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1.
《Inorganica chimica acta》1988,147(2):221-226
Five new complexes of sterically hindered 1,3- dimethyl-2(3H)-imidazolethione (dmit) with the chlorides of Cd(II), Hg(II), Te(II), Sn(IV) and Sb(V) have been synthesized and characterized. The previously reported Zn(II) adduct was also synthesized and further characterized. These complexes were of the general formula MXn(dmit)m where n = 2 and m = 2 when M = Zn, Cd, Hg and Sn; and n = 2 and m = 4 for Te(II). The only 1:1 adduct observed was SbCl5dmit, and its chemistry is more complex giving rise to unique redox products upon heating in solution. Solid state spectra of these complexes as well as for dmit complexes are reported and discussed with regard to the coordination sensitive NCN asymmetric stretch and the CS stretch observed not only for dmit complexes but for tetramethylthiourea (tmtu) complexes reported in the literature as well. Greatest shifts on coordination are observed with the NCN asymmetric stretch for tmtu causing shifts to higher wave numbers ranging from 55 to 95 cm−1 relative to free tmtu. Shifts are explained on the basis of observed crystal structures of tmtu adducts showing a greater CN double bond character. Dmit adducts show much smaller shifts both to higher and lower wave numbers for this mode relative to free ligand, and the CS stretch shows little change also. Comparison to known crystal structures show little change in the bond distances of the dmit ligand upon coordination. Inductive effects based on correlations of shift magnitude to the Sanderson group electronegativity (SGEN) of the acceptor seem to be unrelated with the exception of a small positive correlation observed for the NCN asymmetric stretch of tmtu.  相似文献   

2.
Iron(II) complexes of the type [Fe(L)(NCS)2] with the tripodal ligand apme (apme = N1-(2-aminoethyl)-N1-(2-pyridyl-methyl)-1,2-ethanediamine) as well as with its derivatives were prepared and structurally characterized. The bond distances thus obtained showed that all complexes investigated were high-spin at the respective temperature. Furthermore [Fe(Me4apme)(NCS)2] was analyzed using Mößbauer spectroscopy that showed that this complex remains in its high-spin state over the entire temperature range.  相似文献   

3.
《Inorganica chimica acta》1986,119(2):187-190
Mono-ligand complexes MnLX2 (L = pyridine, 4-pyrrolidinopyridine, X = Cl, Br, I, NCS) have been prepared. The pyridine complexes contain only bridging halide and pseudohalide groups, whereas the 4-py complexes contain both bridging and terminal bound anions. Ethanol is coordinated in Mn(EtOH)X2 (X=C1, Br) and Mn(EtOH)2X2 (X=I, NCS). Although the MnLX2 complexes have the same stoichiometry as the Mn(PR3)X2complexes none show any activity towaxds binding dioxygen either in the solid state or in solution.  相似文献   

4.
New copper(I) complexes have been synthesized from the reaction of CuCl with 4- or 2-(diphenylphosphane)benzoic acid and KH2B(btz)2, KHB(btz)3, NaTpMe, KpzTp, KpzTpMe and KH2B(im)2(dmac). The complexes obtained have been characterized by elemental analyses and FT-IR in the solid state, and by NMR (1H and 31P{1H}) and electrospray mass spectroscopy in solution.Chemiluminescence technique was used to evaluate the superoxide scavenging activity of these new copper complexes.  相似文献   

5.
Ionic complexes, [Q][InIII(dmit)2] (7), have been obtained from reactions of InCl3, Na2(dmit) and [Q]Br [Q=NEt4 and NBu4: H2(dmit)=4,5-dimercapto-1,3-dithiole-2-thione]. As established by X-ray crystallography, using synchrotron radiation at 120 K, (7: Q=NBu4) is an ionic compound, with the cations well separated from the anions. The anions are in the form of chains of edge sharing octahedra in which distinct six coordinate In atoms are linked by bridging thiolato-S leading to the formation of In2S2 rings. For each dmit ligand, one thiolato S atom acts as a monodentate centre and the other as a μ2-bridge. The In-S bond lengths fall into three groupings: 2.5301(17)-2.5400(17) [monodentate S], 2.5905(17)-2.6171(17) and 2.7236(17)-2.7589(17) Å [the latter two, bridging S].  相似文献   

6.
A series of four-coordinate, square-planar, dia- magnetic 1-diphenylphosphino-2-bis(m-trifluoro- methylphenyl)phosphinoethane complexes of type cis-[MX2(m-CF3P-P)] (M = Ni, Pd, Pt; X = Cl, Br, I or NCS) have been prepared. These complexes have been characterized by 31P {1H} NMR, 1H NMR, IR and UV spectroscopy, elemental analyses and magnetic susceptibility measurements. The effects of various substituents on the phenyl groups of the ditertiary phosphines on the solubility characteristics of the metal complexes are discussed.  相似文献   

7.
Two new ruthenium (II) complexes containing coupled di(2-pyridyl) and 1,3-dithiole units, cis-[Ru(Medpydt)2(NCS)2] (2, Medpydt = dimethyl 2-(di(2-pyridyl)methylene)-1,3-dithiole-4,5-dicarboxylate) and cis-[Ru(H2dpydt)2(NCS)2] (3, H2dpydt = 2-(di(2-pyridyl)methylene)-1,3-dithiole-4,5-dicarboxylate), have been synthesized and characterized. The structure of complex 2 has been determined by X-ray crystallography. There exist intermolecular H-bonding interactions between carbomethoxy groups on neighboring pyridine rings giving rise to 2D H-bonded arrays. The metal-to-ligand charge-transfer (MLCT) absorptions were observed around 480 nm. Redox properties of ruthenium complexes have been investigated by cyclic voltammetry. Solar cells involving thin films of anatase TiO2 impregnated with cis-[Ru(H2dpydt)2(NCS)2] were prepared, and the photovoltaic performance was preliminarily investigated.  相似文献   

8.
New binucleating ligands, bis(isocyclam) with a linear methylene chain bridge, n-bicy (n = 2, 3, 4) and their copper(II) complexes, Cu2(n-bicy)(ClO4)4· xH2O and Cu2(n-bicy)(NCS)4·yH2O have been synthesized. The magnetic moments of these complexes were normal, but the presence of magnetic coupling between copper(II) ions were clearly demonstrated by the hyperfine structure in the ESR spectra.  相似文献   

9.
The synthesis and characterisation of a series of dinuclear and polynuclear coordination compounds with 4-allyl-1,2,4-triazole are described. Dinuclear compounds were obtained for Mn(II) and Fe(II) with composition [M2(Altrz)5(NCS)4], and for Co(II) and Ni(II) with composition [M2(Altrz)4(H2O)(NCS)4](H2O)2. The crystal structure of [Co2(Altrz)4(H2O)(NCS)4](H2O)2 was solved at room temperature. It crystallizes in the monoclinic space group P21/n. The lattice constants are a = 18.033(3) Å, b = 13.611(2) Å, c = 15.619(3) Å, β = 92.04(2)° Z = 4. One cobalt ion has an octahedrally arranged donor set of ligands consisting of three vicinal nitrogens of 1,2-bridging triazoles (CoN = 2.14–2.15 Å), one terminal triazole nitrogen (CoN = 2.12 Å) and two N-bonded NCS anions (CON = 2.08 Å). The other Co(II) ion has the same geometry, but the terminal triazole ligand is replaced by H2O (CoO = 2.15 Å). The crystal structure is stabilised by hydrogen bonding through H2O molecules, S-atoms of the NCS anions and the lone-pair electron of the monodentate triazole. The magnetic exchange in the Mn, Co and Ni compounds is antiferromagnetic with J-values of ?0.4 cm?1, ?10.9 cm?1 and ?8.7 cm?1 respectively. The Co compound was interpreted in terms of an Ising model. For [Zn2(Altrz)5(NCS)2]∞[Zn(NCS)4], [Cu2(Altrz)3(NCS)4]∞ and [Cd2(Altrz)3(NCS)4]∞ chain structures are proposed. In the Cu compound thiocyanates appear to be present, bridging via the nitrogen atom, as deduced from the IR spectrum.  相似文献   

10.
The reaction of AgX (X=ClO4, NO3 or SO3CH3) acceptors with excesses of tris(pyrazol-1-yl)methane ligands L (L=CH(pz)3, CH(4-Mepz)3, CH(3,5-Me2pz)3, CH(3,4,5-Me3pz)3 or CH(3-Mepz)2(5-Mepz)) yields 1:1 [AgX(L)], 2:1 [Ag(L)2]X or 3:2 [(AgX)2(L)3] complexes. The ligand to metal ratio in all complexes is dependent on the number and disposition of the Me substituents on the azole ring of the neutral ligand and on the nature of the Ag(I) acceptor. All complexes have been characterized in the solid state as well as in solution (medium- and far-IR, 1H and 13C NMR and conductivity determinations) and the solid-state structures of [Ag(NO3){(pz)3CH}](∞/∞) and [Ag{(3,5-Me2pz)3CH}2]NO3 determined by single crystal X-ray studies.  相似文献   

11.
This report describes synthesis and characterization of bis-ligand Mn(II) complexes of bidentate chelators: maltol (3-hydroxy-2-methyl-4-pyrone), ethylmaltol (2-ethyl-3-hydroxy-4-pyrone), 1,2-dimethyl-3-hydroxy-4-pyridinone (DMHP) and dehydroacetic acid. All four Mn(II) complexes were characterized by elemental analysis, IR, UV/Vis, EPR, cyclic voltammetry, and X-ray crystallography in cases of Mn(dha)2(CH3OH)2 and [Mn(ema)2(H2O)]2 · 2H2O. The bidentate chelator plays a significant role in the solid state structure of its Mn(II) complex. For example, dha forms the monomeric complex Mn(dha)2(CH3OH)2 while ethylmaltol forms the dimeric complex [Mn(ema)2(H2O)]2. Because of smaller size, maltol ligands in Mn(ma)2 are able to bridge adjacent Mn(II) centers to give a polymeric structure in solid state. Despite of the difference in their solid state structures, both Mn(ema)2 and Mn(ma)2 exist in solution as monomeric Mn(II) species, Mn(ema)2(H2O)2 and Mn(ma)2(H2O)2. This assumption is supported by the similarity in their UV/Vis spectra, EPR data and electrochemical properties. Replacing maltol with DMHP results in a decrease (by ∼100 mV) in the redox potential for the Mn(II)/Mn(III) couple, suggesting that DMHP stabilizes Mn(III) better than maltol. Since Mn(DMHP)2(H2O)2 is readily oxidized to form the more stable Mn(III) complex Mn(DMHP)3, DMHP has the potential as a chelator for removal of excess Mn(II) from patients with chronic Mn toxicity.  相似文献   

12.
The new chromium(II) complexes [CrL2(NCS)2], where L=pyridine or 2-, 3- or 4-methylpyridine, have been prepared by the addition of an aqueous mixture of CrBr2 and NH4NCS to a solution of the pyridine. The diffuse reflectance and infrared spectra and the antiferromagnetic behaviour of the complexes suggest that they are thiocyanato-bridged linear polymers.  相似文献   

13.
The reaction of Cd(OAc)2 · 4H2O and 1-alkyl-2-(arylazo)imidazole [RaaiR′ where R = H (a), Me (b); R′ = Me (1/3/5), Et (2/4/6)] and NH4NCS/NaNCO in methanol in 1:2:2 mole ratio has afforded [Cd(RaaiR′)2(NCS)2] (34) and [Cd(RaaiR′)2(NCO)2] (56) complexes. The complexes are characterized by different physicochemical methods and in one case, the structure was confirmed by single crystal X-ray diffraction study for title compounds.  相似文献   

14.
The reaction of 2-(methylthioethanol) with 1,8-dichloroanthraquinone and 1,5-dichloroanthraquinone in THF with base produces 1,8-bis(2-methylthioethoxy)anthraquinone (1) and 1,5-bis(2-methylthioethoxy)anthraquinone (2), respectively. Silver(I) complexes of 1 and 2 have been synthesized after combination with [Ag(CH3CN)4]BF4 in 1:1 M ratio to yield, [(1,8-bis(2-methylthioethoxy)anthraquinone)Ag]BF4, (3) and [(1,5-bis(2-methylthioethoxy)anthraquinone)Ag·CH3CN]BF4, (4). X-ray crystal structures of the free ligand (1) and the Ag(I) complexes (3 and 4) are reported. The intraannular carbonyl group forms a coordinate-covalent bond with Ag(I) and, in the solid state, both silver(I) complexes are found as coordination polymers.  相似文献   

15.
Trinuclear Ni(II), Co(II) and Mn(II) complexes have been prepared from the asymmetric compartmental proligands 2-alkyliminomethyl-4-methyl-6-{[methyl-(2-pyridin-2-yl-ethyl)-amino]-methyl}-phenol(alkyl=ethyl, n-propyl and n-butyl) and 2-[(2-methoxy-ethylimino)-methyl]-4-methyl-6-{[methyl-(2-pyridin-2-yl-ethyl)-amino]-methyl}-phenol, which provide adjacent tridentate N2O and bidentate NO donor sets. The crystal structures of [Ni3(L6)2(OAc)2(NCS)2] · CH3OH · H2O, [Co3(L4)2(OAc)2(NCS)2], and [Mn3(L7)2(OAc)2(NCS)2] · CH3OH · H2O were determined and show that the metals provide an isosceles triangle with M1-M2=M1-M3 ≈ 3.2 Å and M2-M3 ≈ 5.0 Å. The cryomagnetic properties of the complexes have been studied and indicate a weak antiferromagnetic interaction between the adjacent, M1M2 and M1M3 ions with little magnetic interaction between the terminal M2M3 ions.  相似文献   

16.
The complexes M(NCS)4·xL (x = 2, M = U, L = Me3CCON(Pri)2(dippva); x = 3, M = Th, L = Me2CHCON(Pri)2(dipiba) and dippva, M = U, L = EtCON(Pr1)2(dippa), dipiba and dippva; x = 4, M = Th, L = MeCON(Pri)2(dipa), dippa and dipiba, M = U, L = dipa, dippa) and the solvates M(NCS)4·4dipa·CH2Cl2 (M = Th, U) have been prepared. Their i.r. and u.v.-visible (M = U only) spectra are reported. The crystal and molecular structure of U(NCS)4(dipa)4· CH2Cl2 has been determined by the heavy-atom method from X-ray diffractometer data and refined by least squares to R 0.029 for 1135 independent reflections. The crystal is tetragonal, space group P421c, with Z = 2, a = 15.663(4) and c = 10.512(3) Å. The coordination geometry about the 8-coordinate uranium atom is dodecahedral with the N atoms of the NCS groups occupying the dodecahedral A sites and the ‘dipa’ O atoms the B sites. The bonding distances of UO and UN are 2.363(8), and 2.444(11) Å respectively.  相似文献   

17.
Condensations of 2-(2-aminoethyl)pyridine with 4-methylimidazole-5-carboxaldehyde and 1-methyl-2-imidazolecarboxaldehyde generate the tridentate N donor ligands L and L′ respectively. Reactions of Cu(NCS)2 with L and L′ yield respectively CuL(SCN)(NCS) (1) containing a CuN4S core and CuL′(NCS)2 (2) having a CuN5 core. Both the cores are square pyramidal with SCN bound in 1 at the axial position through the S end. This differential behaviour of SCN in the two complexes despite the ligands being very similar, is investigated by DFT calculations at the B3LYP/TZV level. It is found that DFT calculations predict isolation of the Cu(ligand)(NCS)2 species for both the ligands L and L′. Presence of an offsetting intermolecular H-bonding between the N atom of the thiocyanate and the N-H proton of the ligand L of an adjacent molecule makes the binding of SCN via the S end feasible in 1 resulting in the H-bonded dimer Cu2L2(SCN)2(NCS)2. The strength of the H-bond is estimated as 27.1 kJ mol−1 from the DFT calculations. The question of such H-bonding does not arise with L′ as it lacks in a similar H atom. Dimeric 1 represents a case of two non-interacting spins.  相似文献   

18.
The reaction of FeCl3 · 6H2O, potassium hydrotris(pyrazolyl)borate (KTp) and KSCN gives [FeTp2][TpFe(NCS)3] (1) and [FeTp2]3[Fe(NCS)6] (2), respectively. The bond lengths and angles indicate that both complexes have [FeTp2]+ cations where Fe(III) ions are in typical low-spin state, and in counter ions, [TpFe(NCS)3] for 1 and [Fe(NCS)6]3− for 2 are both in high-spin state. Variable temperature magnetic susceptibility and ESR results also show that there are double spin states of iron(III) ions within the crystal lattice of both compounds.  相似文献   

19.
A series of dioxouranium(VI) complexes was synthesised with some Schiff base ligands containing substituent groups at para positions to CHN groups. These molecules were obtained by the condensation of para-nitro, chloro, bromo, hydroxy, methyl and methoxy aniline with salicylaldehyde. The bidentate ligands formed complexes of the type UO2(NCS)2 (X-N-Sal)n·mH2O, where n = 2, m = 3, x = NO2, Cl, Br and OH; n = 3, m = 2, x = CH3 and OCH3.Conductivity measurements indicate that all the complexes are non-electrolytes in nitromethane solution, whereas in DMF they correspond to 1:1 electrolytes.IR spectral data suggest that the molecules and not the anions of the Schiff base are coordinated to the central uranium atom. IR and Raman spectra suggest that the complexes UO2(NCS)2(X-N-Sal)2· 3H2O (X = NO2, Cl, Br) have C2h molecular symmetry, whereas UO2(NCS)2(X-N-Sal)3·2H2O (X = OCH3, CH3) have C2v symmetry.The frequencies of UO2(asym) (IR) and UO2(sym) (R) in the complexes seem to vary with the various substituents of the Schiff base ligand, in the order:NO2 > Cl > Br > OH > CH3 > OCH3  相似文献   

20.
Three mono-nuclear copper(II) complexes [Cu(tepza)X]ClO4 (X = Cl, 1; X = NCS, 2; X = dca, 3) and two dinuclear bridging complexes [Cu2(tepza)2(μ-C4O4)](ClO4)2·H2O(4) and [Cu2(tepza)2(μ-C5O5)](ClO4)2(5) where tepza = tris[2-ethyl(1-pyrazolyl)]amine, dca = dicyanamide, C4O42− = 3,4-dihydroxycyclobut-3-ene-1,2-dionate (squarate dianion) and C5O52− = 4,5-dihydroxycyclopent-4-ene-1,2,3-trionate (croconate dianion) were synthesized and structurally characterized by IR and UV-Vis spectroscopy as well as by single X-ray crystallography. In the solid state, the geometry of copper(II) centers in these complexes are as follows: close to SP in 2, distorted TBP in 3, predominant SP in 4, and distorted octahedral in 5, whereas in solution distorted SP geometry was generally found. The squarato and the croconato dianions in complexes 4 and 5 are bridging the two copper(II) centers in cis-bis-monodentate and bis-bidentate bonding modes, respectively. Magnetic susceptibility measurements at variable temperatures (2-300 K) reveal the weak antiferromagnetic coupling in the two bridging dinuclear complexes 4 (= −24.9 cm−1) and 5 (= −3.1 cm−1).  相似文献   

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