Search results for "OCTA"

showing 10 items of 1862 documents

Early Mortality in Patients with Multiple Myeloma Treated with Novel Agents - Analysis from Polish Myeloma Study Group

2020

Background Although the introduction of novel agents improved the survival outcomes in patients with multiple myeloma (MM), some patients died within one year (early mortality, EM) following diagnosis. In this study, we evaluated the EM rate, and investigated the risk factors associated with EM in MM patients. Aims In this study we investigated risk factors associated with EM in MM patients initially treated with novel-agent containing regimen. Methods We conducted a multicenter (15 Polish sites) retrospective study a cohort of symptomatic MM pts diagnosed between October 2006 and November 2019 and living < 365 days (d) after diagnosis. All pts were dead at the time of the analysis. …

medicine.medical_specialtybusiness.operationbusiness.industryImmunologyRetrospective cohort studyCell BiologyHematologymedicine.diseaseOctapharmaBiochemistryThalidomideRegimenNovel agentsInternal medicineCohortMedicineIn patientbusinessMultiple myelomamedicine.drugBlood
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Mn(II) complexes with sulfonamides as ligands.

2012

Abstract Sulfonamides derived from 8-aminoquinoline react with Mn(II) and Mn(III) salts to form Mn(II) complexes; the Mn(III) species are reduced to the divalent state in the presence of 1,10 phenanthroline and bipyridine. Their molecular structure, determined by single crystal X‐ray diffraction, show that all the complexes present a distorted octahedral geometry, in which the deprotonated sulfonamide acts as a bidentate ligand. UV–visible spectroscopy and changes in the melting temperature (Tm) of calf thymus DNA show a strong interaction of these complexes with DNA. The significant hypochromicity of the charge transfer transition at 370 nm without an appreciable change in wavelength and t…

chemistry.chemical_classificationNucleasebiologyStereochemistryPhenanthrolineBiochemistryDivalentInorganic Chemistrychemistry.chemical_compoundBipyridineCrystallographyDeprotonationchemistryOctahedral molecular geometrybiology.proteinMoleculeDNAJournal of Inorganic Biochemistry
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Ferromagnetic Coupling in “Double-Bridged” Dihydrogenpyrophosphate Complexes of Cobalt(II) and Nickel(II)

2015

Three isostructural compounds of the formula {[M(bipy)(H2O)(H2P2O7)]2·2H2O} [bipy = 2,2'-bipyridine; M = Ni (1), Co (2), Mn (3)] have been isolated from aqueous solutions containing the corresponding metal(II) chloride hydrate with a bipy and sodium pyrophosphate solution in a 1:1:2 molar ratio, and their structures were determined by single-crystal X-ray diffraction. The structures of 1-3 consist of neutral aqua(2,2'-bipyridine)metal(II) dinuclear units bridged by two dihydrogenpyrophosphate groups adopting a bidentate/monodentate mode. Each metal ion in 1-3 is six-coordinate in a distorted octahedral geometry, with the reduced value of the angle subtended by the chelating bipy at the meta…

DenticityInorganic chemistrychemistry.chemical_elementMagnetic susceptibilityInorganic ChemistryCrystallographyBipyridinechemistry.chemical_compoundNickelchemistryOctahedral molecular geometryPhysical and Theoretical ChemistryIsostructuralHydrateCobaltInorganic Chemistry
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Synthesis and Physical Properties of K4[Fe(C5O5)2(H2O)2](HC5O5)2·4H2O (C5O52– = Croconate): A Rare Example of Ferromagnetic Coupling via H-bonds

2012

The reaction of the croconate dianion (C(5)O(5))(2-) with a Fe(III) salt has led, unexpectedly, to the formation of the first example of a discrete Fe(II)-croconate complex without additional coligands, K(4)[Fe(C(5)O(5))(2)(H(2)O)(2)](HC(5)O(5))(2)·4H(2)O (1). 1 crystallizes in the monoclinic P2(1)/c space group and presents discrete octahedral Fe(II) complexes coordinated by two chelating C(5)O(5)(2-) anions in the equatorial plane and two trans axial water molecules. The structure can be viewed as formed by alternating layers of trans-diaquabis(croconato)ferrate(II) complexes and layers containing the monoprotonated croconate anions, HC(5)O(5)(-), and noncoordinated water molecules. Both …

Inorganic ChemistryBond lengthCrystallographyMolecular geometryOctahedronChemistryStereochemistryHydrogen bondAntiferromagnetismMoleculeProtonationPhysical and Theoretical ChemistryMonoclinic crystal systemInorganic Chemistry
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Synthesis, Crystal Structure and Magnetic Properties of [Fe(bpe)4(H2O)2](TCNQ)2 (bpe = trans-1,2-bis(4-pyridyl)ethane and TCNQ = tetracyanoquinodimet…

2005

The synthesis, structure and magnetic properties of [Fe(bpe)4(H2O)2](TCNQ)2 (1) are reported. 1 crystallizes in the triclinic P space group, a = 13.481(5), b = 14.887(3), c = 16.663(4) A, α = 101.048(18), β = 112.84(2), γ = 90.92(2)°, V = 3009.6(14) A3, Z = 2. The iron atom defines a compressed octahedron with the equatorial positions occupied by the bpe molecules which act as monodentate ligands and the two axial positions occupied by water molecules. The TCNQ− radical counterions are uncoordinated and interact by pairs defining (TCNQ)22− units strongly coupled antiferromagnetically. The iron(II) atoms are in the high spin state and its magnetic behaviour indicates the occurrence of zero-f…

chemistry.chemical_classificationDenticityChemistryStereochemistryCrystal structureTriclinic crystal systemTetracyanoquinodimethaneCoordination complexInorganic Chemistrychemistry.chemical_compoundCrystallographyOctahedronMoleculeGround stateZeitschrift für anorganische und allgemeine Chemie
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Designing binuclear transition metal complexes: a new example of the versatility of N,N′-bis(2-aminobenzyl)-4,13-diaza-18-crown-6

2005

[Abstract] N,N′-Bis(2-aminobenzyl)-4,13-diaza-18-crown-6 (L) is a versatile receptor able to adapt to the coordinative preferences of different metal cation guests. With first-row transition metal ions, L tends to form binuclear complexes but, depending on the nature of the particular metal ion, the structure of the binuclear complex may be very different. Herein we report a study of the structure and magnetic properties of the corresponding nickel(II) and cobalt(II) complexes. The X-ray crystal structure of the nickel complex (1), with formula [Ni2(L)(CH3CN)4](ClO4)4·CH3CN, shows that this compound presents a symmetric coordination environment with L adopting an anti arrangement. Each Ni(I…

Models MolecularMetal ions in aqueous solutionCoordination numberchemistry.chemical_elementCrystal structureCrystallography X-RayInorganic Chemistrychemistry.chemical_compoundMagneticsMacrocyclic ligandsTransition metalNickelCationsCrown EthersOrganometallic CompoundsCrown ethersAza Compounds18-Crown-6TemperatureBinuclear complexesCobaltCrystallographyNickelchemistryOctahedronCrystal structuresTransition-metal complexesCobalt
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Exchange Coupling Mediated by N–H···Cl Hydrogen Bonds: Experimental and Theoretical Study of the Frustrated Magnetic System in Bis(o-phenylenediamine…

2012

The title compound crystallizes in the monoclinic P2(1)/c space group with a = 11.2470(3) A, b = 5.9034(2) A, c = 12.0886(3) A, β = 115.143(1)°, and V = 726.58(4) A(3) and consists of discrete monomeric NiCl(2)(o-phenylendiamine)(2) molecules. Each o-phen ligand coordinates in a bidentate mode with the chloride ions occupying trans positions in the resulting tetragonally distorted octahedral coordination sphere. Two discrete sets of N-H···Cl hydrogen bonds link the octahedral molecules into a two-dimensional network, with type 1 interactions linking adjacent monomers along the c axis and type 2 interactions linking monomers along the diagonals in the bc plane. Analysis of the magnetic data …

DenticityCoordination sphereHydrogen bondStereochemistryZero field splittingInorganic ChemistryCrystallographychemistry.chemical_compoundOctahedronchemistryMoleculeAntiferromagnetismPhysical and Theoretical ChemistryNickel(II) chlorideInorganic Chemistry
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Shape-Dependence of Pd Nanocrystal Carburization during Acetylene Hydrogenation

2015

This interdisciplinary work combines the use of shape- and size-defined Pd nanocrystals (cubes of 10 and 18 nm, and octahedra of 37 nm) with in situ techniques and DFT calculations to unravel the dynamic phenomena with respect to Pd reconstruction taking place during acetylene hydrogenation. Notably, it was found that the reacting Pd surface evolved at a different pace depending on the shape of the Pd nanocrystals, due to their specific propensity to form carbides under reaction conditions. Indeed, Pd cubes (Pd(100)) reacted with acetylene to form a PdC0.13 phase at a rate roughly 6-fold higher than that of octahedra (Pd(111)), resulting in nanocrystals with different degrees of carburizati…

Reaction conditionsMaterials scienceNanotechnologyPd Nanocrystal Acetylene Hydrogenation DFT structure sensitivitySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAcetylene hydrogenationCarbidechemistry.chemical_compoundGeneral EnergyAcetylenechemistryNanocrystalOctahedronSettore CHIM/03 - Chimica Generale E InorganicaLattice (order)Physical chemistryPhysical and Theoretical Chemistry
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A decacobalt(ii) cluster with triple-sandwich structure obtained by partial reductive hydrolysis of a pentacobalt(ii/iii) Weakley-type polyoxometalat…

2016

Partial reductive hydrolysis of a penta-CoII/III cluster [CoII4(H2O)2(CoIIIW9O34)(PW9O34)]12− (1) leads to the formation of [Co2{Co3(H2O)(Co(OH)2W7O26)(PW9O34)}2]22− (2). This polyoxometalate is made up of two capping [PW9O34]9− units and two bridging [W7O26]10− units that assemble to encapsulate a novel deca-CoII cluster core comprising octahedral and tetrahedral CoII ions.

010405 organic chemistryChemistryInorganic chemistryMetals and AlloysGeneral ChemistryType (model theory)010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsHydrolysisCrystallographyOctahedronPolyoxometalateMaterials ChemistryCeramics and CompositesCluster (physics)Chemical communications (Cambridge, England)
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High-resolution FTIR spectrum and analysis of the ν2+ν4 combination band of 32SF6

2003

Abstract The spectroscopic knowledge of sulfur hexafluoride, which is necessary for a correct remote sensing and monitoring of this species in the Earth’s atmosphere, is still very partial. In particular, the hot bands in the strongly absorbing ν 3 region (near 948 cm −1 ) have not been analyzed yet. Their study implies the analysis of many vibrational levels and thus the spectroscopy of various fundamental, harmonic, and combination bands. The present work is a new contribution to this topic, concerning the ν 2 + ν 4 combination band. The FTIR spectrum of this region has been recorded at room temperature with a resolution of 0.002 cm −1 . The data have been analyzed thanks to the HTDS soft…

PhysicsResolution (electron density)Atomic and Molecular Physics and OpticsSymmetry (physics)Sulfur hexafluoridechemistry.chemical_compoundOctahedronchemistryHarmonicMoleculePhysical and Theoretical ChemistryAtomic physicsFourier transform infrared spectroscopySpectroscopySpectroscopyJournal of Molecular Spectroscopy
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