Search results for " metal"

showing 10 items of 2159 documents

Alkaline Pre-treatment of Hardwood Chips Prior to Delignification

2013

Scots pine (Pinus sylvestris) chips were pre-treated with alkaline solutions (alkali charges of 1, 2, 3, 4, 6, and 8% of NaOH on the oven-dried wood material) at 130°C and 150°C for various treatment times (30, 60, 90, and 120 minutes). Under these conditions, 2.0–13.6% of the wood d.s. was dissolved into the aqueous hydrolysates. The soluble organic fraction was primarily characterized in terms of carbohydrates (monosaccharides and oligo-/polysaccharides) and their alkali-catalyzed degradation products: aliphatic carboxylic acids containing, besides non-volatile hydroxy carboxylic acids, volatile formic and acetic acids. With increasing alkali charge, temperature, and time, the enhanced fo…

chemistry.chemical_classificationAqueous solutionGeneral Chemical EngineeringGeneral ChemistryPolysaccharideAlkali metalHydrolysatechemistry.chemical_compoundchemistryHardwoodDegradation (geology)Organic chemistryMonosaccharideLigninGeneral Materials Scienceta116Journal of Wood Chemistry and Technology
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Bimolecular reduction of 9-alkyl-3-nitrocarbazoles

2007

AbstractReduction of 9-alkyl-3-nitrocarbazoles (Ia–Ie) with lithium aluminium hydride gave corresponding 9,9′-dialkyl-3,3′-azocarbazoles (IIa–IIe) in moderate yield. By the action of zinc dust in alcohol and aqueous alkali on I or II, 5,13-dialkyldiindolo[3,2-a,d]phenazines (IIIa–IIId) were obtained. Parent compounds, viz. 3,3′-azocarbazole (IIf) and diindolo[3,2-a,d]phenazine (IIIf) could not be obtained in these ways. Compound IIf was obtained in Vorländer reaction and IIIf by thermal decomposition of 3-azidocarbazole. Formation of IIIa–IIId is explained as a result of ortho-benzidine rearrangement of hypothetical 9,9′-dialkyl-3,3′-hydrazocarbazoles.

chemistry.chemical_classificationAqueous solutionGeneral Chemical EngineeringThermal decompositionInorganic chemistryPhenazineAlcoholGeneral ChemistryLithium aluminium hydrideAlkali metalBiochemistryMedicinal chemistryIndustrial and Manufacturing Engineeringchemistry.chemical_compoundchemistryYield (chemistry)Materials ChemistryAlkylChemical Papers
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Effects of organic matter complexation on partitioning of transition metals into calcite: Cave-analogue crystal growth experiments

2022

We highlight the potential for first row transition metals to carry paleohydrological signals in speleothems, and argue that these metals constitute valuable proxies for climate reconstructions. Metal availability to speleothems is hypothesised to be restricted by organic complexation, which strongly limits the free ion activity of transition metals (Co2+, Ni2+ and Cu2+) in dripwater, thereby creating a kinetic overprint on metal concentrations and isotope ratios in speleothem calcite. This study presents the results of the first cave-analogue experiments of transition metal partitioning into calcite in the absence and presence of organic ligands. The Geological Microclimate (GeoMic) system…

chemistry.chemical_classificationCalcitegeographyAqueous solutiongeography.geographical_feature_categoryInorganic chemistryNitrilotriacetic acidSpeleothemF800Metalchemistry.chemical_compoundchemistryTransition metalGeochemistry and Petrologyvisual_artvisual_art.visual_art_mediumOrganic matterChelation
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Alkali metal complexation properties of resorcinarene bis-crown ethers: effect of the crown ether functionality and preorganization on complexation

2008

Abstract The synthesis and characterization of tetramethoxy resorcinarene tribenzo-bis-crown ethers, m - and p -TBBC6 , are described. The effect of the added aromatic functionality in the crown ether bridge on the alkali metal complexation properties was investigated and compared to the properties of tetramethoxy resorcinarene bis-crown-5 ( BC5 ) by means of 1 H NMR spectroscopy and X-ray crystallography. It was found that BC5 and m -TBBC6 were capable of binding alkali metal cations (K + , Rb + , and Cs + ), with the highest affinity toward Cs + cation, while no binding was observed in the case of p -TBBC6 , which confirms the significance of the complementarity and preorganization for co…

chemistry.chemical_classificationChemistryOrganic ChemistryDrug DiscoveryPolymer chemistryInorganic chemistryProton NMRNO bindingResorcinareneAlkali metalSpectroscopyBiochemistryCrown etherTetrahedron
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Configuration of Enolates of β-Ketocarboxylic Acid Esters — Carbocation-Carbanion Salts

1996

Deprotonation of (Z)- or (E)-3-hydroxy-2,3-dimesitylpropenoic acid methyl ester (1a) with tetrakis(dimethylamino)-methane (3) led to stable salt (E)-2a, which belongs to a very rare species of salts that consist of a heteroatom-stabilized carbocation and a heteroatom-stabilized carbanion. An analogous guanidinium salt (E)-2b was formed in the reaction of 3-oxo-2,3-diphenylpropanoic acid methyl ester (1b) and 3. The molecular structures of these enolates were studied by NMR spectroscopy and an X-ray analysis of (E)-2a {MC[N(CH3)2]3} and compared with those of the corresponding alkali enolates.

chemistry.chemical_classificationChemistryOrganic ChemistrySalt (chemistry)General ChemistryNuclear magnetic resonance spectroscopyCarbocationAlkali metalMedicinal chemistryMethanechemistry.chemical_compoundDeprotonationOrganic chemistryPhysical and Theoretical ChemistryX ray analysisCarbanionLiebigs Annalen
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ChemInform Abstract: Crown Ether Substituted 1,4-Distyrylbenzenes and Their Complexation with Alkali Picrates.

2000

chemistry.chemical_classificationChemistryStereochemistryPolymer chemistryGeneral MedicineAlkali metalCrown etherChemInform
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Native and modified alumina, titania and zirconia in normal and reversed-phase high-performance liquid chromatography

1996

Chromatographic properties of silica, alumina, titania and zirconia have been investigated in normal phase mode in the separation of test mixtures of basic, neutral and acidic compounds. In contrast to silica the chromatographic behaviour revealed the basic properties of the alumina, titania and zirconia surfaces. Therefore, separation of basic compounds on these packings seems very promising. Lypophilic packings have been synthesized by modification of titania, zirconia and alumina with organosilanes and polymers and tested for the separation of basic compounds and proteins. High hydrolytic stability of the modified packings was observed during separations with strong alkali and acidic elu…

chemistry.chemical_classificationChromatographyOrganic baseChemistryOrganic ChemistryClinical Biochemistrytechnology industry and agricultureReversed-phase chromatographyPolymerequipment and suppliesAlkali metalBiochemistryHigh-performance liquid chromatographyAnalytical ChemistryHydrolysisChemical engineeringPhase (matter)Cubic zirconiaChromatographia
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Synthesis, Structures and DFT Calculations on Alkaline-Earth Metal Azide-Crown Ether Complexes

2008

The first examples of azide complexes of calcium, strontium or barium with crown ethers have been prepared and fully characterised, notably [Ba([18]crown-6)(N3)2(MeOH)], [Sr([15]crown-5)(N3)2(H2O)], [Ca([15]crown-5)(N3)2(H2O)] and [Sr([15]crown-5)(N3(NO3)]. Crystal structures reveal the presence of a variety of coordination modes for the azide groups including kappa 1-, mu-1,3- and linkages via H-bonded water molecules, in addition to azide ions. The [Ba([18]crown-6)(N3)2(MeOH)].1/3 MeOH contains dinuclear cations with three mu-1,3-NNN bridges, the first example of this type in main group chemistry. The structures obtained have been compared with molecular structures computed by density fun…

chemistry.chemical_classificationCoordination numberOrganic ChemistryInorganic chemistryIonic bondingEtherGeneral ChemistryCrystal structureAlkali metalCatalysischemistry.chemical_compoundCrystallographychemistryMoleculeAzideDFT crown ether azidesCrown ether
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Bis(3,5-dimethyl-1H-pyrazolyl)selenide--a new bidentate bent connector for preparation of 1D and 2D co-ordination polymers.

2007

The synthesis and description of eight polymeric complexes formed by transition metals with the bifurcated ligand bis(3,5-dimethyl-1H-pyrazolyl)selenide are discussed together with X-ray crystal analysis as well as variable temperature magnetic susceptibility and characterization by Mossbauer spectroscopy. Preferable types of binding patterns of the ligand were determined, which include a variation of the bridging modes (cis- and trans-) and of the separation length, where the latter parameter together with bending of the ligand molecule were found to be dependent on the type of co-ordination geometry of the central atom and the nature of the anion. A strategy for increasing the structure d…

chemistry.chemical_classificationDenticityBent molecular geometryInorganic chemistryPolymerMagnetic susceptibilityIonInorganic Chemistrychemistry.chemical_compoundCrystallographychemistryTransition metalSelenideMössbauer spectroscopyDalton transactions (Cambridge, England : 2003)
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2,2′:6′,2″-Terpyridine Trimethylplatinum(IV) Iodide Complexes as Bifunctional Halogen Bond Acceptors

2016

Three new organometallic trimethylplatinum(IV) iodide complexes of 2,2′:6′,2″-terpyridines have been synthesized and characterized by 1H NMR spectroscopy, mass spectrometry, elemental analysis, and single crystal X-ray diffraction analysis. The X-ray crystal structures of PtMe3I(L) complexes 1–3 {L for 1 = 4′-chloro-2,2′:6′,2″-terpyridine, 2 = 4′-(4-cyanophenyl)-2,2′:6′,2″-terpyridine, and 3 = 4′-(4-tolyl)-2,2′:6′,2″-terpyridine} reveal distorted octahedral coordination geometry of the platinum(IV) metal centers with bidentate coordination of the terpyridine ligands. Complexation of 1–3 with iodopentafluorobenzene (IPFB) afforded single-crystal structures of halogen bond (XB) complexes 1a–3…

chemistry.chemical_classificationDenticityHalogen bond010405 organic chemistryhalogen bondsIodideGeneral ChemistryCrystal structurehalogen bond acceptors010402 general chemistryCondensed Matter PhysicsPhotochemistry01 natural sciencestransition metal complexes0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryPyridineGeneral Materials ScienceTerpyridineBifunctionalta116Coordination geometryCrystal Growth & Design
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