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1.
S. V. Kochnev E. V. Peresypkina A. V. Virovets T. G. Cherkasova 《Russian Journal of Inorganic Chemistry》2012,57(8):1067-1072
The possibility of ?-caprolactam (CPL) to coordinate to manganese(II), cobalt(II), and nickel(II) rhodanides has been investigated. New complexes trans-[M(CPL)4(NCS)2], where M = Mn (I), Co (II), and Ni (III), have been synthesized. The complexes have been studied by chemical analysis and IR spectroscopy. According to X-ray diffraction, complexes are isostructural to each other and crystallize in monoclinic space group P21/c, Z = 2. For I: a = 6.9457(2) ?, b = 17.7751(6) 0A, c = 12.8999(4) 0A, ?? = 104.2670(10)°, V = 1543.51(8) ?3, ??calc = 1.342 g/cm3, R 1 = 0.0426. For II: a = 6.8925(2) ?, b = 17.8189(8) ?, c = 12.7278(6) ?, ?? = 104.421(2)°, V = 1513.93(11) ?3, ??calc = 1.377 g/cm3, R 1 = 0.0280. For III: a = 6.7804(2) ?, b = 18.4631(4) ?, c = 12.4841(3) ?, ?? = 105.2950(10)°, V = 1507.49(7) ?3, ??calc = 1.382 g/cm3, R 1 = 0.0273. Structures I?CIII are molecular; the metal atom in each of them coordinates four CPL molecules and two NCS groups via oxygen and nitrogen atoms, respectively. 相似文献
2.
Sevagapandian Sankarapandian Rajagopal Gurusamy Nehru Kasi Athappan Periakaruppan 《Transition Metal Chemistry》2000,25(4):388-393
Complexes of the general formula, ML2 [M = CuII, NiII, CoII and OVIV; L = 1,2,3,5,6,7,8,8a-octahydro-3-hydroxyimino-N-(4-X-phenyl)-l-phenyl-5-(phenylmethylene)-2-naphthalenecarboxamide (X =
H, Me, OMe, Cl)] have been prepared and characterized on the basis of elemental analysis, magnetic moments and i.r., e.p.r.
and electronic spectra. These metal complexes contain the N4 chromophore with the ligand coordinating through nitrogens of the azomethine and deprotonated anilide functions. C.v. measurements
indicate that the copper(II) complexes are quasi-reversible in acetonitrile solution. Square planar and square pyramidal structures
are assigned respectively to the copper(II) and oxovanadium(IV) complexes, whereas tetrahedral geometry is assigned to the
nickel(II) and cobalt(II) complexes. Deprotonated anilide nitrogen is involved in coordination and the presence of an electron-donating
group para to the anilide function decreases the ΔE values of the d–d transitions while the value is found to increase when electron-withdrawing groups are substituted. Line
spacing in the e.p.r. spectra of the copper(II) and oxovanadium(IV) complexes increases when methyl group is para to the anilide group, and decreases when this group is replaced by methoxy or chloro. The ν(C–N) of the anilide group and
the ν(C-N) of the azomethine function of the oxime metal complexes are metal-sensitive and the blue shift for the above stretching
frequencies follows the order: copper(II) > oxovanadium(IV) > nickel(II) ≈ cobalt(II).
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
3.
Danuta Czakis-Sulikowska Joanna Radwańska-Doczekalska Bożena Kuźnik Anna Malinowska 《Transition Metal Chemistry》1995,20(2):203-207
Summary Complexes of empirical formulae [ML2Cl2(OH2)2], [CoL2Br2(OH2)2]L·4H2O, [NiL2Br2(OH2)2]L2·2H2O, [ML2(OH2)4]L2(NO3)2 and [ML4(OH2)2](ClO4)2·2H2O (M = CoII, NiII, L = 2,4-bipyridyl) were synthesized and characterized by elemental and spectral analyses. The thermal decomposition of the complexes was also investigated.Author to whom all correspondence should be directed. 相似文献
4.
4,4-Bis(chloroacetyl)diphenylmethane has been prepared from ClCH2COCl and Ph2CH2. 4,4-Methylenebis(phenylglyoxylohydroximoyl chloride has also been obtained. Four new substituted 4,4-bis(alkylaminoisonitrosoacetyl)diphenylmethanes (ligands) have been prepared from 4,4-methylenebis(phenylglyoxylohydroximoyl chloride) and the corresponding amines. The NiII, CuII and CoII complexes of these ligands were prepared and their structures were identified using AAS, i.r., 1H-n.m.r. spectral data, elemental analyses and magnetic susceptibility measurements. 相似文献
5.
Keuleers Robby Desseyn Herman O. Papaefstathiou Giannis S. Drakopoulou Labrini Perlepes Spyros P. Raptopoulou Catherine P. Terzis Aris 《Transition Metal Chemistry》2003,28(5):548-557
A project related to the crystal engineering of hydrogen-bonded coordination complexes has been initiatied and some of our first results are presented here. The compounds [Mn(DMU)6](ClO4)2
(1), [Ni(DMU)6](ClO4)2
(2), [Cu(OClO3)2(DMU)4] (3) and [Zn(DMU)6](ClO4)2
(4) have all been prepared from the reaction of N,N-dimethylurea (DMU) and the appropriate hydrated metal perchlorate salt. Crystal structure determinations of the four compounds demonstrate the existence of [M(DMU)6]2+ cations and ClO4
– counterions in (1), (2) and (4), whereas in (3) monodentate coordination of the perchlorate groups leads to molecules. The [M(DMU)6]2+ cations and ClO4
– anions self-assemble to form a hydrogen-bonded one-dimensional (1D) architecture in (1) and different 2D hydrogen-bonded networks in (2) and (4). The hydrogen bonding functionalities on the molecules of (3) create a 2D structure. The complexes were also characterised by room-temperature effective magnetic moments and i.r. studies. The data are discussed in terms of the nature of bonding and the known structures. 相似文献
6.
Singh Nand K. Kushawaha Surendra K. Thomas Michael J. K. 《Transition Metal Chemistry》2000,25(6):648-658
A new potential tetradentate ligand, N-nicotinoyl-N-2-furanthiocarbohydrazide (H2Nfth), and its complexes with VOIV, MnII, FeII,III, CoII, NiII, CuII and ZnII have been prepared and characterized by elemental analyses, magnetic susceptibility measurements, u.v.–vis, i.r., n.m.r., ES+ and FAB mass spectral data. The room temperature e.s.r spectra of the VOIV and FeIII complexes yield g values, characteristic of octahedral complexes. The Mössbauer spectra of [Fe(HNfth)2] and [Fe2(Nfth)3] at room temperature and at 78 K suggest the presence of high-spin iron(II) and iron(III), respectively. The complexes are electrically insulating at room temperature, however, their conductivities increase as the temperature increases from 333–383 K, with a band gap of 0.46–0.77 eV, indicating their semiconducting behaviour. H2Nfth and its soluble complexes have been screened against several bacteria and fungi. 相似文献
7.
Summary New potential tetradentate ligands, N-benzoyl-N-thiobenzohydrazide (H2BTBH) and N-salicyl-N-thiobenzohydrazide (H2SBTH) have been prepared and characterized. Their complexes with CoII, NiII and ZnII have been prepared and characterized on the basis of elemental analyses, magnetic susceptibility measurements, and u.v.-vis., i.r. and 1H-n.m.r. spectral studies. The bonding and stereochemistries of the complexes are discussed. H2BTBH, H2SBTH and the complexes have been screened towards a number of bacteria. 相似文献
8.
Singh Nand K. Kushawaha Surendra K. Ayyagari Archana 《Transition Metal Chemistry》2001,26(1-2):140-146
A new ligand, N-phenyl-N
-2-furanthiocarbohydrazide (HPhfth), and its complexes with VOIV, MnIII, FeIII, CoII, NiII, CuII and ZnII have been prepared and characterized by elemental analyses, magnetic susceptibility measurements, i.r., n.m.r., u.v.–vis., mass and FAB mass spectral data. The room temperature e.s.r. spectra of the VOIV, FeIII and CuII complexes yield <g> values characteristic of square pyramidal VOIV, octahedral FeIII and square planar CuII, respectively. The NiII and CuII complexes semiconduct, but the ZnII complex is an insulator at room temperature. However, the conductivity increases as the temperature increases from 303–383 K, with a band gap of 0.21–1.01 eV. HPhfth and its soluble complexes have been screened against several bacteria and fungi. 相似文献
9.
Keypour Hassan Dehdari Masoud Salehzadeh Sadegh Wainwright Kevin P. 《Transition Metal Chemistry》2003,28(4):425-429
The tripodal tetraamine ligand N{(CH2)3NH2}{(CH2)2NH2}2 (pee), has been investigated as an asymmetrical tetraamine chelating agent for CoII, NiII, CuII, ZnII and CdII. The protonation constants for this ligand and the formation constants for its complexes have been determined potentiometrically in 0.1 M KCl at 25 °C. The successive protonation constants (log K
n
) are: 10.22, 9.51, 8.78 and 1.60 (n = 1–4). One complex with formula M(pee)2+ (M = Co, Ni, Cu, Zn and Cd) is common to all five metal ions and the formation constant (log
ML) is: 12.15, 14.17, 16.55, 13.35 or 9.74, respectively. In addition to the simple complexes, CoII, CuII and ZnII also give hydroxo complexes, and CuII and NiII give complexes with monoprotonated pee. [Zn(pee)](ClO4)2 and [Cd(pee)Cl](ClO4) complexes were isolated and are believed to have tetrahedral and trigonal-bipyramidal structures, respectively. 相似文献
10.
J. Radwańska-Doczekalska D. Czakis-Sulikowska M. Markiewicz 《Journal of Thermal Analysis and Calorimetry》1997,48(4):865-875
2,4-Bipyridyl (2,4-bipy orL) complexes with cobalt(II), nickel(II) and copper(II) of the formulae M(2,4-bipy)2(CH3COO)2·2H2O (M(II) = Co, Ni, Cu), Co(2,4-bipy)2SO4·3H2O or Ni(2,4-bipy)2SO4·4H2O have been prepared and their IR and electronic (VIS) spectra are discussed. The thermal behaviour of the obtained compounds has also been studied. The intermediate products of decomposition at different temperatures have been characterized by chemical analysis and X-ray diffraction.We thank dr. A. Malinowska for performing VIS spectra. This work was supported by the KBN project No. PB 0636/P3/93/04. 相似文献
11.
《Journal of Inorganic and Nuclear Chemistry》1976,28(7):1263-1267
Palladium(II)chloride affords simple coordination compounds withC5H5N+N-COMe and C5H5N+N-COEt but the derivative of N-(1-pyridinio)proprionamidate decomposes with evolution of HCl at the melting point.Both C5H5N+N-SO2Ph (L) and C5H5N+N-COPh (L′) give coordination compounds with cobalt(II) and copper(II). The series [ML4] (CLO4)2 (M = Co, Cu, Zn) is isomorphous and evidence is available from spectroscopic measurements (UV and ESR) to support the tetrahedral environment about the metal ions, although in the copper compound some distortion is present. [Co2L4X2]X2 (X = Cl, Br) and [Cu2L4Cl2]Cl2 are isomorphous, dimeric and have pseudo tetrahedral stereochemistry; [CuL2Br2] and [ZnL2Cl2 are isomorphous and tetrahedral. The spectroscopic data are discussed in such depth as the data derived from polycrystalline specimens permit. [CoL4′] (ClO4)2 contains O-bonded C5H5N+N-COPh and exists in at least two polymorphic forms one of which is magnetically abnormal [Co2-L4′Cl2]Cl2 is dimeric and contains both O- and N-bonded ylide, [Co2L2X4] are also dimers but contain only the O-bonded ylide. [CuL3·5′] (ClO4)2, which contains copper(II) in a distorted 6-coordinate environment, is contrasted with the well defined [CuL4] (ClO4)2 (above). N-(1-pyridinio)benzamidate undergoes NN bond rupture to give pyridine and phenylisocyanate at 190–200°C, but this decomposition temperature may be lowered by approx. 100°C in the presence of anhydrous copper(II) chloride which is shown to give an N-bonded complex with the ylide. 相似文献
12.
Summary Complexes of the type M(HXCA)2·nH2O (M = CuII, NiII or CoII; HXCA = 2-hydroxy--4-X-cinnamoyl acetophenone; X = H, Cl, Me or OMe; n = 0 or 2) have been synthesized, and characterized by elemental analysis, i.r., electronic, 1H-n.m.r. and e.s.r. spectroscopies, and magnetic susceptibility measurements. The spectral data indicate that the ligand coordinates through both carbonyl and enolic oxygens. The anhydrous CuII complexes are monomeric and square planar, while the NiII and CoII analogues possess polymeric high-spin octahedral structures. The diaquates and dipyridinates of CoII and NiII have monomeric high-spin octahedral geometries. 相似文献
13.
《Journal of Coordination Chemistry》2012,65(24):4358-4366
New mixed-ligand complexes, [M2(BAMP)(bipy)2][MCl4]2, M=Co+2(1), Cu+2(2), [M2(TAMEN)(bipy)2][MCl4]2, M=Fe+2(3), Co2+(4), and [Fe2(TAMEN)(bipy)2][FeCl6]2 (5), where BAMP and TAMEN stand for the Mannich bases N,N′-bis(antipyryl-4-methylene)-piperazine and N,N′-tetra(antipyryl-4-methylene)-1,2-ethane-diamine, respectively, have been obtained and characterized by elemental analyses, conductometric and magnetic susceptibility measurements at room temperature, mass spectrometry, UV-Vis, infrared, and mass spectroscopy, and 1H NMR spectra for the ligands. 相似文献
14.
Makoto Kurihara Kazuhiko Ozutsumi Takuji Kawashima 《Journal of solution chemistry》1995,24(7):719-734
Complexation of the zinc(II) ion with 2,2-bipyridine (bpy) and 1,10-phenanthroline (phen) has been calorimetrically studied in 4-methylpyridine (4Me-py) containing 0.1 mol dm–3 (n-C4H9)4NClO4 as a constant ionic medium at 25°C. The formation of [ZnL]2+, [ZnL2]2+, and [ZnL3]2+ (L=bpy, phen), and their formation constants, reaction enthalpies and entropies were determined. Our EXAFS (extended X-ray absorption fine structure) measurements showed that the solvation structure of the manganese(II), cobalt(II), and nickel(II) ions is six-coordinate octahedral in 4Me-py and 3-methylpyridine (3Me-py), while that of the zinc(II) ion is four-coordinate tetrahedral in 4Me-py. Since [ZnL3]2+ is expected to have an octahedral structure, a tetrahedral-to-octahedral structural change should take place at a certain step of complexation. The thermodynamic parameters, especially reaction entropies, indicate that the structural change occurs at the formation of [Zn(bpy)2]2+ and [Zn(phen)]2+. 相似文献
15.
《Journal of Inorganic and Nuclear Chemistry》1976,28(3):443-445
The complexes of N,N′-didodecildithiooxamide (L): CoL3(ClO4)3, NiL2X2 (X = Cl, Br, I, ClO4, HSO4), CuL2X2 (X = ClO4, HSO4) and CuLX2 (X = Cl, Br) were prepared. The cobalt and nickel complexes are diamagnetic, with octahedral and planar coordination respectively. The copper complexes are paramagnetic with normal magnetic moments corresponding to a tetragonal coordination. The i.r. and far i.r. spectra are discussed. 相似文献
16.
Shefali Pal Sailendra Nath Poddar Gurucharan Mukherjee 《Transition Metal Chemistry》1994,19(4):449-452
Summary Nickel(II) and palladium(II) complexes of the 1,3-di(o-aminophenylthio) propane (H2L1) and 1,2-di(o-aminophenylthio)xylene (H2L2) ligands have been prepared and characterized. The hydrobromide salt of H2L1 gave a 12 ligand-metal complex of PdII, whereas free H2L1 formed the usual 1:1 species. The reaction of Na2PdCl4 with H2L2 resulted in S,S-dealkylation of the ligand and formation of a mononuclear complex of the corresponding thiol, i.e. 2-aminobenzenethiol. NiCl2, NiBr2 and Ni(ClO4)2 did not react directly with H2L2. NiII is a fairly hard ion and therefore does not coordinate to the soft thioether moiety in H2L2 in the absence of soft anions which symbiotically motivate NiII to act as a soft acceptor. It thus does not react with H2L2 in the presence of hard ions such as Cl–, Br- and ClO
4
–
, but, the in situ reaction of the constituents produced the tetrahedral NiII complex, contrary to earlier reports of similar types of octahedral species. 相似文献
17.
《Inorganic and Nuclear Chemistry Letters》1978,14(2-3):109-111
18.
Summary The formation constants of mixed ligand complexes of MII (M = Ni, Zn or Cd) with -alaninehydroxamic acid (-Alaha) as primary ligand (A) and ethylenediamine (en) as secondary ligand (B) have been determined potentiometrically [298 K, = 0.2 (KCl)]. The formation constants for binary systems of -alaninehydroxamic acid and ethylenediamine were determined under identical experimental conditions. The pH-titration data were analysed using the SUPERQUAD computer program. The relative stability of each ternary complex was compared to that of its corresponding binary complex in terms of log X values. 相似文献
19.
20.
《Journal of Coordination Chemistry》2012,65(24):4164-4179
AbstractUrease catalyzes the decomposition of urea into ammonia, which has harmful effects on both human health and fertile soil. Aiming at exploring novel urease inhibitors, a series of hydrazone compounds and their CoIII, CuII, NiII, and ZnII complexes were prepared from 4-methoxy-N'-(pyridin-2-ylmethylene)benzohydrazide (HL). They are [CoClL(NCS)] (1), [CoL2]·Cl·CH3OH·H2O (2), [CuL(NCNCN)]n·nCH3OH (3), [NiL(HL)]·ClO4·CH3OH (4) and [ZnClL(OH2)]·CH3OH (5). The compounds were characterized by physico-chemical methods. Structures of the complexes were further confirmed by single crystal X-ray diffraction. The metal ions in 1, 3, and 5 display square pyramidal coordination and 2 and 4 display octahedral coordination. The inhibitory effects of the compounds on Jack bean urease were evaluated. The results showed that 3 has effective urease inhibitory activity, with IC50 value of (7.3?±?1.0) μmol L?1. 相似文献