Search results for "nitrile"

showing 10 items of 1539 documents

A Chemosensor Bearing Sulfonyl Azide Moieties for Selective Chromo-Fluorogenic Hydrogen Sulfide Recognition in Aqueous Media and in Living Cells

2014

A simple chemodosimeter based on a sulfonyl azide dye (1-Az), which displayed a highly selective response toward hydrogen sulfide anion in mixed aqueous media, was synthesised and characterised. Addition of hydrogen sulfide to acetonitrile/HEPES 1:1 solutions of 1-Az induced a clear colour change from red-orange to yellow, which was easily detected by the naked eye, and by an enhancement in the emission intensity. Other common anions, thiol-containing biomolecules and oxidants did not induce any noticeable colour or fluorescence modulation in the probe. The chemodosimeter also showed a good sensitivity, with limits of detection of 11.91 and 0.63 μM by using UV/Vis or fluorescence measuremen…

HEPESSulfonylchemistry.chemical_classificationHydrogen sulfideOrganic Chemistrychemistry.chemical_elementPhotochemistryFluorescenceSulfurchemistry.chemical_compoundchemistryAzideNaked eyePhysical and Theoretical ChemistryAcetonitrileEuropean Journal of Organic Chemistry
researchProduct

Interaction Between Amines and N-Haloimides: a New Motif for Unprecedentedly Short Br...N and I...N Halogen Bonds

2011

The complexes of N-bromosuccinimide or N-iodosuccinimide with a halogen bond acceptor, either 1,4-diazabicyclo[2.2.2]octane (DABCO), hexamethylenetetramine (HMTA) or 1,3,5-triazine (TRZ), led to an unprecedentedly strong (CO)2N–X⋯N halogen bond synthon (X = Br or I) determined from crystal structures of [DABCO]·[NBS]22, [HMTA]·[NBS]22, [TRZ]·[NIS]22 and [HMTA]·[NIS]44. The Br⋯N distances with DABCO and with HMTA donors were 2.347 A and 2.414 A being remarkably shorter (31% and 29%) than the sum of the VDW radii of nitrogen and bromide atoms, respectively. The corresponding I⋯N distances with HMTA and TRZ were 2.549 A and 2.596 A (27.8% and 26.4% less than the sum of the VDW radii of N and I…

Halogen bondChemistryInorganic chemistrySynthonGeneral ChemistryDABCOCrystal structureCondensed Matter Physicschemistry.chemical_compoundCrystallographyBromideHalogenGeneral Materials ScienceHexamethylenetetramineAcetonitrileta116Crystal Engineering Communications
researchProduct

Synthesis of Highly Functionalized Fluorinated Cispentacin Derivatives

2012

Fluorinated highly functionalized cispentacin derivatives were synthetised starting from an unsaturated bicyclic b-lactam through C¼C bond functionalization via the dipolar cycloaddition of a nitrile oxide, isoxazoline opening, and fluorination by OH/F exchange.

HalogenationBicyclic moleculeNitrileOxideOxidesBioengineeringCispentacinGeneral ChemistryGeneral Medicinebeta-LactamsBiochemistryCycloadditionchemistry.chemical_compoundchemistryCyclizationNitrilesMolecular MedicineSurface modificationOrganic chemistryCycloleucineta116Molecular BiologyChemistry & Biodiversity
researchProduct

Fluorine Scan of Inhibitors of the Cysteine Protease Human Cathepsin L: Dipolar and Quadrupolar Effects in the π-Stacking of Fluorinated Phenyl Rings…

2016

The π-stacking of fluorinated benzene rings on protein backbone amide groups was investigated, using a dual approach comprising enzyme-ligand binding studies complemented by high-level quantum chemical calculations. In the experimental study, the phenyl substituent of triazine nitrile inhibitors of human cathepsin L (hCatL), which stacks onto the peptide amide bond Gly67-Gly68 at the entrance of the S3 pocket, was systematically fluorinated, and differences in inhibitory potency were measured in a fluorimetric assay. Binding affinity is influenced by lipophilicity (clog P), the dipole and quadrupole moments of the fluorinated rings, but also by additional interactions of the introduced fluo…

HalogenationNitrileStereochemistryCathepsin LStackingSubstituentchemistry.chemical_elementPeptideCysteine Proteinase InhibitorsMolecular Dynamics SimulationLigands010402 general chemistry01 natural sciencesBiochemistrychemistry.chemical_compoundAmideDrug DiscoveryHumansPeptide bondFluorometryGeneral Pharmacology Toxicology and PharmaceuticsTriazinePharmacologychemistry.chemical_classificationBinding SitesTriazines010405 organic chemistryOrganic ChemistryFluorineAmidesProtein Structure Tertiary0104 chemical sciencesKineticschemistryFluorineQuantum TheoryMolecular MedicineHydrophobic and Hydrophilic InteractionsChemMedChem
researchProduct

New Dinuclear Catalysts Rh2(N−O)2[(C6H4)P(C6H5)2]2 with Imidate Ligands:  Synthesis and Isomerization from Head-to-Tail to Head-to-Head Configuration…

2001

Two new dirhodium(II) catalysts of general formula Rh(2)(N-O)(2)[(C(6)H(4))P(C(6)H(5))(2)](2) (N-O = C(4)H(4)NO(2)) are prepared, starting from Rh(2)(O(2)CCH(3))(2)(PC)(2)L(2) [PC = (C(6)H(4))P(C(6)H(5))(2) (head-to-tail arrangement); L = HO(2)CCH(3)]. The thermal reaction of Rh(2)(O(2)CCH(3))(2)(PC)(2).L(2) with the neutral succinimide stereoselectively gives one compound that according to the X-ray structure determination has the formula Rh(2)(C(4)H(4)NO(2))(2)[(C(6)H(4))P(C(6)H(5))(2)](2) (1). It corresponds to the polar isomer with two bridging imidate ligands in a head-to-head configuration. However, stepwise reaction of Rh(2)(O(2)CCH(3))(2)(PC)(2).L(2) with (CH(3))(3)SiCl and potassiu…

Head to headStereochemistryPotassiumchemistry.chemical_elementMedicinal chemistryCatalysisInorganic Chemistrychemistry.chemical_compoundchemistrySuccinimideStepwise reactionPhysical and Theoretical ChemistryEnantiomerAcetonitrileIsomerizationInorganic Chemistry
researchProduct

Partition Behavior of Anilines in Bulk‐Phase and High‐Performance Liquid Chromatographic Systems: Influence on Correlation with Biological Constants

1992

Abstract The partition behavior of a mixed series of ring‐substituted anilines in reversed‐phase high‐performance liquid chromatographic systems is substantially different from that observed in a classical bulk‐phase partition system with n ‐heptane as the aprotic reference solvent. On the basis of the equivalence of each ring substituent in the p ‐straight‐chain methylene groups (ν value) as a function of the fraction of organic solvent (acetonitrile or methanol) in the mobile phase, the biased partition behavior for imperfect homologues and heterologues is verified relative to that of perfect homologues. This behavior was tentatively attributed, mainly, to differences in the hydrogen bond…

HeptaneAcetonitrilesAniline CompoundsChromatographyChemistryMethanolSubstituentAnalytical chemistryPharmaceutical ScienceIntestinal absorptionSolventPartition coefficientchemistry.chemical_compoundReaction rate constantPartition (number theory)AcetonitrileChromatography High Pressure LiquidJournal of Pharmaceutical Sciences
researchProduct

New Cathepsin Inhibitors to Explore the Fluorophilic Properties of the S 2 Pocket of Cathepsin B: Design, Synthesis, and Biological Evaluation

2011

5 páginas, 1 figura, 2 tablas -- PAGS nros. 5256-5260

Hydrocarbons FluorinatedStereochemistryStereoisomerismhydrolasesstereoselectivityCatalysisCathepsin BCathepsin BNitrilesinhibitorsCombinatorial Chemistry TechniquesHumansMoleculefluorinated ligandsBiological evaluationCathepsinMolecular StructureCombinatorial Chemistry TechniquesligandsChemistryOrganic ChemistryStereoisomerismDipeptidesGeneral Chemistryfluorinated fluorinatedDesign synthesisDrug DesignpeptidesStereoselectivityChemistry – A European Journal
researchProduct

An efficient synthesis of new fluorinated uracil derivatives.

2003

A series of potentially biologically active fluorinated uracil derivatives has been prepared in three steps from oxazolines and fluorinated nitriles with good chemical yields. Fustero Lardies, Santos, Santos.Fustero@uv.es ; Sanz Cervera, Juan Francisco, Juan.F.Sanz@uv.es ; Asensio Martinez, Amparo, Amparo.Asensio@uv.es

Hydrocarbons FluorinatedSynthesis ; Fluorinated uracil derivatives ; Oxazolines ; Biologically activeAntimetabolitesUNESCO::QUÍMICABiologically active:QUÍMICA::Química orgánica [UNESCO]UracilGeneral MedicineOxazolines:QUÍMICA [UNESCO]Combinatorial chemistryFluorinated uracil derivativesSynthesischemistry.chemical_compoundchemistryNitrilesUNESCO::QUÍMICA::Química orgánicaUracilOxazolesChemical communications (Cambridge, England)
researchProduct

(Z)-Amino­(2-methyl-3-oxoisoindolin-1-yl­idene)acetonitrile

2009

The asymmetric unit of the title compound, C11H9N3O, contains two independent and nearly identical molecules (A and B). Molecule A can be transformed to B using a rotation of approximately 85° around the [111] direction. Each A molecule is connected to three B molecules via N—H...N and N—H...O hydrogen bonds and vice versa. Centrosymmetrically related molecules of the same residue form π–π interactions with centroid–centroid distances of 4.326 (1) and 3.826 (1) Å for the benzene rings of molecules A and B, respectively.

Hydrogen bondGeneral ChemistryCondensed Matter PhysicsBioinformaticsOrganic Paperslcsh:ChemistryResidue (chemistry)chemistry.chemical_compoundCrystallographylcsh:QD1-999chemistryGeneral Materials ScienceBenzeneAcetonitrileActa Crystallographica Section E: Structure Reports Online
researchProduct

Selective Formation of S4- and T-Symmetric Supramolecular Tetrahedral Cages and Helicates in Polar Media Assembled via Cooperative Action of Coordina…

2020

We report on the synthesis and self-assembly study of novel supramolecular monomers encompassing quadruple hydrogen-bonding motifs and metal-coordinating 2,2'-bipyridine units. When mixed with metal ions such as Fe2+ or Zn2+, the tetrahedron cage complexes are formed in quantitative yields and full diastereoselectivity, even in highly polar acetonitrile or methanol solvents. The symmetry of the complexes obtained has been shown to depend critically on the flexibility of the ligand. Restriction of the rotation of the hydrogen-bonding unit with respect to the metal-coordinating site results in a T-symmetric cage, whereas introducing flexibility either through a methylene linker or rotating be…

Hydrogen bondLigandMetal ions in aqueous solutionSupramolecular chemistryGeneral Chemistry010402 general chemistryRing (chemistry)01 natural sciencesBiochemistryCatalysis0104 chemical scienceschemistry.chemical_compoundCrystallographyBipyridineColloid and Surface ChemistrychemistryMethyleneAcetonitrileJournal of the American Chemical Society
researchProduct