Search results for "Protonation"

showing 10 items of 583 documents

From Overstoichiometric to Substoichiometric Enantioselective Protonation with 2-Sulfinyl Alcohols: A View in Perspective

2005

A general study of the enantioselective protonation of prochiral enolates with 2-sulfinyl alcohols is reported. The modification of reaction conditions to reduce drastically the amount of chiral proton source needed to obtain a good enantiomeric excess is reported. The effects of the different factors controlling the stereoselectivity are clearly established. Different protocols for enolate generation are compared.

lcsh:QD241-441Reaction conditionslcsh:Organic chemistryProtonComputational chemistryChemistryOrganic ChemistryEnantioselective synthesisOrganic chemistryStereoselectivityProtonationGeneral MedicineEnantiomeric excessChemInform
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Rare‐earth cyclobutadienyl sandwich complexes: Synthesis, structure and dynamic magnetic properties

2018

The potassium cyclobutadienyl [K2{η4‐C4(SiMe3)4}] (1) reacts with MCl3(THF)3.5 (M=Y, Dy) to give the first rare‐earth cyclobutadienyl complexes, that is, the complex anions [M{η4‐C4(SiMe3)4}{η4‐C4(SiMe3)3‐κ‐(CH2SiMe2}]2−, (2M), as their dipotassium salts. The tuck‐in alkyl ligand in 2M is thought to form through deprotonation of the “squarocene” complexes [M{η4‐C4(SiMe3)4}2]− by 1. Complex 2Dy is a single‐molecule magnet, but with prominent quantum tunneling. An anisotropy barrier of 323(22) cm−1 was determined for 2Dy in an applied field of 1 kOe, and magnetic hysteresis loops were observed up to 7 K. nonPeerReviewed

magneettiset ominaisuudetcyclobutadienyl ligandsmagneetitchemistry.chemical_element010402 general chemistry01 natural sciencesCatalysisDeprotonationAnisotropyta116magnetsAlkylQuantum tunnellingchemistry.chemical_classificationkemiallinen synteesiorganometallics dysprosium010405 organic chemistryLigandOrganic ChemistrykompleksiyhdisteetGeneral Chemistryharvinaiset maametallitMagnetic hysteresis0104 chemical sciencesCrystallographychemistryMagnetDysprosiumsingle-moleculerare-earth elements
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Fragmentations and reactions of protonated O,O-dimethyl ethylphosphonate and some isotopomers produced by electrospray ionisation in an ion trap mass…

2008

Abstract The fragmentation behaviour of protonated O , O -dimethyl ethylphosphonate and its isotopomers deuterated in the α- and β-positions of the ethyl group and their fragment ions, particulary EtP(O)OMe + ( IV ), have been investigated both experimentally in an ion trap mass spectrometer and theoretically by electronic structure calculations at the B3LYP level. Of particular interest is the finding that the phosphonium ion IV eliminates ethene with hydrogen/deuterium loss from both the α-and β-positions. The initial step for both routes involves ethyl migration from P to O to form the ion MeOP + OEt which then loses ethene by two mechanisms, both of which lead to the same products. That…

mass spectroscopy phosphonates reactionsAnalytical chemistryProtonationCondensed Matter PhysicsMass spectrometryIsotopomersIonchemistry.chemical_compoundchemistryDeuteriumPhysical chemistryEthyl groupPhosphoniumIon trapPhysical and Theoretical ChemistryInstrumentationSpectroscopyInternational Journal of Mass Spectrometry
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Inorganic Mercury Sequestration by a Poly(ethylene imine) Dendrimer in Aqueous Solution

2015

The interaction of the G-2 poly(ethylene imine) dendrimer L, derived from ammonia as initiating core, with Hg(II) and HgCl4 2− was studied in aqueous solution by means of potentiometric (pH-metric) measurements. Speciation of these complex systems showed that L is able to form a wide variety of complexes including 1:1, 2:1, 3:1 and 3:2 metal-to-ligand species, of different protonation states, as well as the anion complexes ((H7L)HgCl4) 5+ and ((H8L)HgCl4) 6+ . The stability of the metal complexes is very high, making L an excellent sequestering agent for Hg(II), over a large pH range, and a promising ligand for the preparation of functionalized activated carbons to be employed in the remedi…

mercuryImineInorganic chemistryPotentiometric titrationPharmaceutical Sciencechemistry.chemical_elementProtonationmercury dendrimers sequestration water contamination environmentArticleAnalytical Chemistrydendrimerspoly(ethylene imine)Metallcsh:QD241-441chemistry.chemical_compoundAmmoniacontaminationlcsh:Organic chemistryDendrimerDrug DiscoveryremediationPhysical and Theoretical ChemistryAqueous solutionMolecular StructureOrganic ChemistryMercury (element)chemistryChemistry (miscellaneous)visual_artPotentiometryvisual_art.visual_art_mediumMolecular MedicineEnvironmental PollutantsIminesPolyethylenesMolecules
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Acidity and basicity of primaryN-phenylnitramines: catalytic effect of protons on the nitramine rearrangement

2002

Para-substituted N-phenylnitramines were prepared either by oxidation of diazonium salts or by nitration under alkaline or acidic conditions. Isotopic [15N-NO2] labelling indicated that the bands characteristic of the N-nitro group appear in the 1318–1323 and 1585–1607 cm−1 regions. In the nitrogen NMR spectra, the nitramino group gives two resonances at −193 ± 3 (NH) and −32 ± 3 ppm (NO2). The chemical shifts in proton and carbon NMR spectra are predictable, based on increments and the additivity rule. The spectral data indicate the lack of conjugation between the nitramino group and another substituent bound to the ring. It seems to contradict the well-known fact that substituents strongl…

nitraminesReaction mechanismChemical shiftrearrangementOrganic ChemistryInorganic chemistrySubstituentProtonationNuclear magnetic resonance spectroscopyCarbon-13 NMRMedicinal chemistryNMR spectra databasechemistry.chemical_compoundNMR spectroscopychemistryNitrationamphiprotic compoundsreaction mechanismPhysical and Theoretical ChemistryJournal of Physical Organic Chemistry
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Direct Visualization of Molecule Deprotonation on an Insulating Surface

2012

Elucidating molecular-scale details of basic reaction steps on surfaces is decisive for a fundamental understanding of molecular reactivity within many fields, including catalysis and on-surface synthesis. Here, the deprotonation of 2,5-dihydroxybenzoic acid (DHBA) deposited onto calcite (101;4) held at room temperature is followed in situ by noncontact atomic force microscopy. After deposition, the molecules form two coexisting phases, a transient striped phase and a stable dense phase. A detailed analysis of high-resolution noncontact atomic force microscopy images indicates the transient striped phase being a bulk-like phase, which requires hydrogen bonds between the carboxylic acid moie…

noncontact atomic force microscopyCarboxylic acidCatecholsGeneral Physics and AstronomyMicroscopy Atomic ForceKelvin probe force microscopy530Calcium Carbonatechemistry.chemical_compoundDeprotonationPhase (matter)Materials TestingHydroxybenzoatesMoleculeGeneral Materials ScienceReactivity (chemistry)CarboxylateParticle Sizechemistry.chemical_classificationKelvin probe force microscopeHydrogen bondinsulating surfaceGeneral EngineeringElectric ConductivityMolecular ImagingNanostructuresCrystallographychemistrydeprotonationProtons
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Sequestration of biogenic amines by alginic and fulvic acids.

2006

The interaction of natural (alginic and fulvic acids) and synthetic (polyacrylic acid 2.0 kDa) polyelectrolytes with some protonated polyamines [diamines: ethylendiamine, 1,4-diaminobutane (or putrescine), 1,5-diaminopentane (or cadaverine); triamines: N-(3-aminopropyl)-1,4diaminobutane (or spermidine), diethylenetriamine; tetramine: N.N'-bis(3-aminopropyl)-1,4-diaminobutane (or spermine); pentamine: tetraethylene-pentamine; hexamine: pentaethylenehexamine] was studied at T=25 degrees C by potentiometry and calorimetry. Measurements were performed without supporting electrolyte, in order to avoid interference, and results were reported at I=0 mol L(-1). For all the systems, the formation of…

polyammonium-polycarboxylate interactionsAlginatesPolymersBiogenic aminesInorganic chemistryFulvic acidCarboxylic AcidsBiophysicsProtonationCalorimetryBiochemistryMedicinal chemistryElectrolyteschemistry.chemical_compoundbiogenic amineGlucuronic AcidPolyaminesBenzopyransAlginic acidPolyacrylic acidCadaverineChemistryHexuronic AcidsOrganic ChemistryPolyacrylic acidPentaminesequestrationPolyelectrolytesPolyelectrolyteQuaternary Ammonium CompoundsBiogenic amines; Fulvic acid; Alginic acid; Polyacrylic acid; sequestrationModels ChemicalDiethylenetriamineThermodynamicsAmine gas treatingProtonsMathematics
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Diversity of Isomerization Patterns and Protolytic Forms in Aminocarbene PdII and PtII Complexes Formed upon Addition of N,N′-Diphenylguanidine to Me…

2017

Reaction of the palladium(II) and platinum(II) isocyanide complexes cis-[MCl2(CNR)2] [M = Pd, R = C6H3(2,6-Me2) (Xyl), 2-Cl-6-MeC6H3, cyclohexyl (Cy), t-Bu, C(Me)2CH2(Me)3 (1,1,3,3-tetramethylbuth-1-yl abbreviated as tmbu); M = Pt, R = Xyl, 2-Cl-6-MeC6H3, Cy, t-Bu, and tmbu] with N,N′-diphenylguanidine (DPG) leads to DPG-derived metal-bound deprotonated acyclic diaminocarbene (ADC) species. This reaction occurs via a two-step process, involving the initial coupling of the guanidine with one of the isocyanides and leading to deprotonated monocarbene monochelated species, while the next addition grants the deprotonated bis-carbene bis-chelated metal compounds. DPG behaves as nucleophile, depr…

protolytic forms010405 organic chemistryStereochemistryIsocyanideOrganic ChemistrySubstituentchemistry.chemical_elementRegioselectivityaminocarbene complexes010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesdiversityInorganic Chemistrychemistry.chemical_compoundDeprotonationchemistryNucleophileisomerization patternsPhysical and Theoretical ChemistryGuanidineIsomerizationta116PalladiumOrganometallics
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Effect of seawater salt on the protonation of some classes of ligands

2004

protonationSettore CHIM/01 - Chimica Analiticaligandionic strengthseawater
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Combined Spectroscopic and TD-DFT Analysis to Elucidate Substituent and Acidochromic Effects in Organic Dyes: A Case Study on Amino- versus Nitro-Sub…

2020

Made available in DSpace on 2020-12-12T01:33:30Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-01-01 A combined spectroscopic and TD-DFT case study was performed, to identify a robust method to calculate the complex near UV/Vis absorption spectra of various amino- vs. nitro-substituted 2,4-diphenylquinolines, which vary strongly under neutral and successively acidic conditions. For this, different DFT functionals were tested for geometry optimization and the TD part to calculate the neutral and different protonated species in a fast screening approach, i. e. using single point calculations in an implicit solvent. Offset-corrected M06HF, hitherto only applied to polymers, was identif…

quinolinesAbsorption spectroscopyabsorption spectradual emissionSubstituentProtonation02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyEnergy minimization01 natural sciencesFluorescenceAtomic and Molecular Physics and Optics0104 chemical sciencesSolventchemistry.chemical_compoundchemistryComputational chemistryacidochromismNitroDensity functional theoryfluorescencePhysical and Theoretical Chemistry0210 nano-technologydensity functional theory
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