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1.
Shanmugaperumal Sivasubramanian Paramasivam Manisankar Mallayan Palaniandavar Natesan Arumugam 《Transition Metal Chemistry》1982,7(6):346-349
Summary Copper(II) complexes of the type CuL2, 2H2O and CuL2. Py where L=-(2-hydroxy-1-naphthyl)-N-R-nitrone (R= methyl, phenyl and variously substituted phenyls) have been isolated and characterised. They have normal magnetic moments. Their ligand field spectra indicate an octahedral geometry for the dihydrates and a five-coordinate environment for the pyridine adducts. Increased (C=N) and considerably decreased (N-O) frequencies in these complexes reveal the presence of - and -interactions of the ligand with copper through nitrone oxygen. The effect of pyridine adduct formation is to increase the Cu-O -interaction. 相似文献
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Summary Metal(II) bis-chelates of the type ML2nB [M=CoII, NiII, and CuII, L=1-hydroxy-2-naphthyl(4-X-styryl)ketone, (X=H, Me, Cl, MeO), B=H2O, Py; n=0, 2] have been prepared and characterised by element analyses, i.r., ligand field spectra, magnetic moments and thermal studies. The copper(II) chelates are anhydrous monomers oftrans-square-planar configuration. The cobalt(II) and nickel(II) chelates, obtained as dihydrates, possess a high-spintrans-octahedral structure. Their anhydrides are polymeric. All the pyridine adducts have high-spintrans-octahedral geometry. The (M–O), order, namely Cu >Ni>Co, parallels the Irving-Williams order. The weak ligand field strength of 1-hydroxy-2-naphthyl(4-X-styryl)ketones is ascribed to inhibition of extensive conjugation arising from deviation of the naphthoyl group from planarity. 相似文献
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《Journal of Coordination Chemistry》2012,65(17):1963-1975
The syntheses of copper(II) complexes with neutral macrocyclic ligands 1,4,7,10,12,- 15,17,20,23,26,27,30-dodecaazadispiro[10·4·10·4]triacontane (DDST), 2,5,7,10,13,15,18,21,-23,26,29,32-dodecaazatricyclo[20·10·0·06,17]dotriacontane (DOCD) and 2,5,7,10,13,16,18,-21,23,26,29,32-dodecaaza-1,6,17,22-tetrachlorotricyclo[20·10·0·06,17]dotriacontane (DTTD) derived from triethylenetetramine, 1,2-diaminoethane and chlorocarbons (carbon tetrachloride, 1,l,2,2-tetrachloroethane and hexachloroethane, respectively) have been studied. Complexes [Cu3(DDST)]Cl6, [Cu3(DOCD)]Cl6 and [Cu3(DTTD)]Cl6?·?H2O and the copper ion-free ligand hydrochlorides DDST?·?12HCl and DOCD?·?12HCl are supported by elemental analyses, conductivity measurements and spectroscopic studies. Potentiometric equilibrium studies on DDST and DOCD hydrochlorides and their copper complexes also support the structures. 相似文献
5.
Ming-Ming Miao Dai-Zheng Liao Zong-Hui Jiang Geng-Lin Wang 《Transition Metal Chemistry》1995,20(5):445-447
Summary Four novel trinuclear copper(II) complexes have been synthesized, namely {[Cu(pbaOH)][Cu(L)]2}(ClO4)2, where pbaOH = 2-hydroxy-1,3-propanediylbis(oxamato) and L is 1,10-phenanthroline (phen), 5-nitro-1,10-phenanthroline (NO2-phen), 2,2-bipyridyl (bipy) or 4,4-dimethyl-2,2-bipyridyl (Me2bipy). Based on i.r. and electronic spectra, elemental analyses, and conductivity measurements oxamato-bridged structures consisting of three copper(II) ions, in which each copper(II) ion has a square-planar environment, are proposed. The temperature-dependent magnetic susceptibility of {[Cu-(pbaOH)][Cu(phen)]2}(ClO4) 2 has been studied in the 4.2–300 K range, giving the exchange integral J=- 111.9cm–1. The result revealed the operation of an antiferromagnetic spin-exchange interaction between adjacent copper ions. 相似文献
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Herein, we report the structural characterization and magnetic properties of the unique squarato-bridged-tricopper(II) complex, [Cu3(pmap)3(micro1,2,3-C4O4)](ClO4)(4).2H 2O (1), based on the tripod tripyridylamine ligand bis[2-(2-pyridyl)ethyl]-(2-pyridyl)methylamine (pmap). Each of the three copper centers is penta-coordinated by four N atoms of a pmap ligand and one bridging O atom of the central squarato dianion. This complex is the first example of a non-polymeric X-ray structurally characterized trimeric transition metal complex with the three metal cations being bridged by a single squarato ligand in a micro1,2,3 coordination mode. The magnetic properties of the complex were measured over the temperature range 2-300 K. The complex exhibits moderate bulk antiferromagnetic interaction. The three magnetic exchange pathways have J values of -27.8, -20.8, and -31.9 cm(-1). The DFT calculations corroborate the relatively strong antiferromagnetic couplings obtained from the fitting of the experimental magnetic susceptibility data and allow an assignment of the fitted J values. Several geometrical parameters have been analyzed using theoretical calculations to establish magnetostructural correlations for complex 1. 相似文献
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M. S. Masoud E. A. Khalil E. El-Sayed El-Shereafy S. A. El-Enein 《Journal of Thermal Analysis and Calorimetry》1990,36(3):1033-1038
The thermal behaviour of the entitled nickel(II) and copper(II) complexes of ¯4-acetylamino-2-hydroxy-5-methyl azobenzene has been studied by means of differential thermal analysis (DTA), thermogravimetry (TG), X-ray powder diffraction, IR and electrical conductivity. A light has been thrown on the nature of interaction of the solvents of crystallization with the host complex. Some of the kinetic parameters are calculated and discussed. 相似文献
10.
V. F. Shul’gin A. I. Obukh E. B. Rusanov V. Ya. Zub V. V. Minin 《Russian Journal of Inorganic Chemistry》2009,54(8):1223-1229
The synthesis of copper(II) binuclear complexes with acyldihydrazones of saturated carboxylic acids and 4-formyl-5-hydroxy-3-methyl-1-phenylpyrazoles in which the coordination polyhedra are connected by polymethylene chains of different length (two to five units) is described. The complexes were studied by chemical and thermal analysis, IR spectroscopy, and EPR. The molecular and crystal structure of the copper(II) complex with glutaric acid and 1-(4′-chlorophenyl)-4-formyl-5-hydroxy-3-methylpyrazole acyldihydrazone (H4L) described as [Cu2L·2Py] · Py · 4H2O was determined by X-ray diffraction. The crystals are orthorhombic: a = 24.789(7) Å, b = 39.319(9) Å, c = 4.6336(14) Å, space group Pnma, Z = 4. The number of symmetrically unrelated reflections is 4716, R = 0.0606, R w = 0.1307. The central atoms are separated by a chain of eight σ bonds and are located at a distance of 8.939 Å. The copper coordination polyhedron is a square. A specific feature of the crystal structure is the stacking interaction involving chelate rings and the pyrazole ring, resulting in stacks of molecular complexes. The EPR spectrum of a solution of the complex based on the acyldihydrazone of succinic acid and 4-formyl-5-hydroxy-3-methyl-1-phenylpyrazole recorded at room temperature exhibits seven HFS lines with an intensity ratio of 1: 2: 3: 4: 3: 2: 1 and a constant of 33.3 G as a result of exchange coupling of the unpaired electrons to the two equivalent copper nuclei. An increase in the length of the polymethylene chain to 3–5 units or introduction of the para-chlorine atom into the benzene ring hampers the exchange interactions, and the EPR spectrum shows a signal of four HFS lines with a constant of 55–70 G typical of monomeric copper(II) complexes. 相似文献
11.
Infrared, electronic, electron spin resonance and d.c. polarographic data for some copper(II) tetraaza macrocyclic complexes, involving a novel cyclam type ligand, are reported and are interpreted in terms of the structure of the complexes and the influence ofJahn-Teller distortion effects and cation-anion interactions.
Eine spektroskopische und elektrochemische Untersuchung einiger makrocyclischer Kupfer (II)-Komplexe
Zusammenfassung Es wird über Infrarot-, Elektronenanregungs-, Elektronenspinresonanz- und D.C. Polarographie-Daten einiger tetraaza-makrocyclischer Kupfer(II)-Komplexe einschließlich eines neuen Cyclam-Typs als Ligand berichtet. Die Befunde werden hinsichtlich der Strukturen der Komplexe, dem Einfluß vonJahn-Teller-Verdrillungseffekten und Kation-Anion-Wechselwirkungen interpretiert.相似文献
12.
V. I. Murav’ev 《Russian Journal of Coordination Chemistry》2009,35(8):609-615
Covalent bonding in a number of copper(II) complexes with hetarylformazans that have pseudotetrahedral or square-planar symmetry of the nearest metal environment was analyzed from EPR spectra. The dependence of the unpaired electron delocalization on the pseudotetrahedral distortion of the coordination polyhedron was determined. A change in the Zeeman coupling parameters was interpreted. Various contributions to the components of the hyperfine coupling (HFC) and ligand hyperfine coupling (LHFC) tensors were calculated. pd-Mixing of the AO of the copper ion was found to have a slight effect on the HFC parameters. In the components of the LHFC tensor, the contribution from isotronic LHFC is decisive. 相似文献
13.
The complexation behaviour of copper(II) with a series of selected dihydroxycoumarins has been studied. Copper(II) binary
complexes with esculetin, daphnetin and their 4-methyl and 4-phenyl derivatives and ternary complexes having a secondary ligand,
ammonia or pyridine have bean synthesized. The general composition of binary complexes has bean found to be [Cu (H2O)2 (HL)2] and that of ternary complexes as [Cu (L) (X)4] (where X = NH3 or C5H5N). The magnetic studies indicate all the complexes to be monomeric in nature. IR studies show that one of the two phenolic
hydroxyl groups present in the ligand is lost during complexation. It is concluded that of the four ligands attached to the
copper atom dihydroxycoumarin is bound most firmly. 相似文献
14.
AbouEl-Enein SA El-Saied FA Kasher TI El-Wardany AH 《Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy》2007,67(3-4):737-743
Salicylidene-N-anilinoacetohydrazone (H(2)L(1)) and 2-hydroxy-1-naphthylidene-N-anilinoacetohydrazone (H(2)L(2)) and their iron(III), manganese(II), cobalt(II), nickel(II), copper(II) and zinc(II) complexes have been synthesized and characterized by IR, electronic spectra, molar conductivities, magnetic susceptibilities and ESR. Mononuclear complexes are formed with molar ratios of 1:1, 1:2 and 1:3 (M:L). The IR studies reveal various modes of chelation. The electronic absorption spectra and magnetic susceptibility measurements show that the iron(III), nickel(II) and cobalt(II) complexes of H(2)L(1) have octahedral geometry. While the cobalt(II) complexes of H(2)L(2) were separated as tetrahedral structure. The copper(II) complexes have square planar stereochemistry. The ESR parameters of the copper(II) complexes at room temperature were calculated. The g values for copper(II) complexes proved that the Cu-O and Cu-N bonds are of high covalency. 相似文献
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A series of copper(II) thiosulfonate complexes have been prepared via the reaction of [Cu(Me 3tren)(OH 2)](ClO 4) 2 (Me 3tren = tris(2-methylaminoethyl)amine) with three thiosulfonate ligands (RSO 2S (-), where R = Me, Ph, and MePh) and characterized by microanalysis, FTIR spectroscopy, and X-ray crystallography. In these complexes, the distorted trigonal bipyramidal copper(II) coordination sphere is occupied by four amine nitrogen atoms from the tripodal tetramine ligand and an apically bound sulfur atom from the thiosulfonate ligand. By using the tripodal tetramine ligand the oxidation of the thiosulfonate has been restricted, allowing the isolation of the complexes. The Cu-S distances were found to be similar to those in related thiosulfate complexes, indicating coordinative interactions of similar strength. Two types of intramolecular hydrogen bonding interactions were evident which enhance the binding of the thiosulfonate to the copper(II) center. These interactions, which involve two amine N-H groups and either one or two thiosulfonate oxygens, were found to be weaker than in the corresponding thiosulfate complexes. The complex formation constants for the thiosulfonate complexes (log K f = 0.3-0.7) were found to be two orders of magnitude lower than compared to the thiosulfate analogues. This correlates well with a lower strength of intramolecular hydrogen bonding. 相似文献
17.
Summary Cobalt(II), nickel(II) and copper(II) complexes of 2-thiouracil and its arylazo derivatives were prepared. The elemental analysis suggest a range of 11, 21 and 13 stoichiometries. Electronic spectra and magnetic susceptibility measurements were used to infer the structures and the i.r. spectra of the ligands and their complexes to identify the type of bonding. 相似文献
18.
EPR studies have been carried out on a series of copper(IIcomplexes with the general formula CuL(NCS)xY2-x[L = N,N,N',N″,N″-pentamethyldiethylenetriamine (Me5den); x = 1 or 2; and Y = ClO4, NO3 or B?4], dissolved in different solvents. These studies have revealed that the symmetry around copper(II) in [Cu(Me5den)(NCS)2] and [Cu(Me5,den)-NCS]NO3 is not trigonal-bipyramidal as predicted by IR, conductivity and optical data. The 4s contribution to the ground state is found to influence the isotropic contact term and bond parameters. The hyperfine line-widths observed for the copper(II) ion in solutions of these complexes dissolved in pyridine at room temperature are explained using the theory of Wilson and Kivelson. The isotropic spin—rotational relaxation contribution to the residual line-width is found to be smaller for all the complexes when they are dissolved in pyridine. 相似文献
19.
V. I. Murav’ev 《Russian Journal of Coordination Chemistry》2010,36(6):442-451
Experimental EPR data for copper(II) complexes with liquid-crystal poly(propylenimine) den-drimers were analyzed. The influence
of the pseudotetrahedral distortion of the nearest environment of the copper ion on the parameters of the EPR spectra was
considered. The covalent bond parameters were calculated from the EPR data. The dependence of the delocalization of the unpaired
electron of the copper ion on the pseudotetrahedral distortion of its coordination unit was determined. The behavior of the
Zeeman coupling parameters was discussed. Various contributions to the components of the hyperfine coupling (HFC) tensor were
calculated. The causes of the changes in the HFC parameters in the distorted complexes were dis cussed. 相似文献
20.
The preparation and spectral properties are reported for a series of ten mixed-ligand copper(II) complexes of the form [Cu(A)(B)n](X), where A is acetylacetonate anion, B represents a mono- or bidentate ligand such as morpholine, piperidine, isonicotinic acid hydrazide, 2,2′-bipyridine, 1,10-phenanthroline and X is variously NO?3 or ClO?4 anion and n = 1 or 2. The coordination of the anions and ligands has been demonstrated by infrared and electronic spectral methods. Electron spin resonance spectral data show the square-pyramidal five-coordinated arrangement around copper(II) in these complexes. Parameters such as g6, g⊥, A6, A⊥, 〈g〉 and 〈A〉 calculated from electron spin resonance data in solid and solution state at room temperature as well as frozen solution indicate the presence of the unpaired electron in the dx2?y2 or dz2 orbital. These results are in good agreement with electronic and photoacoustic spectral studies. 相似文献