Search results for "Alkali metal"

showing 10 items of 190 documents

The conversion from cellulose I to cellulose II in NaOH mercerization performed in alcohol–water systems: An X-ray powder diffraction study

2007

Abstract The slurry-mercerization (SM) processes in 2-propanol–water and 2-propanol–ethanol–water and wet-mass-mercerization (WMM) process in ethanol–water solvents are investigated. Based on X-ray diffraction measurements in the earlier reports, we have derived a mathematical method to evaluate more exactly the conversion of cellulose I (CI) to cellulose II (CII) and used it to survey the effects of different alkali treatments on cellulose crystals. This method is very useful when the crystal system changes in a certain set of experiments are compared with each other. The optimal alcohol concentration in SM processes was found to be 80–92 w/w-% in 2-propanol–water solution, 85–90 w/w-% in …

Solvent systemintegumentary systemPolymers and PlasticsOrganic ChemistryX-rayAlcoholAlkali metalSolventchemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistryCellulosePowder diffractionNuclear chemistryCarbohydrate Polymers
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Polymerisation von methylmethacrylat mit alkaliorganischen verbindungen. Über die stereospezifische polymerisation mit alkaliorganischen verbindungen…

1962

Methylmethacrylat kann durch alkalimetallorganische Verbindungen zu Produkten mit sehr verschiedener sterischer Struktur polymerisiert werden. Es wird der Einflus des Kations des Initiators, des Losungsmittels und der Temperatur auf die Taktizitat der Polymeren untersucht. In apolaren Losungsmitteln entstehen vornehmlich isotaktische Polymerisate, wobei der Anteil an isotaktischen Verknupfungen in den mit lithiumorganischen Verbindungen hergestellten Produkten am hochsten ist und mit natrium- und kaliumorganischen Initiatoren in dieser Reihenfolge abfallt. In polaren Losungsmitteln entstehen hauptsachlich syndiotaktische Polymere, wobei Lithiumalkyle die hochste Zahl syndiotaktischer Verknu…

Solventchemistry.chemical_classificationSteric effectschemistry.chemical_compoundMonomerchemistryPolymerizationTacticityPolymer chemistryPolymerMethyl methacrylateAlkali metalDie Makromolekulare Chemie
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1977

The investigation of electron transfer and subsequent reactions of divinylidene compounds not capable of anionic homopolymerization was extended to 1,3-bis(1-phenylvinyl)benzene (2). A new method for the preparation of this compound is described. Its reaction with Li, Na, and K as electron transfer reagents in THF as solvent results in an increasing yield in polymeric combination products of the radical anions formed primarily with increasing reducing power of the alkali metal. The main product, however, in any case is the cyclic dimeric tetra-anion of 2, which upon protonation yields 1,4,11,14-tetraphenyl[4.4]metacyclophane (3).

Solventchemistry.chemical_compoundElectron transferChemistryYield (chemistry)ReagentPolymer chemistryProtonationBenzeneAlkali metalDie Makromolekulare Chemie
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Mass spectrometric studies of benzoxazine resorcarenes

2002

Eleven differently substituted 3,4-dihydro-2H-1,3-benzoxazine resorcarenes were studied by electrospray ionisation (ESI) and matrix-assisted laser desorption/ionisation (MALDI) mass spectrometry, using Fourier transform ion cyclotron resonance (FT-ICR) and time-of-flight (TOF) mass spectrometers, respectively. Under ESI conditions it was possible to transfer the intact resorcarenes from solution to the gas phase, yielding [M + H]+ and [M + 2H]+ ions as the main ions observed. Energy increase of the ions induced ready decomposition through successive eliminations of four CH2NR groups. Ion-molecule reactions showed that the ionising proton was situated somewhere inside the molecule and could …

Spectrometry Mass Electrospray IonizationElectrosprayChemistryOrganic ChemistryAnalytical chemistryResorcinolsMass spectrometryAlkali metalFourier transform ion cyclotron resonanceAnalytical ChemistryIonFragmentation (mass spectrometry)Spectrometry Mass Matrix-Assisted Laser Desorption-IonizationReagentOxazinesMoleculeSpectroscopyRapid Communications in Mass Spectrometry
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Surfactant self-assembly in the gas phase: Bis(2-ethylhexyl)sulfosuccinate- alkaline metal ion aggregates

2008

Molecular dynamics (MD) simulations were conducted for systems in vacuo consisting of n AOT anions (bis(2-ethylhexyl)sulfosuccinate ions) and n 1 or n Na+ ions up to n = 20. For n = 15, positively charged systems with Li+, K+, and Cs+ cations were also considered. All systems were observed to form reverse micelle-like aggregates whose centre is occupied by cations and polar heads in a very compact solid-like way, while globally the aggregate has the form of an elongated and rather flat ellipsoid. Various types of statistical analyses were carried out on the systems to enlighten structural and dynamical properties including gyration radius, atomic pair correlation functions, atomic B-factor …

Spectrometry Mass Electrospray IonizationREVERSE MICELLESElectrospray ionizationInorganic chemistrySupramolecular chemistrySalt (chemistry)LithiumMass SpectrometryIonSurface-Active AgentsPulmonary surfactantMaterials ChemistryWATERPhysical and Theoretical ChemistryAlkylchemistry.chemical_classificationChemistrySodiumSuccinatesAlkali metalSurfaces Coatings and FilmsSolutionsNANOCRYSTALSMetalsMESOSTRUCTURED FLUIDSGasesSelf-assembly
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Recognition of Li+ by a Salophen−UO2 Homodimeric Complex

2009

Self-assembly via mutual U-coordination of the salophen-UO(2) complex 1 creates a dimeric species which is shown to be useful for metal binding. Indeed, the 1 dimer has affinity for alkali metal cations and, interestingly, a marked selectivity for Li(+), determined by electrospray ionization mass spectrometry and (1)H NMR techniques. X-ray diffraction helped in the elucidation of the dimeric complex structure, which presents a crown-ether-type coordination site, in analogy to the more familiar 12-crown-4, responsible for the metal interaction. Comparison with isomer 2, and the salen derivative 3, increases the understanding of the behavior of such systems in solution and in the solid state.

StereochemistryDimerElectrospray ionizationSolid-stateAlkali metalInorganic ChemistryMetalchemistry.chemical_compoundCrystallographychemistryvisual_artProton NMRvisual_art.visual_art_mediumPhysical and Theoretical ChemistrySelectivityDerivative (chemistry)Inorganic Chemistry
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Site Preference in Multimetallic Nanoclusters: Incorporation of Alkali Metal Ions or Copper Atoms into the Alkynyl-Protected Body-Centered Cubic Clus…

2016

The synthesis, structure, substitution chemistry, and optical properties of the gold-centered cubic monocationic cluster [Au@Ag8@Au6(C≡CtBu)12]+ are reported. The metal framework of this cluster can be described as a fragment of a body-centered cubic (bcc) lattice with the silver and gold atoms occupying the vertices and the body center of the cube, respectively. The incorporation of alkali metal atoms gave rise to [MnAg8−nAu7(C≡CtBu)12]+ clusters (n=1 for M=Na, K, Rb, Cs and n=2 for M=K, Rb), with the alkali metal ion(s) presumably occupying the vertex site(s), whereas the incorporation of copper atoms produced [CunAg8Au7−n(C≡CtBu)12]+ clusters (n=1–6), with the Cu atom(s) presumably occup…

Substitution reactiongold-silver nanoclustersta114Chemistry010405 organic chemistrySuperatomInorganic chemistrychemistry.chemical_elementGeneral ChemistryGeneral MedicineCubic crystal systemAlkali metal010402 general chemistryCopper01 natural sciencesCatalysisIonNanoclusters0104 chemical sciencesCrystallographycopperCluster (physics)ta116superatomsalkalai metalsAngewandte Chemie
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Effects of Crystal Field Splitting and Surface Faceting on the Electronic Shell Structure

1992

The shell structure of the valence electrons is clearly observed in all alkali and noble metal clusters containing up to hundreds of atoms[1 – 4]. It is seen in the abundances of the clusters, in the ionization potential and in the polarizability. The shell structure of the valence electrons is closely related to the shell model of nuclei, but is simpler owing to the negligibly small spin-orbit interaction. The ability to produce all sizes of metal clusters has made the metal clusters a test ground for the super-shell structure[5].

Surface (mathematics)Materials scienceNuclear Theoryengineering.materialAlkali metalMolecular physicsFacetingCrystal field theoryPolarizabilityPhysics::Atomic and Molecular ClustersengineeringCondensed Matter::Strongly Correlated ElectronsNoble metalIonization energyAtomic physicsValence electron
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Influence of sample pan on the thermal behaviour of KSCN measured with TG

2003

Abstract In this study, the influence of the sample pan on the thermal behaviour of potassium thiocyanate (KSCN) was investigated. The measurements were performed with thermogravimetry (TG) and the two sample pans used were a platinum pan and a ceramic crucible. The samples were heated to 400–950 °C and the thermal products were identified by powder diffraction. The thermal behaviour of KSCN was found to be dependent on the sample pan used. With the platinum sample pan KSCN reacted in the first step into a mixture of K 2 SO 4 and potassium tetracyanoplatinate (K 2 Pt(CN) 4 ). In the second step, the mixture reacted further to pure K 2 SO 4 . In the ceramic sample crucible, however, the reac…

ThiocyanateAnalytical chemistrychemistry.chemical_elementCondensed Matter PhysicsAlkali metalRubidiumThermogravimetrychemistry.chemical_compoundchemistryPotassium thiocyanateSample preparationPhysical and Theoretical ChemistryPlatinumThermal analysisInstrumentationThermochimica Acta
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Acid−Base Properties of Synthetic and Natural Polyelectrolytes: Experimental Results and Models for the Dependence on Different Aqueous Media

2008

Protonation constants of several natural and synthetic humates and fulvates were determined by ISE-H+ potentiometry in different ionic media (alkali metal halides and tetraethylammonium iodide) at different ionic strengths and T ) 298.15 K. Experimental data obtained in previous studies of different synthetic (polyacrylates, polymethacrylates, polyacrylate-co-maleate) and naturally occurring (alginate, humic substances) polycarboxylates were also taken into account in the general analysis of acid-base properties of polyelectrolytes. Protonation constants were expressed as a function of the dissociation degree (R) using three models, namely, a simple linear model, the Ho¨gfeldt three-paramet…

acid-base properiteAcrylate polymerdiprotic-like modelTetraethylammonium iodideGeneral Chemical EngineeringInorganic chemistryHalideIonic bondingProtonationGeneral ChemistryUronic acidAlkali metalPolyelectrolytethermodynamicchemistry.chemical_compoundchemistrySettore CHIM/01 - Chimica AnaliticapolyelectrolyteJournal of Chemical & Engineering Data
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