Search results for "Organic Chemical"

showing 10 items of 733 documents

Effects of Metal-Organic Chemical Vapour Deposition grown seed layer on the fabrication of well aligned ZnO nanorods by Chemical Bath Deposition

2011

Well aligned, long and uniform ZnO nanorods have been reproducibly fabricated adopting a two-steps Metal-Organic Chemical Vapour Deposition (MOCVD) and Chemical Bath Deposition (CBD) fabrication approaches. Thin (<100 nm) ZnO buffer layers have been seeded on silicon substrates by MOCVD and ZnO layers have been subsequently grown, in form of well textured nanorods, using CBD. It has been found that the structure and thickness of the seed layer strongly influence the final morphology and the crystal texturing of ZnO nanorods as well as the CBD growth rate. There is, in addition, a strong correlation between morphologies of CBD grown ZnO nanorods and those of the seed layer underneath. Thus, …

Metal-Organic Chemical Vapour Deposition; Chemical Bath Deposition; Zinc oxideMetal-Organic Chemical Vapour Deposition; Chemical Bath Deposition; Zinc oxide; Nanorods; Scanning Electron MicroscopyMaterials scienceFabricationScanning electron microscopeChemical Bath DepositionMetals and Alloyschemistry.chemical_elementNanotechnologySurfaces and InterfacesChemical vapor depositionZincNanorodSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryZinc oxideMaterials ChemistryNanorodMetalorganic vapour phase epitaxyScanning Electron MicroscopyLayer (electronics)Metal-Organic Chemical Vapour DepositionChemical bath deposition
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Factors Determining Sensitivity and Resistance of Tumor Cells to Arsenic Trioxide

2012

Previously, arsenic trioxide showed impressive regression rates of acute promyelocytic leukemia. Here, we investigated molecular determinants of sensitivity and resistance of cell lines of different tumor types towards arsenic trioxide. Arsenic trioxide was the most cytotoxic compound among 8 arsenicals investigated in the NCI cell line panel. We correlated transcriptome-wide microarray-based mRNA expression to the IC(50) values for arsenic trioxide by bioinformatic approaches (COMPARE and hierarchical cluster analyses, Ingenuity signaling pathway analysis). Among the identified pathways were signaling routes for p53, integrin-linked kinase, and actin cytoskeleton. Genes from these pathways…

MicroarraysTumor PhysiologyCancer Treatmentlcsh:MedicineToxicologyArsenicalschemistry.chemical_compoundArsenic TrioxideBasic Cancer ResearchRNA NeoplasmArsenic trioxidelcsh:ScienceOligonucleotide Array Sequence AnalysisMultidisciplinaryintegumentary systemCytotoxinsOxidesTransfectionNeoplasm ProteinsGene Expression Regulation NeoplasticActin CytoskeletonOncologyMedicineThioredoxinSignal TransductionResearch Articleinorganic chemicalsAcute promyelocytic leukemiaToxic Agentschemistry.chemical_elementAntineoplastic AgentsBiologyComplementary and Alternative MedicineCell Line TumormedicineHumansRNA MessengerBiologyArseniclcsh:RComputational BiologyCancers and Neoplasmsmedicine.diseaseActin cytoskeletonMolecular biologychemistryDrug Resistance NeoplasmApoptosisCell culturelcsh:QPLoS ONE
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Stereoselective synthesis of the published structure of feigrisolide A. Structural revision of feigrisolides A and B.

2006

The total synthesis of the proposed structure of feigrisolide A is reported. Ethyl (S)-3-hydroxybutyrate was the chiral starting material. A Brown asymmetric allylation and an Evans aldol reaction were key steps of the synthesis. The NMR data of the synthetic product are different from those of the natural product. The published structure of feigrisolide A is therefore erroneous. A subsequent comparison of spectral data strongly suggests that feigrisolides A and B are identical with (-)-nonactic acid and (+)-homononactic acid, respectively.

Models MolecularMagnetic Resonance SpectroscopyStereochemistryMolecular ConformationStereoisomerismChemical synthesischemistry.chemical_compoundLactonesStructure-Activity RelationshipAldol reactionSpectral dataNatural productMolecular StructureChemistryorganic chemicalsOrganic ChemistryEnantioselective synthesisTotal synthesisStereoisomerismGeneral MedicineNuclear magnetic resonance spectroscopyNmr dataAnti-Bacterial AgentsProduct (mathematics)Aldol condensationStereoselectivityThe Journal of organic chemistry
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Tuning molecular self-assembly on bulk insulator surfaces by anchoring of the organic building blocks.

2013

Molecular self-assembly constitutes a versatile strategy for creating functional structures on surfaces. Tuning the subtle balance between intermolecular and molecule-surface interactions allows structure formation to be tailored at the single-molecule level. While metal surfaces usually exhibit interaction strengths in an energy range that favors molecular self-assembly, dielectric surfaces having low surface energies often lack sufficient interactions with adsorbed molecules. As a consequence, application-relevant, bulk insulating materials pose significant challenges when considering them as supporting substrates for molecular self-assembly. Here, the current status of molecular self-ass…

Models MolecularMaterials scienceAnchoringNanotechnologyInsulator (electricity)Dielectricmolecular adsorption530Molecular self-assemblyMoleculeGeneral Materials ScienceComputer Simulationnon-contact atomic forceOrganic Chemicalsinsulating surfacesMechanical EngineeringIntermolecular forceElectric Conductivityself-assemblymolecule-surface interactionsModels ChemicalMechanics of MaterialsMetalsmicroscopySelf-assemblyNon-contact atomic force microscopyAdvanced materials (Deerfield Beach, Fla.)
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Assembly of modular asymmetric organic-inorganic polyoxometalate hybrids into anisotropic nanostructures.

2010

Three organic-inorganic hybrid Mn-Anderson polyoxometalates (POMs), with both symmetrical and asymmetrical appended groups, have been synthesized, identified using electrospray mass spectrometry, and isolated using an approach that allows the three AA, BB, and AB compounds to be structurally characterized. Investigation of the self-assembly of the hybrids on hydrophilic surfaces reveals the formation of nanofibres with characteristics that reflect the nature of the substitution of the POM yielding a route to the programmed assembly of anisotropic hybrid nanostructures.

Models MolecularNanostructureElectrospray mass spectrometryChemistryGeneral ChemistryTungsten CompoundsBiochemistryCatalysisMass SpectrometryNanostructuresSelf-assembly Langmuir-Blodgett Scanning Force Microscopy Polyoxomethalates Hybrid Anysotropic NanostructuresColloid and Surface ChemistryChemical engineeringInorganic ChemicalsPolyoxometalateOrganic inorganicOrganic chemistryAnisotropyOrganic ChemicalsAnisotropySettore CHIM/02 - Chimica FisicaHybridJournal of the American Chemical Society
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Cubane-Type Mo3FeS44+,5+ Complexes Containing Outer Diphosphane Ligands: Ligand Substitution Reactions, Spectroscopic Studies, and Electronic Structu…

2012

A general protocol to access Mo(3)FeS(4)(4+) clusters selectively modified at the Fe coordination site is presented starting from the all-chlorine Mo(3)(FeCl)S(4)(dmpe)(3)Cl(3) (1) [dmpe = 1,2-bis(dimethylphosphane-ethane)] cluster and tetrabutylammonium salts (n-Bu(4)NX) (X = CN(-), N(3)(-), and PhS(-)). Clusters Mo(3)(FeX)S(4)(dmpe)(3)Cl(3) [X = CN(-) (2), N(3)(-) (3), and PhS(-) (4)] are prepared in high yield, and comparison of geometric and redox features upon modification of the coordination environment at the Fe site at parity of ligands at the Mo sites is also presented. The existence of the cubane-type Mo(3)FeS(4)(4+,5+) redox couple is demonstrated by cyclic voltammetry and for co…

Models MolecularPhosphinesIronInorganic chemistryMolecular ConformationElectronsInorganic chemicalsLigandsRedoxlaw.inventionInorganic Chemistrychemistry.chemical_compoundlawOrganometallic CompoundsReactionsDiphosphanePhysical and Theoretical ChemistryElectron paramagnetic resonanceMolybdenumLigandMagnetic PhenomenaSpectrum AnalysisDiphosphane ligandsMagnetic susceptibilityCrystallographychemistryCubaneQuantum TheoryDensity functional theoryCyclic voltammetryOxidation-ReductionSulfurInorganic Chemistry
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Supramolecular complexation for environmental control

2012

Supramolecular complexes offer a new and efficient way for the monitoring and removal of many substances emanating from technical processes, fertilization, plant and animal protection, or e.g. chemotherapy. Such pollutants range from toxic or radioactive metal ions and anions to chemical side products, herbicides, pesticides to drugs including steroids, and include degradation products from natural sources. The applications involve usually fast and reversible complex formation, due to prevailing non-covalent interactions. This is of importance for sensing as well as for separation techniques, where the often expensive host compounds can then be reused almost indefinitely. Immobilization of …

Models MolecularPollutantMacrocyclic CompoundsOrganic chemicalsChemistryComplex formationSupramolecular chemistryNew materialsNanotechnologyEquipment DesignGeneral ChemistryMetalsAnimalsHumansSeparation methodEnvironmental PollutantsOrganic ChemicalsEnvironmental Restoration and RemediationEnvironmental MonitoringChemical Society Reviews
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Isostructural Inorganic–Organic Piperazine-1,4-diium Chlorido- and Bromidoantimonate(III) Monohydrates: Octahedral Distortions and Hydrogen Bonds

2020

Halogenidoantimonate(III) monohydrates of the (C4H12N2)[SbX5]&middot

Models Molecularcrystal structureMaterials scienceHydrogenSurface PropertiesMolecular ConformationPharmaceutical Sciencechemistry.chemical_elementCrystal structurelow temperatureArticleAnalytical Chemistrylcsh:QD241-441lcsh:Organic chemistryDrug DiscoveryMoleculeHirshfeld surface analysisPhysical and Theoretical ChemistryIsostructuralOrganic Chemicalsoctahedral distortionPiperazineHydrogen bondOrganic Chemistryhydrogen bondinginorganic–organic hybrid materialsCrystallographyOctahedronchemistryChemistry (miscellaneous)Inorganic ChemicalsMolecular MedicineWater of crystallizationhalogenidoantimonates(III)Monoclinic crystal systemMolecules
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Crystal Structure of Perakine Reductase, Founding Member of a Novel Aldo-Keto Reductase (AKR) Subfamily That Undergoes Unique Conformational Changes …

2012

Perakine reductase (PR) catalyzes the NADPH-dependent reduction of the aldehyde perakine to yield the alcohol raucaffrinoline in the biosynthetic pathway of ajmaline in Rauvolfia, a key step in indole alkaloid biosynthesis. Sequence alignment shows that PR is the founder of the new AKR13D subfamily and is designated AKR13D1. The x-ray structure of methylated His(6)-PR was solved to 2.31 Å. However, the active site of PR was blocked by the connected parts of the neighbor symmetric molecule in the crystal. To break the interactions and obtain the enzyme-ligand complexes, the A213W mutant was generated. The atomic structure of His(6)-PR-A213W complex with NADPH was determined at 1.77 Å. Overal…

Models Molecularendocrine systemConformational changeProtein ConformationStereochemistryReductaseCrystallography X-Raycomplex mixturesMethylationBiochemistryProtein Structure SecondaryRauwolfiaEvolution MolecularProtein structurehemic and lymphatic diseasesheterocyclic compoundsMolecular BiologyAldo-keto reductaseCofactor bindingbiologyChemistryorganic chemicalsActive siteCell BiologyEnzyme structureAlcohol OxidoreductasesCrystallographyProtein Structure and Foldingbiology.proteinNADPH bindingSequence AlignmentNADPProtein BindingJournal of Biological Chemistry
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Palladium(II)-Stabilized Pyridine-2-Diazotates: Synthesis, Structural Characterization, and Cytotoxicity Studies

2018

Well-defined diazotates are scarce. Here we report the synthesis of unprecedented homoleptic palladium(II) diazotate complexes. The palladium(II)-mediated nitrosylation of 2-aminopyridines with NaNO2 results in the formation of metal-stabilized diazotates, which were found to be cytotoxic to human ovarian cancer cells.

Models Molecularinorganic chemicalsCell SurvivalPyridinesPyrazine Diazohydroxidechemistry.chemical_elementAntineoplastic AgentsorganometalliyhdisteetCrystallography X-Ray010402 general chemistry01 natural sciencesInorganic ChemistryStructure-Activity Relationshipchemistry.chemical_compoundCoordination ComplexesCell Line Tumororganometallic compoundsPyridineHumansCytotoxic T cellsytotoksisuusPhysical and Theoretical ChemistryHomolepticCytotoxicityta116Cell ProliferationDose-Response Relationship DrugMolecular Structure010405 organic chemistryNitrosylationCombinatorial chemistry0104 chemical sciencesHEK293 Cellssyöpäsolutchemistrycancer cellsOvarian cancer cellscytotoxicityDrug Screening Assays AntitumorAzo CompoundsPalladiumPalladiumInorganic Chemistry
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