Search results for "Chloride"

showing 10 items of 1691 documents

CCDC 152559: Experimental Crystal Structure Determination

2001

Related Article: F.Benetollo, G.Bombieri, A.Del Pra, G.Alonzo, N.Bertazzi|2001|Inorg.Chim.Acta|319|49|doi:10.1016/S0020-1693(01)00436-4

Space GroupCrystallographytetrakis(8-Hydroxyquinolinium) hexachlorobismuthate chloride dihydrateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1982788: Experimental Crystal Structure Determination

2020

Related Article: Souvik Maity, Tanmoy Kumar Ghosh, Carlos J. Gómez-García, Ashutosh Ghosh|2020|Cryst.Growth Des.|20|7300|doi:10.1021/acs.cgd.0c00957

Space GroupCrystallographytetrakis(mu-2-{[(3-aminopropyl)imino]methyl}-6-methoxyphenolato)-bis(mu-chloro)-tetrakis(mu-hydroxido)-diaqua-dichloro-di-dysprosium(iii)-tetra-nickel(ii) bis(chloride) hexadecahydrateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 945720: Experimental Crystal Structure Determination

2013

Related Article: N. Marino, D. Armentano, T. F. Mastropietro, M. Julve, G. De Munno and J. Martinez-Lillo|2013|Inorg.Chem.|52|11934|doi:10.1021/ic4016355

Space GroupCrystallographytetrakis(mu~3~-5-(hydroxymethyl)-2-methyl-4-(oxidomethyl)pyridinium-3-olato)-tris(mu~2~-acetato)-dichloro-tetra-manganese chloride methanol solvate dihydrateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1478718: Experimental Crystal Structure Determination

2016

Related Article: Toni Mäkelä, Anniina Kiesilä, Elina Kalenius and Kari Rissanen|2016|Chem.-Eur.J.|22|14264|doi:10.1002/chem.201602362

Space GroupCrystallographytris(NN-dimethylformamide)-(11'1''1'''-(679101213202123242627-dodecahydrodibenzo[bn][1471013161922]octaoxacyclotetracosine-231617-tetrayl)tetrakis(3-(4-nitrophenyl)urea))-barium(ii) dichloride NN-dimethylformamide unknown solvateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 2060893: Experimental Crystal Structure Determination

2021

Related Article: Lucija Ptiček, Lucija Hok, Petra Grbčić, Filip Topić, Mario Cetina, Kari Rissanen, Sandra Kraljević Pavelić, Robert Vianello, Livio Racané|2021|Org.Biomol.Chem.|19|2784|doi:10.1039/D1OB00235J

Space GroupCrystallography{4-[amino(iminio)methyl]-2-hydroxyphenyl}ammonium dichlorideCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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The airway response to deep inspirations decreases with COPD severity and is associated with airway distensibility assessed by computed tomography.

2008

In patients with mild chronic obstructive pulmonary disease (COPD), the effect of deep inspirations (DIs) to reverse methacholine-induced bronchoconstriction is largely attenuated. In this study, we tested the hypothesis that the effectiveness of DI is reduced with increasing disease severity and that this is associated with a reduction in the ability of DI to distend the airways. Fifteen subjects [Global Initiative for Chronic Obstructive Lung Disease (GOLD) stage I–II: n = 7; GOLD stage III–IV: n = 8] underwent methacholine bronchoprovocation in the absence of DI, followed by DI. The effectiveness of DI was assessed by their ability to improve inspiratory vital capacity and forced expira…

SpirometryHigh-resolution computed tomographyPhysiologyRespiratory SystemVital CapacityHyperinflationSettore MED/10 - Malattie Dell'Apparato RespiratorioSeverity of Illness IndexBronchial Provocation TestsBronchoconstrictor AgentsAirway-parenchyma interdependencePulmonary Disease Chronic ObstructiveBronchoprovocationPhysiology (medical)Forced Expiratory VolumeSeverity of illnessAdministration InhalationmedicineHumansHigh-resolution computed tomographyMethacholine ChlorideAgedAged 80 and overCOPDMethacholinemedicine.diagnostic_testbusiness.industryAirway-parenchyma interdependence; Bronchoprovocation; High-resolution computed tomography; Hyperinflation; Methacholine; Administration Inhalation; Aged; Aged 80 and over; Bronchial Hyperreactivity; Bronchial Provocation Tests; Bronchoconstrictor Agents; Elasticity; Forced Expiratory Volume; Humans; Methacholine Chloride; Middle Aged; Pulmonary Disease Chronic Obstructive; Respiratory System; Severity of Illness Index; Spirometry; Vital Capacity; Inhalation; Tomography Spiral Computed; Physiology; Physiology (medical)Respiratory diseaseArticlesrespiratory systemMiddle Agedmedicine.diseaseElasticityrespiratory tract diseasesBronchial Provocation TestInhalationSpirometryAnesthesiaBronchoconstrictor AgentBronchoconstrictionMethacholinemedicine.symptomBronchial HyperreactivityAirwaybusinessTomography Spiral ComputedHumanmedicine.drugJournal of applied physiology (Bethesda, Md. : 1985)
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The yttrium chloride-1,10-phenanthroline interaction: Synthesis and X-ray crystal structure of the complex [Y(OH)(H2O)2(phen)2]2Cl4·2(phen)·MeOH

1991

Abstract Investigations on the reaction between YCl3·H2O and phen (1,10-phenanthroline) led to the isolation of the title compound. The synthesis, IR and X-ray structural characterization are described. The crystal contains centrosymmetric binuclear dications [Y2(phen)4(μ-OH)2(H2O)4]4+, uncoordinated chloride anions, two clathrated phen molecules and a disordered methanol molecule. The yttrium ions are eight-coordinated with square antiprismatic geometry to the nitrogen atoms of two phen molecules, to bridging hydroxyl groups and to two water molecules. The Y ⋯ YI separation in the dimer is 3.651(2)A˚.

Square antiprismatic molecular geometryChemistryStereochemistryDimerPhenanthrolinechemistry.chemical_elementYttriumCrystal structureChlorideInorganic Chemistrychemistry.chemical_compoundCrystallographyX-ray crystallographyMaterials ChemistrymedicineMoleculePhysical and Theoretical Chemistrymedicine.drugPolyhedron
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Quantum correlations in generalized spin star system

2006

The problem of detecting quantum signatures in the correlations formed in dynamical evolution of quantum bipartite systems receives a lot of attention in current literature. Generally speaking, the occurrence of correlations between two observables of a system does not necessarily reflect nonclassical behaviour. In this paper, the exact dynamics of a pair of uncoupled spins 1/2 interacting with a common spin 1/2 bath is investigated. Starting from a separable initial condition, the ability of the system to develop purely quantum correlations is brought to light. Physical interpretation of the concurrence function as well as a suggestion on how to measure it are given.

Statistics and ProbabilityPhysicsDISSOCIATION-CONSTANTSQuantum discordQuantum dynamicsTETRAETHYLAMMONIUM IODIDEStatistical and Nonlinear PhysicsObservable25 DEGREES CSODIUM-CHLORIDEHEAT-CAPACITIESIONIC-STRENGTH DEPENDENCEMOLECULAR-WEIGHTQuantum mechanicsQuantum processQuantum operationQuantum algorithmACTIVITY-COEFFICIENTSIONIZATION-CONSTANTQuantumCOMPLEX-FORMATIONMathematical PhysicsSpin-½
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Consideration of the formation of solids and gases in steady state modelling of crevice corrosion propagation

2007

Abstract One of the challenges in the simulation of crevice corrosion propagation is the rigorous treatment of non-aqueous species (gas or solids), since the appearance of a new phase in a crevice will automatically have an impact on its geometry. This paper presents a simple approach, where heterogeneous reactions are considered in a post-processing step, by determining the conditions of potential, external chemistry (pH, chloride, …) or geometry under which gas or solid phases could appear in the crevice. Thus, as function of these conditions, stability diagrams for the different phases that are liable to appear in an actively propagating crevice can be constructed. Such diagrams (e.g. di…

Steady stateHydrogenGeneral Chemical Engineeringchemistry.chemical_elementMineralogyMechanicsChlorideFerrouschemistryHomogeneousPhase (matter)ElectrochemistrymedicineSolid phasesCrevice corrosionmedicine.drugElectrochimica Acta
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Adducts of Tellurium Tetrachloride with Allyl Alcohol and Allyl Acetate:  1,2- vs 1,3-Addition and Structure and Dynamics of Te···O Interactions in D…

2002

The compounds Cl 3 Te[CH 2 CH(Cl)CH 2 O(H)...].Cl 2 Te[-CH 2 CH(Cl)CH 2 O-] (1) and Cl 3 Te-[CH 2 CH(CH 2 Cl)OC(CH 3 )=O...] (2) were prepared by the reaction of TeCl 4 with allyl alcohol and allyl acetate, respectively. Their molecular and crystal structures were investigated by single-crystal X-ray analysis, 1 H- 1 H-NOESY experiments, IR spectroscopy, and ab initio geometry optimization. 1 is a composite compound, whose subunits Cl 2 Te[-CH 2 CH(Cl)-CH 2 O-] (1A) and Cl 3 Te[CH 2 CH(Cl)CH 2 O(H))...] (1B) are linked in the solid state via Te...Cl-Te and O...H-O bridges. Both Te atoms are involved in similar five-membered rings, having a covalent Te-O bond in one case (1A) and a dative Te…

StereochemistryOrganic ChemistryAb initioHexacoordinateNuclear magnetic resonance spectroscopyCrystal structureMedicinal chemistryInorganic Chemistrychemistry.chemical_compoundchemistryAllyl acetateIntramolecular forceTellurium tetrachloridePhysical and Theoretical ChemistryAllyl alcoholOrganometallics
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