequence of Sonogashira cross-coupling/gold(I)-catalyzed cycloisomerization of the corresponding carbamate. A more favored 5-exo-dig mechanism was observed mainly due to an electronic effect of the fluorinated group.

Hydrocarbons FluorinatedMolecular StructureChemistryOrganic ChemistrySonogashira couplingStereoisomerismIsoindolineIsoindolesIsoquinolinesBiochemistryMedicinal chemistryCatalysischemistry.chemical_compoundCycloisomerizationNucleophileIntramolecular forceElectronic effectOrganic chemistryHydroaminationCarbamatesGoldPhysical and Theoretical ChemistryIsoquinolineAmines
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( E )‐ und ( Z )‐Enole von β‐Ketocarbonsäureamiden

1990

(E)- and (Z)-Enols of β-Ketocarboxylic Acid Amides Reaction of dimesitoyldiazomethane (1) with ammonia (3a), primary and secondary amines (3b – o and 3p – v, respectively) leads to the completely enolized amides 4a – v. Besides the chelated Z configuration the unusual E isomer exists in the most cases, too. The Z/E distribution in the equilibrium depends on the steric and electronic effects present in the amide group CONR2R3 and on the solvent.

Inorganic ChemistrySolventSteric effectsAmmoniachemistry.chemical_compoundChemistryStereochemistryAmideElectronic effectChelationChemische Berichte
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β‐Ketocarbonsäureester mit trans ‐Enolisierung

1986

Durch die Einfuhrung von Mesitylsubstituenten gelingt es, offenkettige β-Ketocarbonsaureester 10/11 herzustellen, die bevorzugt in der E-Konfiguration 2 der Enolform vorliegen. Der Energiegewinn der intramolekularen Wasserstoffbrucke in der Z-Konfiguration 1 wird durch die sterische Energie kompensiert. Sterische und elektronische Effekte bewirken, das die Ketoformen 10/11 energetisch so hoch liegen, das sie im Gleichgewicht keine Rolle spielen. Auser den Substituenteneinflussen von R1, R2 und R3 werden die Solvensabhangigkeit und die basekatalysierte Einstellung der Gleichgewichte 1⇄2 untersucht. Die hohe Energiebarriere fur die E,Z-Isomerisierung gestattet die Reindarstellung und Lagerung…

Inorganic ChemistrySteric effectsHigh energychemistry.chemical_compoundStereochemistryChemistryIntramolecular forceElectronic effectHydrogen bridgeEnolChemische Berichte
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Exploring the biological, catalytic, and magnetic properties of transition metal coordination complexes incorporating pyrophosphate

2019

Abstract Polyphosphate anions are ubiquitous in nature, none more so than the diphosphate tetra-anion P2O74−, commonly referred to as pyrophosphate (PPi). The past decade has seen a rise in the number of pyrophosphate coordination complexes synthesized and characterized, and the areas of research interest expanded to include magnetic, medicinal, nutraceutical, catalytic and bioinorganic. The aim of the present review is to collect and organize the multidisciplinary information of the inorganic pyrophosphate system paying special attention to the following points: (i) the structural diversity of the PPi-containing metal complexes from discrete species to coordination polymers, which is due t…

Low toxicity010405 organic chemistryLigandPolyphosphateBioinorganic chemistry010402 general chemistry01 natural sciencesCombinatorial chemistryPyrophosphate0104 chemical sciencesCatalysisInorganic Chemistrychemistry.chemical_compoundTransition metalchemistryMaterials ChemistryElectronic effectPhysical and Theoretical ChemistryCoordination Chemistry Reviews
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Tuning the Optical Absorption of Sn-, Ge-, and Zn-Substituted Cs2AgBiBr6 Double Perovskites: Structural and Electronic Effects

2021

Lead-free halide double perovskites (DPs) are highly tunable materials in terms of chemical composition and optical properties. One of the most widely reported DPs is Cs2AgBiBr6, which is envisaged as a promising absorber for photovoltaics. Nevertheless, its bandgap (around 1.9−2.3 eV) remains too large for common tandem solar cells. In this work, we report the mechanochemical synthesis of Sn-, Ge-, and Zn-substituted Cs2AgBiBr6 in powder form; their bandgaps reach 1.55, 1.80, and 2.02 eV, respectively. These differences are rationalized through density functional theory calculations, demonstrating combined electronic and structural (disorder) effects introduced by the divalent metal-cation…

Materials scienceGeneral Chemical EngineeringMaterials ChemistryElectronic effectAnalytical chemistryDouble perovskiteGeneral ChemistryAbsorption (electromagnetic radiation)MaterialsCèl·lules fotoelèctriquesChemistry of Materials
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Intramolecular charge delocalization and nonlinear optical properties of Methyl 3-(4-methoxy phenyl) prop-2-enoate from vibrational spectra

2005

The density functional computations of MMP are performed at B3LYP/6-31G (d,p) level to derive equilibrium geometry, vibrational wavenumbers and intensities, and first hyperpolarizability. Large NLO efficiency predicted for the first time in this new class of compounds has been confirmed by powder efficiency experiments. DFT calculation reveals that endocyclic angle at the junction of the propenoate group and the phenyl ring is decreased from 120° by 2.5°, whereas two neighbouring angles around the ring are increased by 2.1° and 1.2° respectively, associated with intramolecular charge transfer interaction. The vibrational spectra confirm the charge transfer interaction between -COOCH3 group…

Materials sciencePhysics and Astronomy (miscellaneous)HyperpolarizabilityRing (chemistry)Acceptorsymbols.namesakeCrystallographyDelocalized electronIntramolecular forceElectronic effectsymbolsMoleculeRaman spectroscopyInstrumentationLaser Physics Letters
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Experimental dissociation energies of metal cluster dications and their interpretation in a liquid-drop model with empirical corrections

1999

The dissociation energies of doubly charged silver cluster ions in the size range $9l~nl~25$ are measured by multiple collision induced dissociation. They are compared to the dissociation energies of singly charged clusters. To this end, the latter are used to calculate shell corrections in a macroscopic-microscopic model. Good agreement between the resulting predictions of the dissociation energies of the doubly charged systems and the experimental values is found, which indicates the strong influence of electronic effects on the stability of small silver clusters.

PhysicsCollision-induced dissociationSilver clusterAtomic and Molecular Physics and OpticsDissociation (chemistry)IonMetalSemi-empirical mass formulavisual_artPhysics::Atomic and Molecular Clustersvisual_art.visual_art_mediumCluster (physics)Electronic effect[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]Physics::Chemical PhysicsAtomic physicsPhysical Review A
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Electronic effects in the production of smali dianionic gold clusters by electron attachment on to stored Au-n, n = 12-28

1999

Abstract Single charged gold clusters Au n -, 12  n  28, are stored in a Penning trap, size selected and transformed into dianions, Au2- n by the application of an electron beam. At the onset of dianion production, that is that range of cluster sizes n where the smallest doubly charged clusters are observed, the measured intensity ratio of the dianions to their precursors is not a continuous function of cluster size. Instead, there is a strong odd-even effect and a comparatively intense signal of Au2-18 The observed structures are very reminiscent of similar phenomena in the abundance spectra of metal clusters as observed by Knight et al. (1984, Phys. Rev. Lett., 52, 2141), which gave ris…

Range (particle radiation)Abundance (chemistry)ChemistryGeneral Chemical EngineeringJelliumGeneral Physics and AstronomyPenning trapMolecular physicsSpectral linePhysics::Atomic and Molecular ClustersElectronic effectCluster (physics)Cathode rayAtomic physicsPhilosophical Magazine B
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On the mechanism of the addition of organolithium reagents to cinnamic acids

2001

Abstract The regioselectivity of the addition of tert-butyllithium to cinnamic acid is subject to reaction conditions and to substituent electronic effects. Significant effects are observed in the presence of several additives including a radical trap such as α-methylstyrene. Competition experiments by addition of the organolithium reagent to mixtures of substituted cinnamic acids show that the relative rates of both conversion of the starting acids and formation of the 1,3-adducts are subject to electronic effects, whereas rates for 1,4-addition are independent of the substituents. These features are in agreement with a polar addition mechanism, but a fast SET equilibrium followed by slow …

Reaction conditionsChemistryOrganic ChemistrySubstituentRegioselectivitychemistry.chemical_elementOrganolithium reagentBiochemistryMedicinal chemistryCinnamic acidchemistry.chemical_compoundReagentDrug DiscoveryElectronic effectOrganic chemistryLithiumTetrahedron
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Effect of Cyanato, Azido, Carboxylato, and Carbonato Ligands on the Formation of Cobalt(II) Polyoxometalates: Characterization, Magnetic, and Electro…

2007

Five Co(II) silicotungstate complexes are reported. The centrosymmetric heptanuclear compound K(20)[{(B-beta-SiW(9)O(33)(OH))(beta-SiW(8)O(29)(OH)(2))Co(3)(H(2)O)}(2)Co(H(2)O)(2)]47 H(2)O (1) consists of two {(B-beta-SiW(9)O(33)(OH))(beta-SiW(8)O(29)(OH)(2))Co(3)(H(2)O)} units connected by a {CoO(4)(H(2)O)(2)} group. In the chiral species K(7)[Co(1.5)(H(2)O)(7))][(gamma-SiW(10)O(36))(beta-SiW(8)O(30)(OH))Co(4)(OH)(H(2)O)(7)]36 H(2)O (2), a {gamma-SiW(10)O(36)} and a {beta-SiW(8)O(30)(OH)} unit enclose a mononuclear {CoO(4)(H(2)O)(2)} group and a {Co(3)O(7)(OH)(H(2)O)(5)} fragment. The two trinuclear Co(II) clusters present in 1 enclose a mu(4)-O atom, while in 2 a mu(3)-OH bridging group co…

Stereochemistry010405 organic chemistryOrganic ChemistryCenter (category theory)chemistry.chemical_elementGeneral ChemistryGeneral Medicine[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistryElectrochemistry01 natural sciencesRedoxCatalysis0104 chemical sciencesRedox ActivityParamagnetismCrystallographychemistryElectronic effectCompound K[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]CobaltComputingMilieux_MISCELLANEOUS
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