Search results for "Octahedral molecular geometry"

showing 10 items of 68 documents

Phosphasalen group IV metal complexes: synthesis, characterization and ring opening polymerization of lactide.

2020

International audience; We report the synthesis of a series of Zr and Ti complexes bearing phosphasalen which differs from salen by the incorporation of two P atoms in the ligand backbone. The reaction of phosphasalen proligands (1a-1c)H2 with Zr(CH2Ph)4 led to different products depending on the nature of the N,N-linker in the ligand. In case of ethylene-linked phosphasalen, octahedral Zr complex 2a formed as a single stereoisomer in trans geometry. With the phenylene linker, it was shown by dynamic NMR spectroscopy that complex 2b exists as a mixture of trans and cis-β isomers in solution, both enantiomers (Δ and Λ) of the cis-β isomer being in fast equilibrium with respect to the NMR tim…

010402 general chemistryLIGANDS SYNTHESIS01 natural sciencesRing-opening polymerizationCoordination complexInorganic ChemistryINDIUM COMPLEXESOctahedral molecular geometry[CHIM]Chemical SciencesSALALEN COMPLEXESCYCLIC ESTERSCOORDINATION CHEMISTRYZIRCONIUM COMPLEXES; COORDINATION CHEMISTRY; SALALEN COMPLEXES; LIGANDS SYNTHESIS; INDIUM COMPLEXES; SALEN LIGANDS; CYCLIC ESTERS; INITIATORS; CATALYSIS; ALUMINUMchemistry.chemical_classification010405 organic chemistryLigandCATALYSISCationic polymerizationNuclear magnetic resonance spectroscopyALUMINUM0104 chemical sciencesCrystallographychemistrySALEN LIGANDSAlkoxy groupINITIATORS[CHIM.OTHE]Chemical Sciences/OtherIsomerizationZIRCONIUM COMPLEXESDalton transactions (Cambridge, England : 2003)
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Self-assembly of the tetrachlorido(oxalato)rhenate( iv ) anion with protonated organic cations: X-ray structures and magnetic properties

2016

Two novel ReIV compounds of formulae [H2bpy][ReIVCl4(ox)] (1) and [H3biim]2[ReIVCl4(ox)] (2) [H2bpy2+ = 4,4′-bipyridinium dication, H3biim+ = 2,2′-biimidazolium monocation, and ox2− = oxalate dianion] have been synthesised and magneto-structurally characterised. 1 crystallises in the monoclinic system with space group C2/c, and 2 crystallises in the triclinic system with space group P[1 with combining macron]. The ReIV ion in 1 and 2 is six-coordinate, bonded to four chloride ions and two oxalate-oxygen atoms in a distorted octahedral geometry. Short intermolecular ReIV–Cl⋯Cl–ReIV contacts, Cl⋯π type interactions and hydrogen bonds are present in the crystal lattice of both compounds, gener…

010405 organic chemistryChemistryInorganic chemistrySupramolecular chemistryGeneral ChemistryCrystal structureTriclinic crystal system010402 general chemistryCondensed Matter Physics01 natural sciencesMagnetic susceptibilityOxalate0104 chemical sciencesDicationchemistry.chemical_compoundCrystallographyOctahedral molecular geometryGeneral Materials ScienceMonoclinic crystal system
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Cooperative H-bonds, π⋯π and anion⋯π interactions as driving forces in the construction of novel Cu(II) bis(imidazol-2-yl) supramolecular 3D framewor…

2019

Abstract Two new Cu(II) complexes with bis(2-imidazolyl) based ligands, with the formula [Cu(BIM)2(SCN)2]·2H2O (BIM = bis(2-imidazol-2-yl)methane) and [Cu(HBIMAM)2(OH2)2](BF4)4·2H2O (BIMAM = bis(2-imidazol-2-yl)methylaminomethane) have been synthesized and characterized. Both compounds contain mononuclear entities as molecular building blocks (MBBs); neutral [Cu(BIM)2(SCN)2] in compound 1 and cationic [Cu(HBIMAM)2(OH2)2]4+ in compound 2. The coordination around the metal atoms shows a tetragonally-elongated octahedral geometry (CuN4S2 and CuN4O2 chromophores). The Q-band EPR spectra of both compounds are indicative of an essentially d x 2 - y 2 ground state for copper(II) ions. The analysis…

010405 organic chemistryHydrogen bondChemistrySupramolecular chemistryCrystal structureChromophore010402 general chemistry01 natural sciences0104 chemical scienceslaw.inventionInorganic ChemistryMetalCrystallographylawvisual_artOctahedral molecular geometryMaterials Chemistryvisual_art.visual_art_mediumPhysical and Theoretical ChemistryGround stateElectron paramagnetic resonancePolyhedron
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Enhancement of the Intermolecular Magnetic Exchange through Halogen···Halogen interactions in Bisadeninium Rhenium(IV) Salts

2017

Two novel ReIV salts of general formula [H2ade]2[ReIVX6]X2·4H2O [H2ade2+ = 9H-adenine-1,7-diium; X = Cl(1) and Br(2)] have been synthesized and magneto-structurally characterized. 1 and 2 are isostructural salts that crystallize in the orthorhombic system with space group Fdd2. Both compounds are made up of discrete mononuclear [ReIVX6]2- and X- anions and doubly protonated adenine cations. The six-coordinate rhenium(IV) ion is bonded to six halide ligands [X = Cl (1) and Br (2)] in an octahedral geometry. Short intermolecular ReIV−X···X−ReIV interactions, as well as ReIV−X···H−N(H2ade) and ReIV−X···H−Ow hydrogen bonds, are present in the crystal lattice of 1 and 2. Magnetic suscep-tibility…

010405 organic chemistryInorganic chemistryIntermolecular forcechemistry.chemical_elementGeneral ChemistryCrystal structureRhenium010402 general chemistryCondensed Matter Physics01 natural sciencesMagnetic susceptibility0104 chemical sciencesCrystallographychemistryOctahedral molecular geometryHalogenGeneral Materials ScienceOrthorhombic crystal systemIsostructural
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Zinc(ii), cobalt(ii) and manganese(ii) networks with phosphoserine ligand: synthesis, crystal structures and magnetic and proton conductivity propert…

2017

A series of zinc(II), cobalt(II) and manganese(II) coordination networks with phosphoserine ligand (H3PSer) are synthesized and characterized. Whereas in compounds 1 and 2 with the general formula [M(HPser)]n [M = Zn (1) and Co (2)], the metal(II) ion presents a tetrahedral geometry, in [Co(HPSer)(H2O)2]n (3) and [Mn(HPSer)(H2O)]n (4), the metal(II) ions are in a distorted octahedral geometry. The 3D frameworks are formed by inorganic layers built up from MO4 or MO6 polyhedra and phosphate groups. These layers are linked by the carboxylate groups of the phosphoserine ligand. The presence of extended hydrogen bonding stabilizes the 3D network and favours the proton transfer leading to modera…

010405 organic chemistryLigandInorganic chemistrychemistry.chemical_elementTetrahedral molecular geometryZincManganese010402 general chemistry01 natural sciences0104 chemical sciencesInorganic ChemistryMetalchemistry.chemical_compoundCrystallographychemistryvisual_artOctahedral molecular geometryvisual_art.visual_art_mediumCarboxylateCobaltDalton Transactions
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The Crucial Role of Polyatomic Anions in Molecular Architecture: Structural And Magnetic Versatility of Five Nickel(II) Complexes Derived from A N,N,…

2009

Five new nickel(II) complexes [Ni(2)L(2)(N(3))(2)(H(2)O)(2)] (1), [Ni(2)L(2)(NO(3))(2)] (2), [Ni(2)L(2)(O(2)CPh)(CH(3)OH)(2)]ClO(4).0.5CH(3)OH (3), [Ni(3)L(2)(O(2)CPh)(4)] (4), and [Ni(2)L(2)(NO(2))(2)](n) (5) have been synthesized by using a tridentate Schiff base ligand, HL (2-[(3-Methylamino-propylimino)-methyl]-phenol), and the polyatomic monoanions N(3)(-), NO(3)(-), PhCOO(-), or NO(2)(-). The complexes have been structurally and magnetically characterized. The structural analysis reveals that in all five complexes, the Ni(II) ions possess a distorted octahedral geometry. Complexes 1 and 2 are dinuclear with di-mu-1,1-azido and di-mu(2)-phenoxo bridges, respectively. Complex 3 is also …

AnionsSchiff baseMolecular StructureSpectrophotometry InfraredLigandStereochemistryPolyatomic ionchemistry.chemical_elementCrystallography X-RayLigandsIonInorganic ChemistryMagneticschemistry.chemical_compoundNickelCrystallographychemistryNickelOctahedral molecular geometryCarboxylatePhysical and Theoretical ChemistrySchiff BasesInorganic Chemistry
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Influence of the anions on the structure and magnetic properties of a series of bis(µ-diphexono)-bridged linear trinuclear copper(II) complexes: an e…

2011

The reaction of H(2)L (N,N'-dimethyl-N,N'-bis(2-hydroxy-3-methoxy-5-methylbenzyl)-ethylenediamine) with different copper salts, in methanol and using a H(2)L/Cu = 2 : 3 molar ratio, led to four new bis(μ-diphenoxo)-bridged Cu(3) complexes of general formula [{Cu(S)(μ-L)}(2)Cu(H(2)O)(2n)]X(2) (S = CH(3)OH, n = 1 and X = BF(4)(-) for (1) or ClO(4)(-) for (2); S = Br(3)(-) anion and n = 1 without any X species for (3); S = H(2)O, n = 0 and X = NO(3)(-) for (4)). The use in the same reaction conditions of 4,4'-bipyridine (4,4'-bipy) as connector led to the chain complex [{Cu(μ-4,4'-bipy)(0.5)(μ-L)}(2)Cu(H(2)O)(2n)](ClO(4))(2)·17H(2)O (5). The structure of the centrosymmetric trinuclear unit in …

AnionsSteric effectsChemistryInorganic chemistryMolecular Conformationchemistry.chemical_elementEthylenediamineModels TheoreticalCrystallography X-RayCopperMagnetic susceptibilityInorganic ChemistryMetalMagneticsCrystallographychemistry.chemical_compoundCoordination Complexesvisual_artOctahedral molecular geometryAtomvisual_art.visual_art_mediumAntiferromagnetismta116CopperDalton Transactions
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Mononuclear and tetranuclear Fe(III) complexes with two different types of N, O donor Schiff base ligands

2013

Abstract A mononuclear Fe(III) complex of a tetradentate N 2 O 2 donor Schiff base ligand derived from 3-ethoxysalicaldehyde and ethylenediamine has been reported. In addition two tetranuclear Fe(III) complexes with discrete Fe 4 III (μ 4 -O) cores have been synthesized and characterized using two Schiff base ligands (H 2 L 1–2 ) derived from two different aromatic acid hydrazides and diacetyl monoxime. The mononuclear Fe(III) and one of the tetranuclear Fe(III) complexes have been structurally characterized by single-crystal X-ray crystallography. The mononuclear complex has a highly distorted octahedral geometry. The tetranuclear Fe(III) complexes are found to be rare examples with discre…

Aromatic acidSchiff baseLigandChemistryStereochemistryOrganic ChemistryEthylenediamineAnalytical ChemistryInorganic Chemistrychemistry.chemical_compoundCrystallographyX-ray crystallographyOctahedral molecular geometrySpectroscopyJournal of Molecular Structure
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Primary- and secondary-octahedral distortion factors in bis(1,4-H2-1,2,4-triazolium) pentabromidoantimonate(III) –1,4-H2-1,2,4-triazolium bromide

2015

Abstract The analysis of octahedral distortion in the structure of inorganic–organic (C2H4N3)2[SbBr5]·(C2H4N3)Br (BTPTB) bromidoantimonate(III) determined at 295 and 85 K, supported by the Hirshfeld surface analysis and the data retrieved from the Cambridge Structural Database, is presented. The anionic substructure of BTPTB is built from distorted [SbBr6]3− octahedra that are connected by the cis corners forming polymeric one-dimensional [{SbBr5}n]2n− zig-zag chains running parallel to the a axis and isolated Br− ions. The organic substructure consists of the fully ordered 1,4-H2-1,2,4-triazolium cations. The oppositely charged substructures are linked by the system of N(C)–H⋯Br hydrogen b…

ChemistryHydrogen bondIonHybrid materials; Octahedral distortion; Hirshfeld surface analysis; Distortion parameters; Hydrogen bondingInorganic Chemistrychemistry.chemical_compoundCrystallographyOctahedronBromideDistortionOctahedral molecular geometryMaterials ChemistrySubstructurePhysical and Theoretical ChemistryHybrid materialPolyhedron
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Self-Assembly of a Copper(II)-Based Metallosupramolecular Hexagon

2008

The self-assembly of a 1:1 mixture of copper(II) ions and a rigid heteroditopic ligand L containing phen and terpy binding units gives rise in the solid state to green crystals of a hexanuclear metallamacrocycle 1. X-ray crystallography reveals that 1 consists of molecular hexagons of the grid-type family in which each metal ion is bound to two different ligands through the phen and terpy units, plus a weakly coordinated PF6 (-) anion in a highly distorted octahedral geometry. ES-MS studies of acetonitrile solutions of L and copper(II) in a 1:1 ratio show mixtures of polynuclear complexes in which trinuclear L3Cu3 species are predominant.

ChemistryLigandInorganic chemistrySolid-statechemistry.chemical_elementCopperIonInorganic ChemistryMetalCrystallographychemistry.chemical_compoundvisual_artOctahedral molecular geometryvisual_art.visual_art_mediumSelf-assemblyPhysical and Theoretical ChemistryAcetonitrileInorganic Chemistry
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