Search results for " Geometry"

showing 10 items of 2294 documents

Synthesis, structure and biological properties of several binary and ternary complexes of copper(II) with ciprofloxacin and 1,10 phenanthroline

2009

In this study, a new binary complex [Cu(HCip) 2 ](NO 3 ) 2  · 6H 2 O ( 1 ) has been synthesized and then characterized by X-ray structure analyses. In this compound, each ciprofloxacin acts as a bidentate ligand resulting in a crystallographically planar configuration; the nitrate anions are located in apical positions with an axial distance significantly larger than the equatorial distances, which would be consistent with a very weak metal ion interaction due to the Jahn–Teller effect. In addition, both the synthesis and characterization of two new ternary complexes of ciprofloxacin–copper(II)–1,10-phenanthroline, [Cu(phen)(Cip)](NO 3 ) · 4H 2 O ( 2 ) and Cu(phen)(HCip)(NO 3 ) 2  · H 2 O (…

ChemistrySinglet oxygenStereochemistryRadicalPhenanthrolinechemistry.chemical_elementBridging ligandCopperSquare pyramidal molecular geometryInorganic ChemistryMetalchemistry.chemical_compoundCrystallographyvisual_artMaterials Chemistryvisual_art.visual_art_mediumPhysical and Theoretical ChemistryTernary operationPolyhedron
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Synthesis ofo-thiatelluraphenylenezirconocenes. X-ray crystal structure of

1992

o-Thiatelluraphenylenezirconocene complexes were obtained in good yield by reaction of dilithiumo-benzenthiatelluride with zirconocene dichlorides. These compounds represent the first examples of heterodichalcogenaphenylene bent metallocences. They were characterized by spectroscopic methods and the effect on the n.m.r. results of stepwise substitution of one and two Te atoms for S is discussed.

ChemistryStereochemistryBent molecular geometryMetals and AlloysCrystal structureMetallacycleInorganic ChemistryCrystallographychemistry.chemical_compoundYield (chemistry)X-ray crystallographyMaterials ChemistryMoleculeMetalloceneOrganometallic chemistryTransition Metal Chemistry
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Crystal structure and spectroscopic study of [Cu(BPCA)(OH2)(O2CCH3)·H2O complex; BPC = N-2-pyridinylcarbonyl-2-pyridinecarboximidate anion

1989

Abstract The crystal and molecular structure of the [Cu(BPCA)(OH2)(O 2CCH3]·H2O complex (BPCA = N-2-pyridinylcarbonyl-2-pyridinecarboximidate anion) has been determined by X-ray diffraction methods. It crystallizes in the triclinic space group P l with two formula units in a cell of dimensions: a = 7.416(2), b = 8.632(4), c = 13.034(3) A, α = 74.55(3), β = 84.84(3), γ = 81.04(5)°. Least-squares refinement of 2534 reflections with I > 2.5σ(I) and 218 parameters gave a final R = 0.047 and Rw = 0.049. The structure consists of discrete [Cu(BPCA)(OH2)(O2CCH3)] neutral units linked through hydrogen bonding. The coordination geometry around copper ions can be described as tetragonal square pyrami…

ChemistryStereochemistryCrystal structureTriclinic crystal systemSquare pyramidal molecular geometryInorganic ChemistryCrystallographyTetragonal crystal systemX-ray crystallographyMaterials ChemistryMoleculePhysical and Theoretical ChemistryHydrateCoordination geometryPolyhedron
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Organotin(IV) chloride complexes with phosphocholine and dimyristoyl-L-?-phosphatidylcholine

2000

Several complexes of R n SnCl 4-n (R = Me, Ph, n = 1-3; R = nBu, n = 2, 3) with phosphocholine and dimyristoyl-L-α-phosphatidylcholine (phospholipid) have been synthesized and characterized by means of Mossbauer spectroscopy and NMR. Triorganotin chlorides form complexes of (R 3 SnCl) 2 .L stoichiometry with a trigonal bipyramidal pentacoordinate tin environment, while the others form 1:1 complexes with an octahedral hexacoordinate tin environment, with the ligands coordinating through anionic phosphodiester moieties in all cases.

ChemistryStereochemistryHexacoordinatechemistry.chemical_elementGeneral ChemistryMedicinal chemistryChemical synthesisInorganic ChemistryTrigonal bipyramidal molecular geometrychemistry.chemical_compoundOctahedronMössbauer spectroscopyPhosphodiester bondTinPhosphocholineApplied Organometallic Chemistry
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Self-Assembly of the Hexabromorhenate(IV) Anion with Protonated Benzotriazoles: X-ray Structure and Magnetic Properties

2014

Two novel ReIV compounds of formulas [HBTA]2[ReIVBr6] (1) and [HMEBTA]2[ReIVBr6] (2) [BTA = 1H-benzotriazole and MEBTA = 1-(methoxymethyl)-1H-benzotriazole] have been synthesized and magneto-structurally characterized. 1 and 2 crystallize in the triclinic system with space group P1̅. In both compounds, the rhenium ion is six-coordinate, bonded to six bromo ligands in a regular octahedral geometry. Short ReIV–Br···Br–ReIV contacts, π–π stacking, and H-bonding interactions occur in the crystal lattice of both 1 and 2, generating novel supramolecular structures based on the ReIV. The different dispositions of the cations and the intermolecular Br···Br contacts in 1 and 2 play an important stru…

ChemistryStereochemistryIntermolecular forceStackingSupramolecular chemistryProtonationGeneral ChemistryCrystal structureTriclinic crystal systemCondensed Matter PhysicsMagnetic susceptibility3. Good healthCrystallographyOctahedral molecular geometryGeneral Materials Science
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Iron(II) complexes of naphthalenes. X-ray structure of [cyclopentadienyl-iron(II)-η6-octamethylnaphthalene]PF6

1992

Abstract Complex ions [cyclopentadienyl-Fe(methylnaphthalene)]+ with 4 to 8 methyl substituents have been prepared from [CpFe(o-dichlorobenzene)]+ by a photochemical ligand exchange. Complexation shifts have been determined for 1H and 13C resonances of the η6-bonded naphthalenes. The X-ray structure of [CpFe(octamethylnaphthalene)]PF6 0.5 acetone has been determined. Crystals are monoclinic, the space group C2/c with unit-cell dimensions a = 10.689(4), b = 22.391(5), c = 20.550(4)A, β = 93.41(2)°, Z = 8. The structure determination established a distorted molecular geometry of the octamethylnaphthalene that is different from the free arene and its Cr(CO)3 complex.

ChemistryStereochemistryLigandCrystal structureInorganic Chemistrychemistry.chemical_compoundCrystallographyMolecular geometryCyclopentadienyl complexSandwich compoundX-ray crystallographyMaterials ChemistryMoleculePhysical and Theoretical ChemistryMonoclinic crystal systemInorganica Chimica Acta
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Tin(IV) complexes with O-ethyl(N-ethyl-N,N-dimethylammoniomethyl)phosphonate

1999

Abstract O,O-Diethyl-(N,N-dimethylaminomethyl)phosphonate undergoes ethyl migration leading to O-ethyl-(N-ethyl-N,N-dimethylammoniomethyl)phosphonate (L). Several new complexes of tin(IV) and organotin(IV) chlorides with the title ligand have been synthesized. The stoichiometry of the obtained complexes is as follows: (R3SnCl)2 · L (R=Me, Bu, Ph), R2SnCl2 · L (R=Me, Bu, Ph), RSnCl3 L (R=Me, Ph) and SnCl4 · L. All the complexes have been studied in solution by means of 1H-, 13C-, 31P- and 119Sn-NMR spectroscopy. Their solid state structures have been investigated by means of Mossbauer spectroscopy and the molecular structure of the complex (Ph3SnCl)2 · L has been determined by X-ray crystall…

ChemistryStereochemistryLigandOrganic ChemistryHexacoordinatechemistry.chemical_elementBridging ligandBiochemistryMedicinal chemistryPhosphonateInorganic Chemistrychemistry.chemical_compoundTrigonal bipyramidal molecular geometryOctahedronMaterials ChemistryMoleculePhysical and Theoretical ChemistryTin
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A Combined Experimental and Theoretical Study on Bis(μ‐alkoxo)diiron(III) Complexes with Hydroxybenzylaminoethanol [O,N,O] Donor Ligands: Syntheses, …

2011

Three new neutral bis(μ-alkoxo)diiron(III) complexes were prepared from N(R),N-(2-methylene-4,6-di-tert-butylphenol)aminoethan-1-ol ligands (H2L1, R = Me and H2L2, R = H). In these complexes, the ligand wraps around the metal center exhibiting a tridentate facial coordination mode with alkoxo-bridging oxygen, amine nitrogen and phenoxo oxygen donor atoms. In the complex [Fe(acac)L1]2·MeCN (1) acetylacetonato coligand complete the distorted octahedral coordination spheres of the iron(III) ions, whereas in the five-coordinate iron(III) chloride complexes [FeClL1]2 (2) and [FeClL2]2 (3) the ligands induce a geometry that is intermediate between square pyramidal and trigonal bipyramidal. Magnet…

ChemistryStereochemistryLigandSquare pyramidal molecular geometryInorganic ChemistryMetalTrigonal bipyramidal molecular geometryCrystallographyFerromagnetismOctahedronvisual_artvisual_art.visual_art_mediumAntiferromagnetismAmine gas treatingta116European Journal of Inorganic Chemistry
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New binary antimonide Hf5Sb3

1999

Abstract Hf5Sb3 can be prepared by arc-melting of hafnium and previously synthesized HfSb2. It crystallizes like the high-temperature modification of Zr5Sb3 in the Y5Bi3 structure type, space group Pnma, Z=4, a=740.75(9) pm, b=871.8(1) pm, c=1073.6(1) pm, V=693.3(1) 106pm3. An antimonide analogous to the low-temperature form of Zr5Sb3 was not obtained during our investigations. In the structure of Hf5Sb3, the Hf atoms form a three-dimensional network with numerous short Hf–Hf contacts, including the Sb atoms in severely distorted two- and three-capped trigonal prismatic voids. Calculations of the electronic structure, performed with the extended Huckel approximation as well as the TB-LMTO-A…

ChemistryStereochemistryMechanical EngineeringMetals and Alloyschemistry.chemical_elementElectronic structureCrystal structureTrigonal prismatic molecular geometryHafniumCrystallographyTight bindingMechanics of MaterialsGroup (periodic table)AntimonideMaterials ChemistryElectronic band structureJournal of Alloys and Compounds
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Crystal structure and mössbauer spectroscopy studies of the ferrimagnetic complex bimetallic salt hexaamminechromium (III) hexachloroferrate (III), […

1992

The crystal and molecular structures of the ferrimagnetic bimetallic complex salt hexaamminechromium(III) hexachloroferrate(III), [Cr(NH3)6][FeCl6], have been determined from single-crystal, three-dimensional x-ray diffraction counter data. The compound crystallizes as orange coloured crystals in the space groupC2/c of the monoclinic system with Z=4 and has cell dimensionsa=11.325(1) A,b=11.387(1) A,c=11.233(1) A, and β=90.83(1)A. The structure was refined by using segmented block diagonal least-squares techniques to discrepancy indices R and Rw of 0.0233 and 0.0285, respectively. The metal ions occupy sites with symmetry $$\bar 1$$ and are nearly octahedrally coordinated. In the [FeCl6]3− …

ChemistryStereochemistryMetals and AlloysQuadrupole splittingCrystal structureInorganic ChemistryCrystallographySuperexchangeFerrimagnetismOctahedral molecular geometryMössbauer spectroscopyX-ray crystallographyMaterials ChemistryMonoclinic crystal systemTransition Metal Chemistry
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