Search results for "Covalent bond"

showing 10 items of 305 documents

In-depth structural analysis of lanthanoid coordination networks based on a flexible tripodal zwitterionic isonicotinate ligand

2019

Crystallizing metal–organic frameworks (MOFs) has been studied using a tripodal pyridinecarboxylic acid derivative ligand and selected lanthanoid salts. The zwitterionic ligand, 1,1′,1′′-((2,4,6-trimethylbenzene-1,3,5-triyl)tris(methylene))tris(pyridin-1-ium-4-carboxylate) (TTTPC) introduced as a bromide salt, forms coordination networks in aqueous environments and under ambient conditions with neodymium bromide, trifluoromethanesulfonate (OTf) or acetate (OAc). Seven structures are elucidated in detail using single crystal X-ray crystallography. TTTPC NdBr3, TTTPC NdBr2OTf, TTTPC NdBr(OTf)2 and TTTPC Nd(OTf)3 are porous 3D networks with similar ligand–metal and ligand–anion interactions, b…

LanthanideMaterials science02 engineering and technologyCrystal structureorganometalliyhdisteet010402 general chemistry01 natural scienceschemistry.chemical_compoundBromideGeneral Materials Sciencestructural analysisIsostructuralpolymeeritta116metal-organic frameworksLigandGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter Physicskiteetrakenneanalyysi0104 chemical sciencesCrystallographychemistryNetwork covalent bonding0210 nano-technologySingle crystalTrifluoromethanesulfonateCrystEngComm
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Novel structural phases and the properties of LaX (X = P, As) under high pressure: first-principles study

2020

The particle swarm optimization algorithm and density functional theory (DFT) are extensively performed to determine the structures, phase transition, mechanical stability, electronic structures, and thermodynamic properties of lanthanide phosphates (LaP and LaAs) in the pressure range of 0 to 100 GPa. Two novel high-pressure structures of LaP and LaAs are first reported here. It is found that LaX (X = P, As) undergo a phase transition from NaCl-type structure (Fm3m) to CsCl-type structure (P4/mmm) at 19.04 GPa and 17.22 GPa, respectively. With the elevation of the pressure, C2/m-LaP and Imma-LaAs are the most stable structures up to 70.08 GPa and 85.53 GPa, respectively. Finally, the analy…

LanthanidePhase transitionMaterials scienceGeneral Chemical EngineeringIonic bondingThermodynamics02 engineering and technologyGeneral Chemistry021001 nanoscience & nanotechnology01 natural sciencesPressure rangeCovalent bondMechanical stabilityHigh pressure0103 physical sciencesDensity functional theory010306 general physics0210 nano-technologyRSC Advances
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Sheets of alternating chirality in the structure of a novel iron(III) complex with a cyclic oxamide ligand

1998

An organic–metalloorganic analogue of the inorganic clay minerals has been obtained from the cyclization of N,N′-bis(ethoxalyl)phenylenediamine in basic medium in the presence of iron(III) ions leading to formation of a cyclic oxamide ligand (L). The combination of intramolecular (covalent) interactions between metal and ligand and intermolecular (noncovalent) ionic interactions creates a novel layered compound with an intriguing crystal structure (shown on the right).

LigandStereochemistryOxamideIntermolecular forceIonic bondingGeneral ChemistryCrystal structureCatalysisCrystallographychemistry.chemical_compoundchemistryCovalent bondIntramolecular forceChirality (chemistry)
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Polymerization of Lipid and Lysolipid Like Diacetylenes in Monolayers and Liposomes

1980

The bilayer type lipid membrane has a variety of important functions that are necessary in order to sustain life. A lot of these functions have been studied with artificial model membranes such as black lipid membranes (BLM) or liposomes. A great disadvantage of all these models is their instability — BLM for instance can only exist for minutes or hours and only under the presence of water. Therefore, it was the aim of this work to produce simple model membranes that can retain their structure under a variety of test conditions. The route chosen to obtain such membranes was through the polymerization of lipid and lysolipid like molecules in monolayers at the gas-water interface or in liposo…

LiposomeMembraneMaterials sciencePolymerizationCovalent bondBilayerMonolayerBiophysicsMoleculeLipid bilayerPhotochemistry
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Arginine clustering on calix[4]arene macrocycles for improved cell penetration and DNA delivery

2013

Cell-penetrating peptides are widely used as molecular transporters for the internalization inside cells of various cargo, including proteins and nucleic acids. A special role is played by arginine-rich peptides and oligoarginines covalently linked or simply mixed with the cargo. Here we report cell-penetrating agents in which arginine units are clustered on a macrocyclic scaffold. Instead of using long peptides, four single arginine units were covalently attached to either the upper or lower rim of a calix[4]arene, kept in the cone conformation building a ‘parallel’ cyclic array. These new macrocyclic carriers show high efficiency in DNA delivery and transfection in a variety of cell lines.

Macrocyclic CompoundsArginineStereochemistrymedia_common.quotation_subjectGeneral Physics and AstronomyArginineTransfectionGeneral Biochemistry Genetics and Molecular BiologyArticlechemistry.chemical_compoundPhenolsCalixareneAnimalsHumansInternalizationmedia_commonMultidisciplinaryGeneral ChemistryTransfectionDNAchemistryBiochemistryCovalent bondCell cultureNucleic acidCalixarenesDNANature Communications
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Synthesis of Soluble Donor-Acceptor Double-Cable polymers based on polythiophene and tetracyanoanthraquinodimethane (TCAQ).

2003

[structure: see text] Novel suitably functionalized tetracyanoanthraquinodimethane (TCAQ) derivatives covalently linked to thiophene moieties have been synthesized. The thiophene-based monomers have been chemically polymerized and copolymerized to yield new and soluble donor-acceptor double-cable polymers. The absorption and emission data reveal that the optical properties can be finely tuned by modifying the ratio of monomers in the copolymerization process.

Magnetic Resonance SpectroscopyFotoricettoriPolymersAnthraquinonesThiophenesmacromolecular substancesBiochemistryIndicators and Reagentchemistry.chemical_compoundSpettroscopiaThiophenePolymer chemistryCopolymerThiophenePhysical and Theoretical ChemistryPolymerPolimerichemistry.chemical_classificationOrganic Chemistrytechnology industry and agriculturePolymerSettore CHIM/06 - Chimica OrganicaMonomerchemistryPolymerizationCovalent bondLuminescent MeasurementLuminescent MeasurementsPolythiopheneMolecular MedicineAnthraquinoneIndicators and ReagentsSpectrophotometry UltravioletAbsorption (chemistry)Celle solariSintesi
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Metal complexes of phenobarbituric acid. Chelating behavior of the phenobarbiturate ring. Anticonvulsant properties of the K2[Cu(N-methylphenobarbitu…

1992

Abstract Na2Ni(phenobarbiturato)4·3H2O, Na2Ni3(phenobarbiturato)2(OH)6·4H2O, and NaZn(phenobarbiturato)2(OH)·H2O derivatives were prepared from Ni(II) and Zn(II) and phenobarbital. The Na2Ni(phenobarbiturato)4·3H2O complex is diamagnetic and isostructural with the complex previously reported, Na2Cu(phenobarbiturato)4, suggesting a square-planar environment around the Ni(II) ion. The DMF solutions of this complex show the existence of two species. The EPR spectra of the Cu(II) doped complex show the hyperfine and superhyperfine structures. The covalence parameters α2, β2, and δ2 show a strong bonding in the equatorial plane and suggests the formation of a [CuN4] chromophore. The anticonvulsa…

Magnetic Resonance SpectroscopyStereochemistryMephobarbitalBiochemistrylaw.inventionIonInorganic ChemistryMetalStructure-Activity RelationshiplawSeizuresAnimalsChelationIsostructuralElectron paramagnetic resonanceHyperfine structureChelating AgentsElectroshockMolecular StructureChemistryElectron Spin Resonance SpectroscopyChromophoreCrystallographyCovalent bondMetalsvisual_artPhenobarbitalvisual_art.visual_art_mediumAnticonvulsantsCopperJournal of inorganic biochemistry
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Disulfide-crosslinked hyaluronan-gelatin hydrogel films: a covalent mimic of the extracellular matrix for in vitro cell growth

2003

A new disulfide crosslinking method was developed for the preparation of blended hyaluronan (HA)-gelatin hydrogels to form a synthetic, covalently linked mimic of the extracellular matrix (ECM). The HA and gelatin were chemically modified using 3,3′-dithiobis(propionic hydrazide) (DTP). After reduction with dithiothreitol (DTT), the thiol derivatives of HA (HA-DTPH) and gelatin (gelatin-DTPH) were obtained and characterized. To minimize interference with biological function, the degree of substitution of HA-DTPH and gelatin-DTPH was kept below 50%. Solutions of HA-DTPH and gelatin-DTPH in varying blends (20%, 40%, 60%, 80% gelatin) were prepared in 1% w/v NaCl and crosslinked by disulfide b…

Magnetic Resonance SpectroscopyTime FactorsBiocompatible MaterialsSodium ChlorideGelatinHydrogel Polyethylene Glycol DimethacrylateDithiothreitolCell growthMicechemistry.chemical_compoundHyaluronic acidDisulfidesHyaluronic Acidchemistry.chemical_classificationMice Inbred BALB CBiomaterialHydrogels3T3 CellsMethylgalactosidesExtracellular MatrixCross-Linking ReagentsMechanics of MaterialsCovalent bondSelf-healing hydrogelsThiolCell DivisionBiotechnologyfood.ingredientMaterials scienceCell SurvivalBiomedical EngineeringBiophysicsHyaluronoglucosaminidaseBioengineeringmacromolecular substancesIn Vitro TechniquesHydrazideBiomaterialsDisulfidefoodPolymer chemistryCell AdhesionAnimalsSulfhydryl Compoundstechnology industry and agricultureFibroblastsBiomaterialDithiothreitolModels ChemicalchemistryCeramics and CompositesGelatinPolystyrenesBiomaterials
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Fluorovinylsulfones and -Sulfonates as Potent Covalent Reversible Inhibitors of the Trypanosomal Cysteine Protease Rhodesain: Structure–Activity Rela…

2021

Rhodesain is a major cysteine protease of Trypanosoma brucei rhodesiense, a pathogen causing Human African Trypanosomiasis, and a validated drug target. Recently, we reported the development of α-halovinylsulfones as a new class of covalent reversible cysteine protease inhibitors. Here, α-fluorovinylsulfones/-sulfonates were optimized for rhodesain based on molecular modeling approaches. 2d, the most potent and selective inhibitor in the series, shows a single-digit nanomolar affinity and high selectivity toward mammalian cathepsins B and L. Enzymatic dilution assays and MS experiments indicate that 2d is a slow-tight binder (Ki = 3 nM). Furthermore, the nonfluorinated 2d-(H) shows favorabl…

MaleBiodistributionVinyl CompoundsMolecular modelTrypanosoma brucei bruceiCysteine Proteinase InhibitorsMiceStructure-Activity RelationshipParasitic Sensitivity TestsIn vivoDrug DiscoveryAnimalsHumansStructure–activity relationshipSulfonesEnzyme Assayschemistry.chemical_classificationMolecular StructureChemistryTrypanosoma brucei rhodesienseTrypanocidal AgentsCysteine proteaseMolecular Docking SimulationCysteine EndopeptidasesKineticsEnzymeBiochemistryCovalent bondMolecular MedicineFemaleSulfonic AcidsHeLa CellsProtein BindingJournal of Medicinal Chemistry
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Characterization of New Organic Nitrate Hybrid Drugs Covalently Bound to Valsartan and Cilostazol

2012

Background and Purpose: Organic nitrates represent a group of nitrovasodilators that are clinically used for the treatment of ischemic heart disease. With the present studies we synthesized and characterized new organic nitrate hybrid molecules. Compounds CLC-1265 (valsartan mononitrate) and CLC-1280 (valsartan dinitrate) are derivatives of the angiotensin receptor blocker valsartan, with CLC-1265 containing a single organic nitrate linker and CLC-1280 also containing a second, different linker. Compounds CLC-2000 (cilostazol mononitrate) and CLC-2100 (cilostazol dinitrate) are nitrate derivatives of the phosphodiesterase III inhibitor cilostazol. All compounds are designed as hybrid molecu…

MaleVasodilator AgentsTetrazoleschemistry.chemical_elementmedicine.disease_causeOxygenchemistry.chemical_compoundNitratemedicineAnimalsOrganic chemistryRats WistarPharmacologyNitratesValineGeneral MedicineIn vitroCilostazolRatsCilostazolOxidative StressValsartanchemistryVasoconstrictionCovalent bondValsartanLinkerPlatelet Aggregation InhibitorsOxidative stressmedicine.drugPharmacology
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