Search results for "C h bond"

showing 6 items of 6 documents

Insights into the decomposition pathway of a lutetium alkylamido complex via intramolecular C–H bond activation

2017

Abstract Synthesis, characterization and reaction chemistry of lutetium alkylamido LLu(CH2SiMe3)(NHCPh3) (2), L = 2,5-[Ph2P=N(4-iPrC6H4)]2N(C4H2)–, is reported. Complex 2 undergoes cyclometalation of the NHCPh3 ligand at elevated temperatures to produce the orthometalated complex LLu(κ2−N,C-(NHCPh2(C6H4))) (3) which converts to 0.5 equivalents of bis(amido) LLu(NHCPh3)2 (4) upon heating at 80 °C for 24 h. Reaction of complex 2 with 4-dimethylaminopyridine (DMAP) does not promote alkane elimination nor imido formation. A kinetic analysis of the thermal decomposition of complex 2, supported by deuterium labelling studies and computational analysis (PBE0/def2-TZVP/SDD(Lu)), indicate direct Csp…

Alkanechemistry.chemical_classificationC h bond010405 organic chemistryLigandStereochemistryOrganic ChemistryThermal decompositionchemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryLutetium3. Good health0104 chemical scienceslutetiumInorganic ChemistryDecomposition pathwaychemistryDeuteriumIntramolecular forceMaterials Chemistrycoordination complexesPhysical and Theoretical Chemistryta116Journal of Organometallic Chemistry
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Cover Feature: Palladium‐Catalyzed Electrophilic C–H‐Bond Fluorination: Mechanistic Overview and Supporting Evidence (Eur. J. Org. Chem. 2‐3/2019)

2018

C h bondchemistryFeature (computer vision)Organic ChemistryElectrophilechemistry.chemical_elementCover (algebra)Physical and Theoretical ChemistryMedicinal chemistryPalladiumCatalysisEuropean Journal of Organic Chemistry
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Alkali-metal induced C,C-bond cleavage, C,H-bond cleavage, andcyclopolimerization in 1,5-hexadienes

1988

Abstract Reaction of the 1,5-dienes 3,4-homotropilidene ( 3 ) and 2,5-diphenylhexa-1,5-diene ( 4 ) with alkali metals induces C,H-bond cleavage (hydride formation) and cyclopolymerization, respectively, in contrast to the C,C-bond cleavage observed in semibullvalene and barbaralane.

C h bondchemistryHydridePotassiumOrganic ChemistryDrug Discoverychemistry.chemical_elementCleavage (crystal)Alkali metalPhotochemistryBiochemistryMedicinal chemistryBond cleavageTetrahedron Letters
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A Germanium Isocyanide Complex Featuring (n -> π*) Back-Bonding and Its Conversion to a Hydride/Cyanide Product via C–H Bond Activation under Mild Co…

2012

Reaction of the diarylgermylene Ge(Ar(Me(6)))(2) [Ar(Me(6)) = C(6)H(3)-2,6-(C(6)H(2)-2,4,6-(CH(3))(3))(2)] with tert-butyl isocyanide gave the Lewis adduct species (Ar(Me(6)))(2)GeCNBu(t), in which the isocyanide ligand displays a decreased C-N stretching frequency consistent with an n → π* back-bonding interaction. Density functional theory confirmed that the HOMO is a Ge-C bonding combination between the lone pair of electrons on the germanium atom and the C-N π* orbital of the isocyanide ligand. The complex undergoes facile C-H bond activation to produce a new diarylgermanium hydride/cyanide species and isobutene via heterolytic cleavage of the N-Bu(t) bond.

Models MolecularC h bondCyanidesLigandHydrideGermaniumIsocyanideCyanidechemistry.chemical_elementGermaniumHydrogen BondingGeneral ChemistryPhotochemistryCrystallography X-RayBiochemistryMedicinal chemistryCatalysisAdductchemistry.chemical_compoundColloid and Surface ChemistrychemistryOrganometallic Compoundsta116Pi backbondingHydrogenJournal of the American Chemical Society
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Palladium‐Catalyzed Electrophilic C–H‐Bond Fluorination: Mechanistic Overview and Supporting Evidence

2018

International audience; Palladium-catalyzed electrophilic fluorination is a particularly attractive and challenging synthetic issue. Because of the rapid evolution of this topic, a critical point on the mechanistic and experimental advances is provided herein. In the present review, we focused on current mechanistic understanding in electrophilic fluorination (and related halogenations) catalyzed by palladium, mainly with N-directing group. Our discussion is based on the well-characterized or calculated pertinent metal species and intermediates used for analyzing the plausible catalytic cycles. A particular effort has been devoted to gathering supporting data for the putative species involv…

Reaction mechanismC h bond[CHIM.ORGA]Chemical Sciences/Organic chemistry010405 organic chemistryChemistryReaction mechanismsOrganic Chemistrychemistry.chemical_element[CHIM.CATA]Chemical Sciences/Catalysis010402 general chemistry01 natural sciencesMedicinal chemistryCatalysis Fluorination0104 chemical sciencesCatalysisC–H halogenationElectrophilePhysical and Theoretical ChemistryFluorinated compoundsPalladiumPalladiumEuropean Journal of Organic Chemistry
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A Quantitative Model for Alkane Nucleophilicity Based on C−H Bond Structural/Topological Descriptors

2020

A first quantitative model for calculating the nucleophilicity of alkanes is described. A statistical treatment was applied to the analysis of the reactivity of 29 different alkane C−H bonds towards in situ generated metal carbene electrophiles. The correlation of the recently reported experimental reactivity with two different sets of descriptors comprising a total of 86 parameters was studied, resulting in the quantitative descriptor‐based alkane nucleophilicity (QDEAN) model. This model consists of an equation with only six structural/topological descriptors, and reproduces the relative reactivity of the alkane C−H bonds. This reactivity can be calculated from parameters emerging from th…

Reactivity modelNucleophilicity010402 general chemistryTopology01 natural sciencesCatalysisC-H functionalizationMetalchemistry.chemical_compoundNucleophile23 QuímicaReactivity (chemistry)Alkanechemistry.chemical_classificationC h bond010405 organic chemistryChemistryGeneral MedicineGeneral ChemistryQuantitative model0104 chemical sciencesvisual_artElectrophileAlkanes descriptorsvisual_art.visual_art_mediumCarbeneAngewandte Chemie International Edition
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