Search results for "Furan"

showing 10 items of 667 documents

CCDC 149238: Experimental Crystal Structure Determination

2001

Related Article: S.Mahboobi, I.Dechant, H.Reindl, H.Pongratz, A.Popp, D.Schollmeyer|2000|J.Heterocycl.Chem.|37|307|doi:10.1002/jhet.5570370215

431-Dimethyl-1414213134-hexaaoctacyclo(32.2.2.0-^26^.0^715^.0^813^.0^2028^.0^2227^.0^2933^)octatriaconta-2(6)7(15)8(13)91120(28)22(27)232529(33)-decaene-353032-tetraone tetrahydrofuran solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 685282: Experimental Crystal Structure Determination

2009

Related Article: A.Jahel, N.V.Vologdin, N.Pirio, H.Cattey, P.Richard, P.Meunier, J.-C.Hierso|2008|Dalton Trans.||4206|doi:10.1039/b809244n

44'-Di-t-butyl-22'-bis(diphenylphosphino)-11'-bis(diphenylphosphonium)ferrocene bis(pentachloro-(tetrahydrofuran)-zirconium) dichloromethane solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1834563: Experimental Crystal Structure Determination

2018

Related Article: Serhii Krykun, Vincent Croué, Magali Allain, Zoia Voitenko, Juan Aragó, Enrique Ortí, Sébastien Goeb, Marc Sallé|2018|J.Mater.Chem.C|6|13190|doi:10.1039/C8TC04730H

48-bis[45-bis(methylsulfanyl)-2H-13-dithiol-2-ylidene]-48-dihydrobenzo[12-b:45-b']bisthiophene radical cation hexafluorophosphate tetrahydrofuran solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 2077067: Experimental Crystal Structure Determination

2021

Related Article: Joshua E. Barker, Tavis W. Price, Lucas J. Karas, Ryohei Kishi, Samantha N. MacMillan, Lev N. Zakharov, Carlos J. G��mez���Garc��a, Judy I. Wu, Masayoshi Nakano, Michael M. Haley|2021|Angew.Chem.,Int.Ed.|60|22385|doi:10.1002/anie.202107855

614-bis(4-t-butyl-26-dimethylphenyl)[1]benzofuro[2''3'':2'3']indeno[5'6':56]indeno[21-b][1]benzofuran chloroform solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Construction of a genetically modified wine yeast strain expressing the Aspergillus aculeatus rhaA gene, encoding an -L-Rhamnosidase of enological in…

2003

Monoterpenes such as geraniol, linalool, and -terpineol present in grapes determine the varietal flavor properties of young quality wines made from Muscat varieties (for reviews, see references 19 and 21). Geraniol and linalool are considered to be the most important of the monoterpene alcohols, as they are present in greater concentrations and have lower flavor thresholds than other major wine monoterpenes. In particular, linalool is thought to be responsible for the grapelike aroma of wines produced from the Muscat variety. A large proportion of

AFSG Stafafdelingen (WUATV)Glycoside HydrolasespurificationAcyclic MonoterpenesMonoterpenepurifying glycosidasesWineSaccharomyces cerevisiaeMicrobiologyApplied Microbiology and Biotechnologychemistry.chemical_compoundLinalooll-rhamnopyranosidaseMicrobiologieVitisFood scienceFlavorVLAGAlpha-L-rhamnosidasel-arabinofuranosidaseWineEcologybiologybeta-GlucosidaseAspergillus aculeatusbeta-d-glucopyranosidasefood and beveragesbiology.organism_classificationAFSG Staff Departments (WUATV)Yeast in winemakingAspergillusBiochemistrychemistryaromaFermentationMonoterpenesFood Microbiologymicrovinification processessaccharomyces-cerevisiaeGenetic EngineeringnigerGeraniolFood ScienceBiotechnologygrape juice
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Inhibitory effects on mitochondrial complex I of semisynthetic mono-Tetrahydrofuran acetogenin derivatives

2003

Modifications in the terminal alpha,beta-unsaturated gamma-methyl-gamma-lactone moiety or in the alkyl chain that links this terminal gamma-lactone with the alpha,alpha'-dihydroxylated THF system of the natural mono-tetrahydrofuranic acetogenins, annonacin and annonacinone, led to the preparation of eight semisynthetic derivatives. Their inhibitory effects on mitochondrial complex I is discussed and compared with that of the classical complex I inhibitor, rotenone.

AcetogeninsStereochemistryClinical BiochemistryRespiratory chainAnnonacinPharmaceutical ScienceBiochemistryChemical synthesisLactoneschemistry.chemical_compoundMultienzyme ComplexesDrug DiscoveryMoietyNADH NADPH OxidoreductasesEnzyme InhibitorsFuransMolecular BiologyTetrahydrofuranchemistry.chemical_classificationElectron Transport Complex IOrganic ChemistryRotenoneKineticschemistryAcetogeninMolecular MedicineFatty AlcoholsLactoneBioorganic & Medicinal Chemistry Letters
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Synthesis of 3-Oxa-guaianolides from Santonin

2000

Abstract This article reports on the transformation of santonin into two C10-epimeric 3-oxa-guaianolides which are 8-deoxyderivatives of several natural 3-oxaguaianolides isolated from Achillea species. The synthesis involved the photochemical rearrangement of the eudesmane skeleton into a guaiane skeleton and the transformation of the cyclopentane ring into a furan moiety with the concomitant loss of C3. Comparison of the NMR data of the synthetic products with those of the natural products confirms the β orientation of the hydroxyl group at C10 in the products isolated from Achillea.

AchilleabiologyStereochemistryOrganic Chemistrybiology.organism_classificationRing (chemistry)BiochemistryNmr datachemistry.chemical_compoundchemistryFuranDrug DiscoveryOrganic chemistryMoietyCyclopentaneSantoninTetrahedron
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Study of Ni, Pt, and Ru Catalysts on Wood-based Activated Carbon Supports and their Activity in Furfural Conversion to 2-Methylfuran

2018

Bio‐based chemicals can be produced from furfural through hydrotreatment. In this study, 2‐methylfuran (MF), a potential biofuel component, was produced with Pt, Ru, and Ni catalysts supported on wood‐based activated carbons. The catalytic hydrotreatment experiments were conducted in a batch reactor at 210–240 °C with 2‐propanol as solvent and 40 bar H2 pressure. Two types of activated carbon supports were prepared by carbonization and activation of lignocellulosic biomass (forest‐residue‐based birch and spruce from Finland). Both types of activated carbons were suitable as catalyst supports, giving up to 100 % furfural conversions. The most important factors affecting the MF yield were the…

Activated carbonbiokemikaalitBiomass2-Methylfuran010402 general chemistryFurfural01 natural sciencesCatalysisCatalysisInorganic Chemistrychemistry.chemical_compoundkatalyytitBiofuelmedicineOrganic chemistryactivated carbonbiomassa (teollisuus)BiomassmetallitPhysical and Theoretical Chemistryta116ta215biomass010405 organic chemistryOrganic ChemistryfurfuraalifurfuralFurfural0104 chemical sciencesfuraanitchemistryBiofuelaktiivihiilibiofuel2-Methylfuran2-methylfuranActivated carbonmedicine.drugChemCatChem
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Diversity in Itraconazole Cocrystals with Aliphatic Dicarboxylic Acids of Varying Chain Length

2013

The cocrystal formation potential of itraconazole, a potent antifungal drug, with C2–C10 aliphatic dicarboxylic acids has been investigated. Using two experimental screening techniques (solvent-assisted grinding and evaporation-based crystallization), the cocrystals of itraconazole with C2–C7 dicarboxylic acids have been successfully synthesized and characterized by powder X-ray diffraction, solid state nuclear magnetic resonance, Raman spectroscopy, and thermal analysis. The characterized multicomponent compounds include anhydrous cocrystals (malonic, succinic, glutaric, and pimelic acids), a cocrystal hydrate (adipic acid), and cocrystal solvates with acetone and tetrahydrofuran (oxalic a…

Adipic acidOxalic acidAntifungal drug02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesCocrystal0104 chemical scienceschemistry.chemical_compoundPimelic acidchemistrySolid-state nuclear magnetic resonanceOrganic chemistryGeneral Materials Science0210 nano-technologyHydrateta116TetrahydrofuranCrystal Growth and Design
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Re: Antimicrobial Resistance in More Than 100,000 Escherichia coli Isolates According to Culture Site and Patient Age, Gender, and Location

2011

ABSTRACT Escherichia coli and the antimicrobial pressure exerted on this microorganism can be modulated by factors dependent on the host. In this paper, we describe the distribution of antimicrobial resistance to amikacin, tobramycin, ampicillin, amoxicillin clavulanate, cefuroxime, cefoxitin, cefotaxime, imipenem, ciprofloxacin, fosfomycin, nitrofurantoin, and trimetoprim-sulfametoxazole in more than 100,000 E. coli isolates according to culture site and patient age, gender, and location. Bayesian inference was planned in all statistical analysis, and Markov chain Monte Carlo simulation was employed to estimate the model parameters. Our findings show the existence of a marked difference in…

AdultMaleCefotaximeAdolescentmedicine.drug_classUrologyAntibioticsCefotaximeDrug resistanceFosfomycinBiologymedicine.disease_causeEpidemiology and SurveillanceMicrobiologyYoung AdultAntibiotic resistanceFosfomycinCiprofloxacinPatient ageDrug Resistance Multiple BacterialEscherichia coliHumansMedicinePharmacology (medical)ChildAmikacinEscherichia coliEscherichia coli InfectionsAgedRetrospective StudiesAntibacterial agentAged 80 and overPharmacologybusiness.industryInfantMiddle AgedAntimicrobialAnti-Bacterial AgentsImipenemInfectious DiseasesNitrofurantoinAmikacinChild PreschoolTobramycinAmpicillinFemalebusinessmedicine.drugJournal of Urology
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