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1.
H. Langfelderová 《Journal of Thermal Analysis and Calorimetry》1994,41(4):955-970
Dehydration steps of aquacopper(II) complexes with homogeneous and heterogeneous coordination sphere are investigated from the view point of structural changes taking place under their heating to the decomposition temperature and during the dehydration. The role of loosening of intra-and intermolecular hydrogen bonds in the decomposition reaction for the structure changes of the remainder, the structural presumptions of the reactants for lower hydrates formation are discussed. Activation parameters of dehydration were found to be the lower, the smaller are the structure differences between the reactants and products. They do not reflect the bond length central atomvolatile ligand, much more the overall structure differences between the starting and resulting compounds. From all data on crystal and molecular structures of dehydrated compounds is the reaction pathway best indicated by anisotropic temperature parameters of donor atoms corrected for the thermal movement of the central atom: the higher these values in the bond direction are, the lower the values of activation energies of dehydration are. 相似文献
2.
Juan M. Fernández-G 《Journal of Molecular Structure》2002,612(1):69-79
Three copper(II) complexes derived from bulky ortho-hydroxy Schiff base ligands, (1)-(3), were synthesized and characterized by chemical analysis, UV-Vis, IR, μeff and mass spectrometry. The solid state structures of compounds (1)-(3) were determined. The solid state X-ray diffraction studies of these compounds show that the geometry is intermediate between square planar and tetrahedral. Moreover, EPR studies in DMF solution at 77 K suggest that the geometry of these complexes in solution is different from that observed in the solid state by X-ray crystallography. Furthermore, cyclic voltammetry studies performed for (1)-(3), indicate a dependence of the cathodic potentials upon conformational and electronic effects. 相似文献
3.
《Journal of Coordination Chemistry》2012,65(13):1087-1098
Copper(II) complexes generalized as Cu2N6 and CuN6 were prepared by using hexadentate ligands, and their spectral and electrochemical behavior was analysed. X-ray analysis of binuclear [Cu2L2Cl2]2+ reveals that one copper is trigonal bipyramidal and the other is square pyramidal. Electronic spectra used to determine their stereochemistry in solution indicate that dinuclear Cu2N6 has two visible bands that correspond to a typical five-coordinate copper(II) environment, whereas only one broad band was obtained for mononuclear CuN6. When NaN3 was added to the dinuclear compounds, their UV–visible spectra underwent significant changes and an isosbestic point at 650?nm was observed; however, no such feature was encountered for the mononuclear compounds. 相似文献
4.
Mohamed Shaker S. Adam 《应用有机金属化学》2018,32(4)
Three novel paramagnetic metal complexes (MH2ID) of Ni2+, Cu2+ and VO2+ ions with 3‐hydroxy‐3,3’‐biindoline‐2,2’‐dione (dihydroindolone, H4ID) were synthesized and characterized by different spectroscopic methods. The ligand (H4ID) was synthesized via homocoupling reaction of isatin in presence of phenylalanine in methanol. Complexation of low valent Ni2+, Cu2+ ions and high valent VO2+ ions with H4ID carried out in 1: 2 molar ratios. A comparison in the catalytic potential of paramagnetic complexes of low and high valent metal ion was explored in the oxidation processes of cis‐cyclooctene, benzyl alcohol and thiophene by an aqueous H2O2, as a green terminal oxidant, in the presence and absence of acetonitrile, as an organic solvent, at 85 °C. NiH2ID, CuH2ID and VOH2ID show good catalytic activity, i.e. good chemo‐ and regioselectivity. VOH2ID has the highest catalytic potential compared to both Ni2+‐ and Cu2+‐species in the same homogenous aerobic atmosphere. Catalytic oxidation of other alkenes and alcohols was also studied using NiH2ID, CuH2ID or VOH2ID as a pre‐catalyst by an aqueous H2O2. A mechanistic pathway for those oxidation processes was proposed. 相似文献
5.
The reagent 3,8,13,18-tetramethyl-21H,23H-porphine-2,7,12,17-tetrapropionic acid or coproporphyrin-I (CPI) was used for the spectrophotometric determination of copper(II) and cobalt(II) in the presence of pyridine and imidazole catalysts. Optimum conditions were investigated and the methods were applied to the determination of parts per billion levels of copper(II) and cobalt(II). The Sandell sensitivities of the recommended procedures were 0.568 μm cm−2 and 0.464 μg cm−2 (for A = 0.001) for copper and cobalt, respectively. The relative standard deviations were 2.0% for copper and 1.0% for cobalt. The kinetics of the reaction of CPI with copper(II) and cobalt(II) in the presence of the catalysts and the influence of the temperature were studied, and their kinetic constants determined.The influence of light on the photodecomposition of CPI was also studied. 相似文献
6.
O. V. Kravchenko L. V. Tsymbal Ya. D. Lampeka 《Theoretical and Experimental Chemistry》2007,43(2):131-137
A phase transfer isocationic substitution of lattice constituent macrocyclic complexes by copper(II) aqua complexes occurs
upon the interaction of crystalline mono-and bis(macrocyclic) copper carboxylate complexes with acetonitrile solutions of
copper(II) ammine complex. On the other hand, these materials do not react with cupric bis(ethylenediamine).
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Translated from Teoreticheskaya i éksperimental’naya Khimiya, Vol. 43, No. 2, pp. 124–129, March–April, 2007. 相似文献
7.
Thermal and/or photochemical conversion of a series of copper(II) complexes containing mixed dithiocarbamato–alcohol ligands, CuII(Et2dtc)+ . . . Y− (Y=ClO4−, NO3−), into CuII(Et2dtc)Cl in chloroalkane/alcohol solutions, where chloroalkane=CCl4, CHCl3 or CH2Cl2 and alcohol=MeOH, EtOH or i-BuOH, proceeds in chloroalkanes. Both reactions follow a similar pathway which is more effective the stronger the acceptor properties of chloroalkanes and the weaker the coordinating abilities of alcohols are. A detailed reaction mechanism is proposed which well fits the experimental results obtained by EPR and UV–VIS spectra and quantum yields. 相似文献
8.
The nitrosation of monophenylamido substituted quadridentate Schiff base complexes of copper(II) are observed to adopt N-bonded
isonitroso coordination whereas the phenylisocyanation of the corresponding mononitrosated quadridentate complexes are found
to prefer O-bonded isonitroso coordination. 相似文献
9.
P. N. Boltovets L. V. Tsymbal B. A. Snopok Ya. D. Lampeka 《Theoretical and Experimental Chemistry》2008,44(4):260-265
The blocking effect of nickel(II) azamacrocyclic complexes in the biospecific reaction between soybean trypsin inhibitor and
trypsin and the absence of such a reaction for related copper(II) complexes were established. The efficiency for inhibition
of the formation of the protein adduct was found to depend on the substituents in the macrocyclic ligands. In particular,
electron-donor oxygen-containing groups lead not only to efficient blocking of this reaction but also possibly to a considerable
change in the conformation of the soybean trypsin inhibitor molecule.
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Translated from Teoreticheskaya i éksperimental’naya Khimiya, Vol. 44, No. 4, pp. 248–253, July–August, 2008. 相似文献
10.
A. O. Legendre J. R. A. Correa G. Bannach A. E. Mauro M. Ionashiro 《Journal of Thermal Analysis and Calorimetry》2007,87(3):779-782
Synthesis, characterization
and thermal behavior of four compounds that have the general formula [Cu{Pd(CN)4}(L)x]n, in which en=1,2-diaminoethane and pn=1,3-diaminopropane (L=en, x=1 (I); L=pn, x=1 (II); L=en, x=2 (III); L=pn, x=2 (IV)) were described in this work. The complexes were
studied by elemental analysis, infrared spectroscopy (IR), differential thermal
analysis (DTA) and thermogravimetry (TG) and the residues of the thermal decomposition
were characterized by X-ray powder diffraction and found as a mixture of CuO
and PdO. The stoichiometry of the compounds was established via thermogravimetric
and elemental analyses and their structures were proposed as coordination
polymers based on their infrared spectra. The following thermal stability
sequence was found: IV<I=II<III. 相似文献
11.
天然超氧化物歧化酶(SOD)可以专一地清除生物体内的超氧阴离子自由基O-2,从而可预防活性氧中毒、抗衰老、减少癌症等疾病的发生。但是SOD分子量大、不易透过细胞膜、在生物体内半衰期短并有异体抗原性、价格昂贵,临床使用受到很大限制。2 (2′,5′ 二氯 苯氨基) 苯乙酸(双氯芬酸)、2 (3′ 氯 苯氨基) 苯甲酸(氯灭酸)是二苯胺类衍生物,临床用作消炎镇痛药,有清除O-2的能力[1],而且活性稳定。本文制备的它们的Cu(Ⅱ)配合物,可作为SOD模拟物[2],且活性较高。1 实验部分1 1 主要试剂和仪器双氯芬酸钠(纯度99 5%河南汤阴永奈化工有限… 相似文献
12.
Shyamapada Shit Joy Chakraborty Brajagopal Samanta Alexandra M. Z. Slawin Volker Gramlich Samiran Mitra 《Structural chemistry》2009,20(4):633-642
Three new coordination complexes, 2{[Co(L1)2]ClO4} · 0.5CH3OH (1), [Mn(L2)2] (2), and [Cu(HL2)(L2)]ClO4 · 2H2O (3) have been synthesized from two tridentate N,N,O-donor hydrazone ligands HL1, 2-acetylpyridine-salicyloylhydrazone, and HL2, 2-benzoylpyridine-salicyloylhydrazone, respectively and thoroughly characterized by elemental analysis, FT-IR, UV–Vis, electrochemical,
and room temperature magnetic susceptibility measurements. Structures of the complexes have been unequivocally established
by single crystal X-ray diffraction technique. Structural analysis reveals that 1 consists of two chemically similar but crystallographically independent cationic [Co(L1)2]+ units and 2 consists of a neutral [Mn(L2)2] molecule while 3 consists of a cationic [Cu(HL2)(L2)]+ unit. Metal ions display distorted octahedral geometry in 1 and 2 while in 3 it shows a distorted square pyramidal geometry. Ligand conformations around the metal ions are stabilized by the presence
of intra-ligand hydrogen bonding in all the complexes. Structure of 3 reveals that a perchlorate ion linked to the complex by hydrogen bonding via a water molecule. 相似文献
13.
《Journal of Coordination Chemistry》2012,65(12):2132-2145
Nine copper(II) complexes of o-hydroxy Schiff bases derived from benzylamine, p-methoxybenzylamine, p-nitrobenzylamine, salicylaldehyde, 2-hydroxy-1-naphthalenecarboxaldehyde, and 3-hydroxy-2-naphthalenecarboxaldehyde were synthesized and characterized by chemical analysis, mass spectrometry, UV-Vis, infrared and electron paramagnetic resonance (EPR) spectroscopy, and seven X-ray crystal structures. The X-ray diffraction studies of these compounds showed that the geometry around the copper is square planar in six of the seven complexes. EPR studies of all the complexes in DMF solution at 77 K suggest that their geometries in solution are square planar as well. 相似文献
14.
Urmila Pal Chaudhuri Lei Yang Laura R. Whiteaker Arunendu Mondal Matthew R. Fultz Douglas R. Powell Robert P. Houser 《Polyhedron》2007,26(18):5420-5431
Mononuclear copper(II) complexes of a family of pyridylmethylamide ligands HL, HLMe, HLPh, HLMe3 and HLPh3, [HL = N-(2-pyridylmethyl)acetamide; HLMe = N-(2-pyridylmethyl)propionamide; HLPh = 2-phenyl-N-(2-pyridylmethyl)acetamide; HLMe3 = 2,2-dimethyl-N-(2-pyridylmethyl)propionamide; HLPh3 = 2,2,2-triphenyl-N-(2-pyridylmethyl)acetamide], were synthesized and characterized. The reaction of copper(II) salts with the pyridylmethylamide ligands yields complexes [Cu(HL)2(OTf)2] (1), [Cu(HLMe)2](ClO4)2 (2), [Cu(HL)2Cl]2[CuCl4] (3), [Cu(HLMe3)2(THF)](OTf)2 (4), [Cu(HLMe3)2(H2O)](ClO4)2 (5a and 5b), [Cu(HLPh3)2(H2O)](ClO4)2 (6), [Cu(HL)(2,2′-bipy)(H2O)](ClO4)2 (7), and [Cu(HLPh)(2,2′-bipy)(H2O)](ClO4)2 (8). All complexes were fully characterized, and the X-ray structures vary from four-coordinate square-planar, to five-coordinate square-pyramidal or trigonal-bipyramidal. The neutral ligands coordinate via the pyridyl N atom and carbonyl O atom in a bidentate fashion. The spectroscopic properties are typical of mononuclear copper(II) species with similar ligand sets, and are consistent their X-ray structures. 相似文献
15.
Saugata KonarAtanu Jana Kinsuk DasSangita Ray Sudipta ChatterjeeJames A. Golen Arnold L. RheingoldSusanta Kumar Kar 《Polyhedron》2011,30(17):2801-2808
Varying coordination modes of the Schiff base ligand H2L [5-methyl-1-H-pyrazole-3-carboxylic acid (1-pyridin-2-yl-ethylidene)-hydrazide] towards different metal centers are reported with the syntheses and characterization of four mononuclear Mn(II), Co(II), Cd(II) and Zn(II) complexes, [Mn(H2L)(H2O)2](ClO4)2(MeOH) (1), [Co(H2L)(NCS)2] (2), [Cd(H2L)(H2O)2](ClO4)2 (3) and [Zn(H2L)(H2O)2](ClO4)2 (4), and a binuclear Cu(II) complex, [Cu2(L)2](ClO4)2 (5). In the complexes 1-4 the neutral ligand serves as a 3N,2O donor where the pyridine ring N, two azomethine N and two carbohydrazine oxygen atoms are coordinatively active, leaving the pyrazole-N atoms inactive. In the case of complex 5, each ligand molecule behaves as a 4N,O donor utilizing the pyridine N, one azomethine N, the nitrogen atom proximal to the azomethine of the remaining pendant arm and one pyrazole-N atom to one metal center and the carbohydrazide oxygen atom to the second metal center. The complexes 1-4 are pentagonal bipyramidal in geometry. In each case, the ligand molecule spans the equatorial plane while the apical positions are occupied by water molecules in 1, 3 and 4 and two N bonded thiocyanate ions in 2. In complex 5, the two Cu(II) centers have almost square pyramidal geometry (τ = 0.05 for Cu1 and 0.013 for Cu2). Four N atoms from a ligand molecule form the basal plane and the carbohydrazide oxygen atom of a second ligand molecule sits in the apex of the square pyramid. All the complexes have been X-ray crystallographically characterized. The Zn(II) and Cd(II) complexes show considerable fluorescence emission while the remaining complexes and the ligand molecule are fluorescent silent. 相似文献
16.
Hanna-Mari Smuts 《Journal of Coordination Chemistry》2017,70(3):497-511
We have synthesized two ditopic ligands for selective extraction of copper(II) nitrate. We also synthesized one cation-only binding analog for comparison. All three ligands were characterized by conventional techniques. Competitive two-phase metal ion solvent extraction experiments were performed at 25 °C over a period of 24 h. These ligands showed significant selectivity for Cu(II) ions, having the ditopic ligands extract 81 and 73% of the Cu(II) ions in a solution of different metal ions {Ni(II), Co(II), Cu(II), Zn(II), Cd(II), Pb(II)} at pH 5.09. Competitive transport experiments (water/chloroform/water) were undertaken employing each ligand separately as the ionophore in the membrane (chloroform) phase. No metal ion transport was observed, but a large concentration of Cu(II) was present in the membrane phase. Competitive anion extraction and transport were carried out with the ditopic ligands, yielding selective extraction and transport of nitrate. Furthermore, a pH isotherm of the best ditopic ligand (H2L2) with Cu(II) was determined from pH 1.0 to 6.0, producing a pH½ value of approximately 2.6. Finally, crystal structures of the ditopic ligands complexed with Cu(II) were determined and refined. The coordination geometry around the metal centers are distorted square planar and the Cu(II)-donor bond lengths fall within the normal range. 相似文献
17.
The liquid structures of binary acetonitrile (AN)–dimethyl sulphoxide (DMSO) and N,N-dimethylformamide (DMF)–DMSO mixtures were investigated by the X-ray scattering method. Comparison of the X-ray scattering data of AN–DMSO liquid mixtures with those of neat AN and DMSO revealed that the intermolecular AN–DMSO interactions are practically not detected; that is, the X-ray scattering data of the liquid mixtures are well reproduced by summing up those of neat AN and DMSO weighted by their mole fractions. The same applies for DMF–DMSO mixtures. Thus, each component solvent molecule independently forms self-assembled clusters in the liquid mixtures, the structures of which are the same as those in the neat liquids. The clusters are mixed to form macroscopically homogeneous liquid mixtures. The thermodynamic quantities on mixing process for the AN–DMSO, DMF–DMSO and AN–DMF systems in the literature are well elucidated on the basis of the microscopic structure of the liquid mixtures. 相似文献
18.
A. M. Donia 《Journal of Thermal Analysis and Calorimetry》1993,39(3):323-332
A number of copper(II) complexes of some aromatic diamines have been prepared and characterized. The thermal stabilities of the complexes were studied and discussed in terms of covalent bond character, chelate ring size and angle strain. On the other hand, the effective role of the anions on the decomposition pathways was also considered. Moreover, the nature of interaction of the solvent of crystallization has also been investigated.
Zusammenfassung Es wurde eine Anzahl von Kupfer(II)-komplexen einiger aromatischer Diamine hergestellt und beschrieben. Die thermische Stabilität der Komplexe wurde als Funktion des kovalenten Bindungscharakters, der Chelatringgröße und der Winkelspannung untersucht und diskutiert. Andererseits wurde auch der Einfluß der Anionen auf den Zersetzungsweg in Erwägung gezogen. Außerdem wurde auch die Wechselwirkung zwischen Lösungsmittel und Kristallisierung untersucht.相似文献
19.
Dmitrii Pyreu Sergei Gridchin Eugenii Kozlovskii 《Journal of Coordination Chemistry》2016,69(22):3424-3435
Calorimetric, potentiometric, and spectrophotometric studies on mixed ligand complexes of copper(II) iminodiacetate and simple di- and tripeptides (GlyGly, αAlaαAla, αAlaβAla, βAlaβAla, αAlaAsn, GlyGlyGly, AlaGlyGly) have been carried out in aqueous solution at 298.15 K and ionic strength of I = 0.5 (KNO3). The thermodynamic parameters of formation of various mixed complexes have been determined. The probable coordination modes of the complex and peptide molecules in the mixed ligand complexes are discussed. 相似文献
20.
Muhammad Shabbir Paul R. Raithby Lynne H. Thomas Hammad Ismail Faiza Arshad 《Journal of Coordination Chemistry》2017,70(14):2463-2478
Four novel ON donor Schiff bases (E)-3-((4-phenoxyphenylimino)methyl)benzene-1,2-diol (HL1),(E)-3-((4-(4-biphenyloxy)phenyliminomethyl)benzene-1,2-diol (HL2), (E)-3-((4-naphthoxyphenylimino)methyl)benzene-1,2-diol (HL3), (E)-3-((4-(2-naphthoxy)phenylimino)methyl)benzene-1,2-diol (HL4) and their copper(II) complexes bis((E)-3-((4-phenoxyphenylimino)methyl)benzene-1,2-diol) copper(II) (Cu(L1)2) bis((E)-3-((4-(4-biphenyloxy)phenylimino)methyl)benzene-1,2-diol) copper(II) (Cu(L2)2), bis((E)-3-((4-naphthoxyphenylimino)methyl)benzene-1,2-diol) copper(II) (Cu(L3)2), bis((E)-3-((4-(2-naphthoxy)phenylimino)methyl)benzene-1,2-diol) copper(II) (Cu(L4)2) have been synthesized and characterized by spectroscopic (FTIR, NMR, UV–visible) and elemental analysis. The crystal structures of HL1, HL2, HL3, and HL4 have been determined, which reveal intramolecular N-H?O (HL1, HL2, HL3, and HL4) hydrogen bonds in the solid state. Keto-amine and enol-imine tautomerism is exhibited by the Schiff bases in solid and solution states. The Schiff bases and their copper(II) complexes have been screened for their biological activities. In antimicrobial assays (antibacterial and antifungal), HL4 showed promising results against all strains through dual inhibition property while the rest of the compounds showed activity against selective strains. On the other hand, in cytotoxic, DPPH, and inhibition of hydroxyl (OH) free radical-induced DNA damage assays, the results were found significantly correlated with each other, i.e. the ligands HL1 and HL2 showed moderate activity while their complexes Cu(L1)2 and Cu(L2)2 exhibited prominent increase in activity. As the results of these assays are supporting each other, it represents the strong positive correlation and antioxidant nature of investigated compounds. 相似文献