Search results for "Metal ions in aqueous solution"

showing 10 items of 256 documents

X-Ray structure of [ReCl4(μ-ox)Cu(pyim)2]: a new heterobimetallic ReIVCuIIferrimagnetic chain

2008

A new heterobimetallic Re(IV)Cu(II) compound has been prepared and its crystal structure determined by single-crystal X-ray diffraction; magnetic susceptibility measurements show that this compound behaves as a ferrimagnetic chain with significant antiferromagnetic interactions between Re(IV) and Cu(II) metal ions.

Inorganic ChemistryDiffractionCrystallographyMaterials scienceChain (algebraic topology)FerrimagnetismMetal ions in aqueous solutionX-rayAntiferromagnetismCrystal structureMagnetic susceptibilityDalton Trans.
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Phenolate- and acetate (both μ2-1,1 and μ2-1,3 modes)-bridged linear Co(II)3 and Co(II)2Mn(II) trimers: magnetostructural studies.

2013

A full report on the synthesis, crystal structure, spectroscopic characterization, and magnetic properties of two new trinuclear complexes (one homo- and another heterotrinuclear) [(L)2Co(II)3(OAc)4(MeOH)2]·6MeOH (1) and [(L)2Co(II)2Mn(II)(OAc)4(MeOH)2]·6MeOH (2) [HL = N-methyl-N-2-hydroxybenzyl-2-aminoethyl-2-pyridine] is presented. The properties of 1 and 2 are compared to that of three previously communicated complexes [(L)2Ni(II)3(OAc)4(MeOH)2]·6MeOH (3), [(L)2Ni(II)2Mn(II)(OAc)4(H2O)2] (4), and [(L)2Ni(II)2Co(II)(OAc)4(MeOH)2]·6MeOH (5) (Inorg. Chem.2007, 46, 5128-5130). All are centrosymmetric trimers with the central metal ion situated on an inversion center. Adjacent metal ions are …

Inorganic ChemistryMetalCrystallographyChemistryStereochemistryvisual_artMetal ions in aqueous solutionvisual_art.visual_art_mediumCrystal structurePhysical and Theoretical ChemistryInorganic chemistry
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Equilibrium and Kinetic Properties of Cu II Cyclophane Complexes: The Effect of Changes in the Macrocyclic Cavity Caused by Changes in the Substituti…

2008

The o-B232, m-B232 and p-B232 cyclophanes result from attaching the terminal amine groups of 1,4,8,11-tetraazaundecane (232) to the benzylic carbons of the corresponding o-, m- or p-xylanes. The cavity size of these cyclophanes changes moderately as a consequence of the substitution at the aromatic ring. The effects caused by these changes on the equilibrium constants for protonation and CuII complex formation of the cyclophanes are analyzed and compared with those of the noncyclic 232 polyamine. All three cyclophanes form mononuclear complexes, but only o-B232 is able to coordinate to CuII through the four amine groups simultaneously, whereas m-B232 and p-B232 can only use three nitrogen d…

Inorganic ChemistrySteric effectschemistry.chemical_compoundCrystallographychemistryMetal ions in aqueous solutionKineticsAmine gas treatingProtonationPhotochemistryEquilibrium constantDissociation (chemistry)CyclophaneEuropean Journal of Inorganic Chemistry
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Linkage isomerism in coordination polymers.

2012

The use of the recently prepared polynitrile ligand tcnopr3OH(-) ([(NC)(2)CC(OCH(2)CH(2)CH(2)OH)C(CN)(2)](-)) with different salts of Fe(II), Co(II), and Ni(II) has led to a very rare example of linkage isomerism in a coordination chain. These pairs of linkage isomers can be formulated as [M(tcnopr3OH-κN,κO)(2)(H(2)O)(2)]; M = Fe (1), Co (3), and Ni(5) and [M(tcnopr3OH-κN,κN')(2)(H(2)O)(2)]; M = Fe (2), Co (4), and Ni (6). Compounds 1-2, 3-4, and 5-6 are three pairs of linkage isomers since they present the same formula and chain structure and they only differ in the connectivity of the polynitrile ligand bridging the metal ions in the chain: through a N and an O atom (1κN:2κO-isomer) or th…

Inorganic Chemistrychemistry.chemical_classificationCrystallographyChain structureChemistryStereochemistryMetal ions in aqueous solutionAtomPolymerPhysical and Theoretical ChemistryLinkage isomerismInorganic chemistry
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Molecular-Programmed Self-Assembly of Homo- and Heterometallic Tetranuclear Coordination Compounds: Synthesis, Crystal Structures, and Magnetic Prope…

2009

New homo- and heterobimetallic tetranuclear complexes of formula [Cu4(mpba)(Me4en)4(H2O)4](ClO4)4·3H2O (1), [Cu4(mpba)(Me4en)4(H2O)4](PF6)4·2H2O (2), [Cu4(ppba)(Me4en)4(H2O)4](ClO4)4·2H2O (3), [Cu4(mpba)(dipn)4](ClO4)4·3H2O (4), [Cu4(ppba)(dipn)4](ClO4)4·2H2O (5), and [Cu2Ni2(ppba)(dipn)4(H2O)2](PF6)4 (6) [mpba = N,N′-1,3-phenylenebis(oxamate), ppba = N,N′-1,4-phenylenebis(oxamate), Me4en = N,N,N′,N′-tetramethylethylenediamine, and dipn = dipropylenetriamine] have been synthesized and structurally and magnetically characterized. Complexes 1−6 have been prepared following a molecular-programmed self-assembly method, where a heteropolytopic tetranucleating phenylenedioxamato bridging ligand (…

Inorganic Chemistrychemistry.chemical_classificationCrystallographyChemistryStereochemistryMetal ions in aqueous solutionCationic polymerizationBridging ligandCrystal structureSelf-assemblyPhysical and Theoretical ChemistryCoordination complexInorganic Chemistry
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Dinuclear Zn II Complexes of Polydentate Polyamines as Minimalist Models of Hydrolytic Reactions

2004

The synthesis of the novel macrocycle 2,6,9,12,16-pentaaza[17](2,9)(1,10)phenanthrolinophane (L3) is reported. Speciation studies on the systems ZnII−L3 and ZnII−L2 (L2 =2,6,10,13,17,21-hexaaza[22]metacyclophane) performed in aqueous solution show the formation of mono- and dinuclear ZnII complexes. In the two systems, the dinuclear complexes readily hydroxylate, with the hydroxo species being the main ones in solution at relatively low pH values. This feature makes these complexes promising hydrolytic agents for carboxy and phosphate esters. The hydrolytic ability of the L1−L3 dinuclear complexes toward the carboxy and phosphate ester bond was tested by addition of p-nitrophenyl acetate (N…

Inorganic Chemistrychemistry.chemical_compoundAqueous solutionDenticityReaction rate constantNucleophileChemistryStereochemistryMetal ions in aqueous solutionPhenanthrolineHydroxideSubstrate (chemistry)Medicinal chemistryEuropean Journal of Inorganic Chemistry
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Heptacoordinated MnIIin oxalate-based bimetallic 2D magnets: synthesis and characterisation of [Mn(L)6][Mn(CH3OH)MIII(ox)3]2(MIII= Cr, Rh; ox = oxala…

2006

Oxalate-based magnets have been known with several different crystallographic structures, from 1D to 3D, but with all of them based in metal ions with octahedral coordination. In this article we report a new bidimensional oxalate-bridged bimetallic magnet where the divalent metal appears heptacoordinated, which has strong effects in the structure and properties of this materials.

Inorganic Chemistrychemistry.chemical_compoundCrystallographyMaterials scienceOctahedronchemistryMagnetMetal ions in aqueous solutionNanotechnologyBimetallic stripOxalateDivalent metalDalton Trans.
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Dimensionality Variation in Polymeric Metallo‐Organic Frameworks

2003

Single crystal X-ray crystallography was used to determine the structures of four metallo-organic complexes derived from pyridyl ligands and the metal ions, Cu2+, Zn2+ and Ag+. Two metallo-organic layer framework structures (1 and 3), a strand (2) and a dimer (4) structure were formed when the tetradentate ligands, tetrakis(nicotinoxymethyl)methane (TNM) and tetrakis(isonicotinoxymethyl)methane (TINM), were reacted with the first and second row transition metal cations, copper, silver, and zinc. The choice of anion and ligand was found to affect the outcome of the structure. Contrary to our previous results with the same ligands and similar transition metal cations, no genuine 3D metallo-or…

Inorganic Chemistrychemistry.chemical_compoundCrystallographychemistryOctahedronTransition metalLigandDimerMetal ions in aqueous solutionInorganic chemistryX-ray crystallographyCrystal engineeringCoordination geometryEuropean Journal of Inorganic Chemistry
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Weak alkali and alkaline earth metal complexes of low molecular weight ligands in aqueous solution

2008

This work is aimed at reviewing the chemical literature dealing with thermodynamic aspects of the weak complex formation (species with log K values less than about 3) between alkali and alkaline earth metal ions with low molecular weight inorganic and organic ligands in aqueous solution. The following ligands (up to hexavalent anions) were examined in detail: (i) hydroxide, chloride, sulfate, carbonate and phosphate as inorganic, and (ii) carboxylates, amines, amino acids, complexones and nucleotides as organic ligands. The paper also identifies the main reasons responsible for the dispersion of the stability data on ion pairs in the literature. When possible, the trend of stability for the…

Ion pairsSupporting electrolyteMetal ions in aqueous solutionInorganic chemistryAlkali metal complexeWeak complexesChlorideAlkali metal complexes; Alkaline earth metal complexes; Weak complexes; Formation and stability in aqueous solution; Ion pairs.Inorganic Chemistrychemistry.chemical_compoundAlkali metal complexesAlkaline earth metal complexesMaterials ChemistrymedicineFormation and stability in aqueous solutionSettore CHIM/01 - Chimica AnaliticaPhysical and Theoretical ChemistryWeak complexeAlkaline earth metalAqueous solutionChemistryLigandAlkali metalAlkaline earth metal complexeHydroxidemedicine.drugCoordination Chemistry Reviews
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Self-consistent continuum solvation (SCCS): the case of charged systems.

2013

The recently developed self-consistent continuum solvation model (SCCS) [O. Andreussi, I. Dabo, and N. Marzari, J. Chem. Phys. 136, 064102 (2012)] is applied here to charged species in aqueous solutions. Describing ions in solution represents a great challenge because of the large electrostatic interactions between the solute and the solvent. The SCCS model is tested over 106 monocharged species, both cations and anions, and we demonstrate its flexibility, notwithstanding its much reduced set of parameters, to describe charged species in solution. Remarkably low mean absolute errors are obtained with values of 2.27 and 5.54 kcal/mol for cations and anions, respectively. These results are co…

IonsModels MolecularAqueous solutionChemistryMetal ions in aqueous solutionImplicit solvationStatic ElectricitySolvationGeneral Physics and AstronomyWaterElectrostaticsIonSolventSolvation shellChemical physicsComputational chemistryQuantum TheoryThermodynamicsPhysical and Theoretical ChemistryThe Journal of chemical physics
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