Search results for "Alkali metal"

showing 10 items of 190 documents

Revision of Na 2 A1Σ+u state molecular constants by polarization labeling spectroscopy

1997

ABSTRACT. This paper contains the analysis of the A1 of Na2 based on the data obtained from thepolarization labeling spectroscopy experiment on the A' —X' transition. A set of Dunham coefficients is derived, which describes the A state in the wide range of v and J 126) quantum numbers and reproduces the positions of unperturbed rotational lines in the A-X band system towithinO.1 cm'.1. INTRODUCTION.We report' new analysis of the A' state based on the data obtained from polarization labelingspectroscopy (PLS) experiment"2, based on V-type optical—optical double resonance scheme, on the 1 : ' ; band system of sodium dimer. The diatomic alkali molecules, with their simple electronic configurat…

chemistry.chemical_compoundchemistryDimerAnalytical chemistryMoleculeElectron configurationAtomic physicsQuantum numberSpectroscopyPolarization (waves)Alkali metalDiatomic moleculeSPIE Proceedings
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PHOSPHORORGANISCHE VERBINDUNGEN 105.1Synthese chiraler und achiraler ditertiärer 1-Phosphino-2-Aminoethan-Derivate ([dbnd]P [sbnd]CH2[sbnd]CHR[sbnd]N…

1983

Abstract Primary amines with an optical active ligand add to vinyl- and propenylphosphonium salts according the reaction schemes (5) and (6), forming compounds of the type E and F. F contains a new asymmetric center in the bridge giving rise to the formation of a mixture of diastereomers, which can be resolved. Phosphonium salts of type E and F with a benzyl group on the phosphonium center are cleaved reductively by alkali amalgams (Li/Hg; Na/Hg; K/Hg) forming tertiary phosphines with an aminogroup in the β-position. The reductive cleavage with alkali amalgams is superior to the cathodic cleavage. Application: The synthesis of Ni(O)- and Pd(O)-complexes of type J fails. Bis-phosphine comple…

chemistry.chemical_compoundchemistryLigandHomogeneousStereochemistryReductive cleavageBenzyl groupDiastereomerPhosphoniumCleavage (embryo)Alkali metalMedicinal chemistryPhosphorus and Sulfur and the Related Elements
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DELAYED ELECTRON EMISSION OF NEGATIVELY CHARGED TUNGSTEN CLUSTERS

1996

The delayed electron emission of negatively charged tungsten clusters has been investigated on a time scale from 1 to 500 ms. After being stored in a Penning trap clusters ions [Formula: see text] were heated via multiphoton absorption (hν=1.81 eV). In contrast to alkali and coinage metals no photofragmentation could be detected. Instead, for all cluster sizes studied so far only a decrease in the initial ion intensity as a function of time after excitation was observed. This decrease is not caused by ion loss from the trap, but has to be attributed to neutralization via delayed electron emission. The presented results strongly suggest that this process can be viewed as “thermionic emissio…

chemistry.chemical_elementCoinage metalsThermionic emissionSurfaces and InterfacesElectronTungstenCondensed Matter PhysicsAlkali metalPenning trapSurfaces Coatings and FilmsIonchemistryMaterials ChemistryAbsorption (chemistry)Atomic physicsSurface Review and Letters
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Recognition of alkali metal halide contact ion pairs by uranyl-salophen receptors bearing aromatic sidearms. The role of cation-pi interactions.

2005

Hard anions have long been known to bind strongly to the uranium of uranyl-salophen complexes. Upon functionalization of the salophen framework with one or two benzyloxy substituents, efficient ditopic receptors for alkali metal ions are obtained. The solid-state structures of complexes formed by the two-armed receptor 1 with CsF and with the chlorides of K+, Rb+, and Cs+ reported here reveal the existence of dimeric supramolecular assemblies in which two receptor units assemble into capsules fully enclosing (MX)2 ion quartets. In addition to the strong coordinative binding of the anion to the uranyl center and to electrostatic cation-anion interactions, stabilizing interactions arise from …

host-guest recognitionStereochemistrySupramolecular chemistryGeneral ChemistryCrystal structureAlkali metalUranylBiochemistrysupramolecular chemistryCatalysisIonchemistry.chemical_compoundCrystallographyalkaly metal ions. ditopic receptorsColloid and Surface ChemistrychemistryAlkali metal halideX-ray crystallographyReceptorJournal of the American Chemical Society
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Anion exchange membrane based on alkali doped poly(2,5-benzimidazole) for fuel cell

2012

Abstract The properties of alkali doped poly(2,5-benzimidazole) membrane with different alkali doping levels for fuel cell application are reported in this work. The alkali doping level played an important role for the ion conductivity of the membrane. The ion conductivity significantly increased with alkali doping level. The ion conductivity also increased with the temperature. The ion conductivity of the alkali doped ABPBI membrane (alkali doping level = 0.37), reached to 2.3 × 10 − 2  S cm − 1 at room temperature and 7.3 × 10 − 2  S cm − 1 at 100 °C. The water uptake of the alkali doped ABPBI membrane was increased from 9.1% to 19.2% with increasing alkali doping level at room temperatur…

inorganic chemicalsBenzimidazoleMaterials scienceIon exchangeInorganic chemistryDopingtechnology industry and agriculturesocial sciencesGeneral ChemistryConductivityCondensed Matter PhysicsAlkali metalIonchemistry.chemical_compoundMembranechemistrylipids (amino acids peptides and proteins)General Materials ScienceThermal stabilityhuman activitiesSolid State Ionics
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4,4′-bis(dimethylamino)biphenyl containing binding sites. A newfluorescent subunit for cation sensing

2002

The emission behaviour of the 4,4′-bis(dimethylamino)biphenyl subunit covalently attached to aza-crown ethers is studied. Some new ligands have been synthesised in order to test the properties of this new fluorophore. The fluorescence of these new ligands and some other compounds previously described has been studied in acetonitrile in the presence of Ni2+, Cu2+, Zn2+, Hg2+, Pb2+, Cd2+ and also in the presence of some alkali and alkaline-earth cations.

inorganic chemicalsBiphenylFluorophoreStereochemistryProtein subunitGeneral ChemistryAlkali metalFluorescenceMedicinal chemistrychemistry.chemical_compoundchemistryCovalent bondBinding siteAcetonitrile
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Effects of NH3 and alkaline metals on the formation of particulate sulfate and nitrate in wintertime Beijing

2020

Sulfate and nitrate from secondary reactions remain as the most abundant inorganic species in atmospheric particle matter (PM). Their formation is initiated by oxidation (either in gas phase or particle phase), followed by neutralization reaction primarily by NH3, or by other alkaline species such as alkaline metal ions if available. The different roles of NH3 and metal ions in neutralizing H2SO4 or HNO3, however, are seldom investigated. Here we conducted semi-continuous measurements of SO4 2−, NO3 −, NH4 +, and their gaseous precursors, as well as alkaline metal ions (Na+, K+, Ca2+, and Mg2+) in wintertime Beijing. Analysis of aerosol acidity (estimated from a thermodynamic model) indicat…

inorganic chemicalsEnvironmental Engineering010504 meteorology & atmospheric sciencesMetal ions in aqueous solutionEVOLUTION PROCESSESSEASONAL-VARIATIONchemistry.chemical_element010501 environmental sciencesNitrate01 natural scienceschemistry.chemical_compoundAmmoniaNitrateEnvironmental ChemistryWATERSulfateWaste Management and Disposal0105 earth and related environmental sciencesSECONDARY INORGANIC AEROSOLAMMONIAChemistryACIDIC GASESMASS-SPECTROMETRYParticulatesAlkali metalPollutionSulfurNitrogenSulfatePEARL RIVER-DELTASULFUR-DIOXIDEEnvironmental chemistryHAZE EVENTSAlkaline metalsThe Science of the Total Environment
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Calcium silicate hydrates: Solid and liquid phase composition

2015

© 2015 Elsevier Ltd. This paper presents a review on the relationship between the composition the structure and the solution in which calcium silicate hydrate (C S H) is equilibrated. The silica chain length in C S H increases with the silicon concentration and the calcium content in the interlayer space with the calcium concentrations. Sodium and potassium are taken up in the interlayer space preferentially at low calcium concentrations and thus by low Ca/Si C S H. Aluminium uptake in C S H increases strongly at higher aluminium concentrations in the solution. At low Ca/Si aluminium substitutes silica in the bridging position at Ca/Si. > 1 aluminium is bound in TAH. Recently developed ther…

inorganic chemicalsMaterials scienceSiliconInorganic chemistry0211 other engineering and technologieschemistry.chemical_elementTobermorite02 engineering and technologyBuilding and Constructionrespiratory systemCalcium021001 nanoscience & nanotechnologyAlkali metalcomplex mixtureschemistry.chemical_compoundchemistryAluminium021105 building & constructionCalcium silicateGeneral Materials ScienceCalcium silicate hydrateSolubility0210 nano-technologyCement and Concrete Research
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Alkali-Metal Azides Interacting with Metal–Organic Frameworks

2013

metal–organic frameworksalkali metals azidedensity functional calculation
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Structural Motifs of Alkali Metal Superbases in Non‐coordinating Solvents

2020

Abstract Lochmann–Schlosser superbases (LSB) are a standard reagent in synthetic chemistry to achieve an exchange of a proton on an organic framework with an alkali metal cation, which in turn can be replaced by a wide range of electrophilic groups. In standard examples, the deprotonating reagent consists of an equimolar mixture of n‐butyllithium and potassium t‐butoxide. However, the nature of the reactive species could not be pinned down either for this composition or for similar mixtures with comparable high reactivity. Despite the poor solubility and the fierce reactivity, some insights into this mixture were achieved by some indirect results, comparison with chemically related systems,…

superbasealkali metalschemistry.chemical_element010402 general chemistry01 natural sciencesChemical synthesisCatalysisReactivity (chemistry)Solubility010405 organic chemistrypotassiumOrganic ChemistrySuperbaseaggregationMinireviewsGeneral ChemistryAlkali metalCombinatorial chemistry0104 chemical scienceschemistrylithiumReagentElectrophileLithiumMinireviewOrganometallic Chemistry | Reviews ShowcaseChemistry – A European Journal
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