Search results for "Redox"

showing 10 items of 619 documents

Modeling plutonium sorption to kaolinite: Accounting for redox equilibria and the stability of surface species

2015

Abstract Plutonium with its particularly complex redox chemistry may be thermodynamically stable in the states + III to + VI depending on the redox conditions in the environment. Mineral surfaces can also affect Pu redox speciation. Therefore, the interpretation of Pu sorption data becomes particularly challenging, even for simplified laboratory experiments. The present study focuses on Pu sorption to kaolinite. Am(III), Th(IV), Np(V) and U(VI) literature sorption data are used as analogues for the corresponding Pu redox states to calibrate a simple surface complexation model, and the Nernst formalism is applied. Two independent pH–pe diagrams, one for the kaolinite surface and another for …

Inorganic chemistrychemistry.chemical_elementGeologySorptionContext (language use)ActinideRedoxPlutoniumsymbols.namesakechemistryGeochemistry and PetrologyOxidizing agentsymbolsKaoliniteNernst equationNuclear chemistryChemical Geology
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Solvent, anion and structural effects on the redox potentials and UV-visible spectral properties of mononuclear manganese corroles

2008

A series of manganese(III) corroles were investigated as to their electrochemistry and spectroelectrochemistry in nonaqueous solvents. Up to three oxidations and one reduction were obtained for each complex depending on the solvents. The main compound discussed in this paper is the meso-substituted manganese corrole, (Mes 2PhCor)Mn, and the main points are how changes in axially coordinated anion and solvent will affect the redox potentials and UV-vis spectra of each electrogenerated species in oxidation states of Mn(III), Mn(IV), or Mn(II). The anions OAc (-), Cl (-), CN (-), and SCN (-) were found to form five-coordinate complexes with the neutral Mn(III) corrole while two OH (-) or F (-)…

Inorganic chemistrychemistry.chemical_elementManganese010402 general chemistryPhotochemistryElectrochemistry01 natural sciencesRedoxSpectral lineIonInorganic Chemistrychemistry.chemical_compoundcorrole[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryCorroleComputingMilieux_MISCELLANEOUS010405 organic chemistrySpectral properties[ CHIM.COOR ] Chemical Sciences/Coordination chemistryspectroelectrochemistry0104 chemical sciencesSolventchemistryelectrochemistrymanganese
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Redox-Responsive Host–Guest Chemistry of a Flexible Cage with Naphthalene Walls

2020

"Naphthocage", a naphthalene-based organic cage, reveals very strong binding (up to 1010 M-1) to aromatic (di)cationic guests, i.e., the tetrathiafulvalene mono- and dication and methyl viologen. Intercalation of the guests between two naphthalene walls is mediated by C-H···O, C-H···π, and cation···π interactions. The guests can be switched into and out of the cage by redox processes with high binding selectivity. Oxidation of the flexible cage itself in the absence of a guest leads to a stable radical cation with the oxidized naphthalene intercalated between and stabilized by the other two. Encapsulated guest cations are released from the cavity upon cage oxidation, paving the way to futur…

Intercalation (chemistry)Cationic polymerizationmacromolecular substancesGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryRedoxCatalysis0104 chemical sciencesDicationchemistry.chemical_compoundColloid and Surface ChemistrychemistryRadical ionPolymer chemistryHost–guest chemistryTetrathiafulvaleneNaphthaleneJournal of the American Chemical Society
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Ion pair recognition receptor based on an unsymmetrically 1,1'-disubstituted ferrocene-triazole derivative.

2012

The ferrocene-triazole derivative 4, available from 1,1'-bis(diazido)ferrocene by sequential functionalization through click-type chemistry and the Staudinger reaction, is elaborated as a lab-on-a-molecule for the selective sensing of HP(2)O(7)(3-) and Hg(2+). Receptor 4 behaves as a ratiometric fluorescent probe for HP(2)O(7)(3-) with a good selectivity over other anions, whereas in the presence of Hg(2+) it modifies the fluorescent emission of the pyrene unit, acting as a selective on-off fluorescent sensor for Hg(2+) with a low detection limit. The most salient feature of compound 4 is its behavior as an excellent electrooptical ion pair recognition receptor able to simultaneously recogn…

IonsMagnetic Resonance SpectroscopyMetallocenesOrganic ChemistryTriazolesPhotochemistryFluorescenceRedoxIonchemistry.chemical_compoundchemistryFerroceneElectrochemistryPyreneSpectrophotometry UltravioletStaudinger reactionFerrous CompoundsSelectivityDerivative (chemistry)Fluorescent DyesThe Journal of organic chemistry
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Radical addition to iminium ions and cationic heterocycles

2014

Carbon-centered radicals represent highly useful reactive intermediates in organic synthesis. Their nucleophilic character is reflected by fast additions to electron deficient C=X double bonds as present in iminium ions or cationic heterocycles. This review covers diverse reactions of preformed or in situ-generated cationic substrates with various types of C-radicals, including alkyl, alkoxyalkyl, trifluoromethyl, aryl, acyl, carbamoyl, and alkoxycarbonyl species. Despite its high reactivity, the strong interaction of the radical’s SOMO with the LUMO of the cation frequently results in a high regioselectivity. Intra- and intermolecular processes such as the Minisci reaction, the Porta react…

Ionsheterocycles540 Chemistry and allied sciencesMinisci reactionphotoredox catalysisPorta reactionReviewradicalsCarbonCatalysislcsh:QD241-441transition metal catalysisModels Chemicaladdition reactionslcsh:Organic chemistryHeterocyclic CompoundsCations540 Chemieiminium saltsrearrangementslate-stage functionalization
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Iron, oxidative stress, and redox signaling in the cardiovascular system.

2014

The redox state of the cell is predominantly dependent on an iron redox couple and is maintained within strict physiological limits. Iron is an essential metal for hemoglobin synthesis in erythrocytes, for oxidation-reduction reactions, and for cellular proliferation. The maintenance of stable iron concentrations requires the coordinated regulation of iron transport into plasma from dietary sources in the duodenum, from recycled senescent red cells in macrophages, and from storage in hepatocytes. The absorption of dietary iron, which is present in heme or nonheme form, is carried out by mature villus enterocytes of the duodenum and proximal jejunum. Multiple physiological processes are invo…

Iron Overloadmedicine.disease_causeRedoxCardiovascular Systemchemistry.chemical_compound[SDV.MHEP.CSC]Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular systemHepcidinExtracellularmedicineAnimalsHumansHemeTranscription factorComputingMilieux_MISCELLANEOUSchemistry.chemical_classificationReactive oxygen speciesbiologyOxidants[SDV.MHEP.CSC] Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular systemOxidative StresschemistryBiochemistryCardiovascular Diseasesbiology.proteinOxidation-ReductionIntracellularOxidative stressIron DietaryFood ScienceBiotechnologySignal TransductionMolecular nutritionfood research
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Phosphogenesis in the Bonarelli Level from northwestern Sicily, Italy: petrographic evidence of microbial mediation and related REE behaviour

2010

Phosphogenesis at the base of the Bonarelli Level from the Calabianca stratigraphic section (northwestern Sicily) was investigated using X-ray diffraction, scanning electron microscopy, X-ray fluorescence, and stable-isotope mass spectrometry. The anoxic event onset is marked by high P(2)O(5tot) concentrations related to the presence of authigenic carbonate-fluorapatite. This mineral is poorly crystallized and occurs in three different forms: (i) fish debris locally showing evidence of re-crystallization, (ii) phosphatically cemented layers, and (iii) dense aggregates of microcrystals. Petrographic features are indicative of a microbial genesis for the carbonate-fluorapatite. Conversely, th…

Iron redox cycle010504 meteorology & atmospheric sciencesPaleontologyMineralogyCarbon cycleAuthigenic010502 geochemistry & geophysicsPhosphate01 natural sciencesAnoxic watersCretaceousCarbon cyclePetrographychemistry.chemical_compoundCarbonate-fluoroapatitechemistryRare earth elementStratigraphic sectionSedimentary rockPhosphogenesi14. Life underwaterOAE2Geology0105 earth and related environmental sciencesCretaceous Research
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Intramolecular electron transfer between molybdenum and iron mimicking bacterial sulphite dehydrogenase

2014

Diferrocenyl/diferrocenium substituted dioxido molybdenum(VI) complexes [Fe2MoO2] 2(Fc)/[2(FC)]²⁺ mimic the catalytic active site including the redox subunits as well as the catalytic function of bacterial sulphite oxidases.

IronSulfite DehydrogenaseMolecular Conformationchemistry.chemical_elementBiocompatible MaterialsElectronsCrystallography X-RayPhotochemistryRedoxCatalysisCatalysisElectron TransportElectron transferCoordination ComplexesCatalytic DomainPolymer chemistryMaterials ChemistrySulfite dehydrogenaseFerrous CompoundsMolybdenumBacteriabiologyMetals and AlloysActive siteGeneral ChemistryElectron transport chainSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryMolybdenumIntramolecular forceCeramics and Compositesbiology.proteinOxidation-ReductionChemical Communications
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Stimulation of Fe-S cluster insertion into apoFNR by Escherichia coli glutaredoxins 1, 2 and 3 in vitro.

2004

Abstract The oxygen sensor fumarate nitrate reductase regu-lator (FNR) of Escherichia coli contains in the active (anaerobic)state a [4Fe–4S] 2þ cluster which is lost after exposure to O 2 .Inaerobically prepared apoFNR, or in FNR obtained by treatmentof [4Fe–4S] FNR with O 2 in vitro, intramolecular cysteinedisulfides are found, including the cysteine residues which serveas ligands for the Fe–S cluster. It is shown here that thereconstitution of [4Fe–4S] FNR from this form of aerobicapoFNR was preceded by a long lag phase when glutathione wasused as the reducing agent. Addition of E. coli glutaredoxins(Grx) 1, 2 or 3 decreased the lag phase greatly and stimulatedthe reconstitution rate slig…

Iron-Sulfur ProteinsTime FactorsReducing agentFNRGlutaredoxinBiophysicsBiologyReductaseSulfidesmedicine.disease_causeNitrate reductaseBiochemistryOxygen sensorchemistry.chemical_compoundStructural BiologyGlutaredoxinGeneticsmedicineEscherichia coliCysteineDisulfidesThioredoxinMolecular BiologyEscherichia coliGlutaredoxinsDisulfide reductaseEscherichia coli ProteinsProteinsCell BiologyGlutathioneGlutathioneOxygenBiochemistrychemistryMultigene FamilyThioredoxinOxidoreductasesCysteineTranscription FactorsFEBS letters
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The oxidation of ubiquinol by the isolated rieske iron-sulfur protein in solution

1990

The pre-steady-state redox reactions of the Rieske iron-sulfur protein isolated from beef heart mitochondria have been characterized. The rates of oxidation by c-type cytochromes is much faster than the rate of reduction by ubiquinols. This enables the monitoring of the oxidation of ubiquinols by the Rieske protein through the steady-state electron transfer to cytochrome c in solution. The pH and ionic strength dependence of this reaction indicate that the ubiquinol anion is the direct reductant of the oxidized cluster of the iron-sulfur protein. The second electron from ubiquinol is diverted to oxygen by the isolated Rieske protein, and forms oxygen radicals that contribute to the steady-s…

Iron-Sulfur ProteinsUbiquinolCytochromeUbiquinoneBiophysicsmacromolecular substancesPhotochemistryBiochemistryRedoxMitochondria HeartElectron Transport Complex IIIElectron transferchemistry.chemical_compoundCytochrome C1AnimalsMolecular BiologybiologyChemistryCytochrome cHydrogen-Ion ConcentrationSolutionsKineticsCoenzyme Q – cytochrome c reductaseRieske proteinbiology.proteinCytochromesCattleOxidation-ReductionArchives of Biochemistry and Biophysics
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