Search results for "Periodic table"

showing 10 items of 262 documents

MZ-35, a new layered pentasil borosilicate synthesized in the presence of large alkali cations

2013

Abstract A new layered borosilicate has been synthesized in the presence of cesium and sodium cations and its structure has been solved by a combination of automated diffraction tomography (ADT) and X-ray powder diffraction (XRPD). MZ-35 has a composition NaCs 2 [BSi 7 O 16 (OH) 2 ](OH) 2 ·4H 2 O and features space group P-4m2. The unusually small unit cell ( a 7.3081 A, c 10.7520 A) is shared by two random-stacked configurations of the structure: a network of connected pentasil units related to the layer of RUB-18 and a bidimensional checkerboard of intersecting ladders of 4-membered rings. The two configurations are related by the simple face-sharing inversion of a hydroxyl-bearing tetrah…

Automated electron diffraction tomography; Rietveld structure refinement; Layered borosilicate; 4-MR ladders; Face-sharing terahedraMaterials science4-MR laddersSodiumchemistry.chemical_element02 engineering and technology010402 general chemistry01 natural sciencesDiffraction tomographyFace-sharing terahedraGroup (periodic table)General Materials ScienceRietveld structure refinementLayered borosilicateBorosilicate glassAutomated electron diffraction tomographyGeneral Chemistry4-MR ladders; Automated electron diffraction tomography; Face-sharing terahedra; Layered borosilicate; Rietveld structure refinement[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsAlkali metal4-MR ladders; Automated electron diffraction tomography; Face-sharing terahedra; Layered borosilicate; Rietveld structure refinement;0104 chemical sciencesCrystallographychemistryMechanics of MaterialsCaesiumTetrahedron0210 nano-technologyPowder diffraction
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1978

Biphenylchemistry.chemical_classificationchemistry.chemical_compoundMaterials sciencechemistryGroup (periodic table)Liquid crystallineMesogenPolymer chemistryPolymerDie Makromolekulare Chemie
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A versatile metathesis reaction for the formation of labile bonds between group 13 and group 15 atoms.

2003

Boron groupMain group elementGroup (periodic table)ChemistryEnvironmental chemistryPolymer chemistrySalt metathesis reactionGeneral ChemistryMetathesisCatalysisAngewandte Chemie (International ed. in English)
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Dimerization control in the self-assembly behavior of copillar[5]arenes bearing ω-hydroxyalkoxy groups.

2012

Two novel copillar[5]arenes bearing ω-hydroxyalkoxy groups are synthesized and their self-assembly properties are studied by (1)H NMR spectroscopy, specific viscosity, and X-ray measurements. The copillar[5]arene 2b bearing a 6-hydroxyhexyloxy group exhibits a reversible self-assembly behavior, leading to the formation of the self-inclusion monomer and hugging dimers. The reversible self-assembly behavior can be controlled by tuning solvent, temperature, guest, and H-bond interaction. However, the copillar[5]arene 2a bearing a short 4-hydroxybutyloxy group does not show such a self-assembly behavior to the formation of the self-inclusion monomer and hugging dimers.

Bridged-Ring CompoundsModels Molecular1h nmr spectroscopyBearing (mechanical)Molecular StructureIntrinsic viscosityOrganic ChemistryPhotochemistrylaw.inventionSolventCrystallographychemistry.chemical_compoundMonomerchemistryGroup (periodic table)lawAlcoholsBenzene DerivativesDimerizationThe Journal of organic chemistry
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The preparation of four- and six-membered chalcogenametallacyclic derivatives of group 4 metallocenes

1989

Abstract Four-membered metallacycles [(RC 5 H 4 ) 2 M(μ-E)] 2 (M = Zr, Hf; 1 , E = Se; 2 , E = S) were obtained by UV irradiation of dialkyl- or diaryl-metallocenes and equimolecular amounts of elemental chalcogen, but this method works only for bulky R groups. A more general route to compounds 1 and 2 involves the reaction of metallocene dichloride with chalcogenide anions. Six-membered metallacyclohexasulfanes (t-BuC 5 H 4 ) 2 MS 5 ( 3 , M = Zr, Hf) are obtained rather than compounds 2 when an excess of sulfur is used in the photolytic experiments, whereas compounds 1 were still formed when an excess of selenium was used. The observed difference is explained in terms of the solubility of …

ChalcogenideOrganic ChemistryInorganic chemistrychemistry.chemical_elementBiochemistryMedicinal chemistrySulfurInorganic ChemistrySolventChalcogenchemistry.chemical_compoundchemistryGroup (periodic table)Materials ChemistryIrradiationPhysical and Theoretical ChemistrySolubilitySeleniumJournal of Organometallic Chemistry
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Preparation and structural studies on dibutyltin(IV) complexes with pyridine mono- and dicarboxylic acids

2004

Abstract A number of organotin(IV) complexes with pyridine mono- and dicarboxylic acids (containing ligating –COOH group(s) and aromatic {N} atoms) were prepared in the solid state. The bonding sites of the ligands were determined by means of FT-IR spectroscopic measurements. It was found that in most cases the –COO− groups form bridges between two central {Sn} atoms, thereby leading to polymeric (oligomeric) complexes. On this basis, the experimental 119Sn Mossbauer spectroscopic data were treated with partial quadrupole splitting approximations. The calculations predicted the existence of complexes with octahedral (oh) and trigonal-bipyramidal (tbp) structures, but the formation of comple…

ChemistryCrystal structureOrganic ChemistryInorganic chemistrySolid-stateQuadrupole splittingCrystal structureBiochemistryOrganotin(IV) compoundFT-IRM€ossbauerInorganic ChemistryCrystallographychemistry.chemical_compoundOctahedronGroup (periodic table)Mössbauer spectroscopyPyridineMaterials ChemistryNMR studiesPhysical and Theoretical ChemistryFourier transform infrared spectroscopyJournal of Organometallic Chemistry
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Adsorbed CO on group 10 metal fragments: A DFT study

2009

DFT calculations on the helicopter and cartwheel rotations of one CO molecule adsorbed at the bridge site on metal-surface fragments, characterized by two (M(8)) or three (M(14)) metal-atom layers (M = Ni, Pd, Pt) were performed by the B3LYP[LANL2DZ+6-31 g(d,p)] method, to rationalize the adsorption energetics and the steric hindrance characteristics of surface CO molecules. Potential Energy Surfaces were obtained, either fixing the C-O bond-length or allowing it to change. The behavior of the three metals, as obtained from the study of the configurational space characterizing the CO adsorption on the fragments was explained on the basis of the interaction energies involved in the different…

ChemistryGeneral Chemical EngineeringDFT Infrared spectroscopy quantum chemistry metal surfaceInfrared spectroscopyGeneral ChemistryLibrary and Information SciencesQuantum chemistryComputer Science ApplicationsMetalCrystallographyAdsorptionGroup (periodic table)Settore CHIM/03 - Chimica Generale E Inorganicavisual_artvisual_art.visual_art_mediumMolecule
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ChemInform Abstract: Tetraarylmethane Analogues in Group 14. Part 2. Ph4-nSi(p-Tol)n and Ph4-nSn(p-Tol)n (n = 0-4): Effect of the p-Tolyl Substituent…

2010

ChemistryGroup (periodic table)StereochemistryChemical shiftGeneral MedicineChemInform
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As(III)/Sb(III)/Bi(III)–halide distances and stretching vibrations. An application of the Varshni relationship upon hypervalent group 15 compounds

1998

Abstract A Varshni treatment between stretching frequencies and bond lengths is given for 16 heterocycles of the types Hal–M(SCH 2 CH 2 ) 2 X and Hal–M(CH 2 CH 2 CH 2 ) 2 X (M=As/Sb/Bi, Hal=Cl/Br/I, X=O, S, NR). The intensities of the Raman emissions for the M–Hal bonds increase in the following order: Cl≪Br −1/2 , decrease in the following order: Cl>Br≫I. Practically, the Varshni constants are used to estimate the complementary quantity, stretching frequency or bond length, in 35 cases.

ChemistryInorganic chemistryHypervalent moleculeHalideAtomic and Molecular Physics and OpticsAnalytical ChemistryBond lengthsymbols.namesakeCrystallographyGroup (periodic table)symbolsRaman spectroscopyInstrumentationSpectroscopySpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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A New Heptanuclear Cobalt(II) Cluster Encapsulated in a Novel Heteropolyoxometalate Topology:  Synthesis, Structure, and Magnetic Properties of [Co7(…

2004

The synthesis and the structural and magnetic characterization of a novel heptanuclear cobalt cluster encapsulated in a heteropolyoxotungstate is reported. This complex shows how it is possible to control the nuclearity of the Co clusters formed in a tungstate solution by slightly changing the synthetic conditions, and the relevance of pH in this regard. This heptanuclear complex [Co7(H2O)2(OH)2P2W25O94]16- (Co7) crystallizes in the triclinic space group P1 (a = 12.3403(6) A, b = 22.5966(11) A, c = 23.2645(12) A, α = 68.7830(11)°, β = 83.7981(12)°, γ = 78.5423(13)°, V = 5922.4(5) A3, Z = 2) and is formed by six CoO6 octahedra from two Co3 trimers sustained by Keggin trivacant fragments held…

ChemistryInorganic chemistrychemistry.chemical_elementTriclinic crystal systemInorganic ChemistryCrystallographychemistry.chemical_compoundTungstateOctahedronGroup (periodic table)TetrahedronCluster (physics)AntiferromagnetismPhysical and Theoretical ChemistryCobaltInorganic Chemistry
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