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1.
The reaction of [NBu4n]2Cu(mnt)2] with [Pt(CNMe)4][PF6]2 gives [Pt(mnt)(CNMe)2]·(NC)2C2S2CNMe, an X-ray study of which reveals co-stacking of neutral planar metal and organic molecules.  相似文献   

2.
The reaction of {HB(Me2pz)3}Mo(NCS)(S4) [HB(Me2pz)3 = hydrotris(3,5-dimethylpyrazolyl)borate anion] with dicarbomethoxyacetylene in refluxing toluene results in the formation of the brown, diamagnetic complex {HB(Me2pz)3}Mo(NCS){S2C2(CO2Me)2} (1) (the reactants above also yield 1 upon prolonged reaction in dichloromethane at 25°C), which has been characterized by X-ray crystallography. The mononuclear pseudo-octahedral complex contains a facially tridentate HB(Me2pz)3 ligand, a monodentate N-bound NCS ligand, and a bidentate S2C2(CO2Me)22− ligand having a near planar MoS2C4 fragment and a SC=CS bond distance of 1.342(15) Å. Solutions of 1 are unstable in air and decompose to produce {HB(Me2pz)3}MoO2(NCS) and {HB(Me2pz)3}MoO(NCS)2.  相似文献   

3.
The reaction of [Cp2MoH2] and AgBF4 with the dithio ligands Na(S2CPh) and K(S2COiPr) afforded the complexes [(Cp2MoH2AgS2CPh)2] (1) and [(Cp2MoH2AgS2COiPr)2] (2). Using the monothio ligands Na(SC(O)Ph), K(SC(O)CH3) and Na(S(NHPh)C=C(CN)2) the complexes [(Cp2MoH2AgSC(O)Ph)2] (3), [((Cp2MoH2)2(AgSC(O)CH3)3)n] (4) and [(Cp2MoH2)2AgS(NHPh)C=C(CN)2] (6) were formed. The reaction of thiobenzamide and [(Cp2MoH2)2AgCl] gave the complex [(Cp2MoH2Ag(Cl)S(NH2)CPh)2] (5). Complexes 1 and 2 have a dimeric structure with the two dithio ligands bridging the two silver atoms. Complex 3 is also a dimer, however, the monothio ligands are coordinated with their single sulphur atoms to the silver atoms. In the polymer 4 the thioacetate ligand has the same bonding mode as in 3. The three-dimensional structure of 4 is built-up of parallel strings. In the dimer 5 the thiobenzamide ligands bind with the sulphur atom to a silver atom each. Complex 6 has a monomeric structure in which the silver atom is coordinated to two [Cp2MoH2] ligands and to the sulphur atom of the S(NHPh)C=C(CN)2 ligand. Compounds 1–6 were characterised analytically and spectroscopically and the structures were determined by single crystal X-ray analyses.  相似文献   

4.
The cationic diphenylphosphido-bridged compound [Ru2(μ-PPh2)(μ-OH)26-p-cymene)2][PF6) (2) has been prepared by reaction of the tri-μ-hydroxo complex [Ru2(μ-OH)3(η-p-cymene)2][PF6] (1) with diphenylphosphine. Complex 2 eliminates water on reaction with protic acids, incorporating the conjugate base of the added acid as a bridging ligand. Formic acid, acetic acid, phenol, and aniline react with 2 to give the monosubstituted compounds [Ru2(μ-PPh2)(μ-OH)(μ-L)(η6-p-cymene)2]PF6] (L = HCO2, MeCO2, OPh, or NHPH), whereas methanol, thiophenol, 1,2-benzenedithiol, hydrochloric acid and isopropanol afford the disubstituted derivatives [Ru2(μ-PPh2)(μ-L)26-p-cymene)2]PF6] (L = OMe, SPh, S2C6H4, Cl, or H).  相似文献   

5.
Reduction of (C5H5)2TiCl2 with Zn in presence of benzyl cyanide gives the (μ-alkyl-ideneamido)titanocene complex [(C5H5)2TiCl]2[μ-{N=C(CH2C6H5)---C(CH2C6H5)=N}] with C---C bond formation between two benzyl cyanide molecules.

X-ray structure investigation indicates a symmetrical structure. The C=N distances are smaller than usual, the Ti---N distances are very short, and the Ti---N---C angle differs only a little from 180°, which infers a heteroallene structure of the complex.  相似文献   


6.
《Polyhedron》2001,20(28):306-3306
Five new complexes of composition [Cu(dpt)Ni(CN)4] (1) (dpt=dipropylenetriamine), [Cu(dien)Ni(CN)4]·2H2O (2) (dien=diethylenetriamine), [Cu(N,N′-dimeen)Ni(CN)4]·H2O (3) (N,N′-dimeen=N,N′-dimethylethylenediamine), [Cu(N,N-dimeen)Ni(CN)4]·H2O (4) (N,N-dimeen=N,N-dimethylethylenediamine) and [Cu(trimeen)Ni(CN)4] (5) (trimeen=N,N,N′-trimethylethylenediamine) have been obtained by the reactions of the mixture of Cu(ClO4)2·6H2O, appropriate amine and K2[Ni(CN)4] in water and have been characterized by IR and UV–Vis spectroscopies and magnetic measurements. The crystal structure of [Cu(dpt)Ni(CN)4] (1) has been determined by single-crystal X-ray analysis. The structure of 1 consists of a one-dimensional polymeric chain ---Cu(dpt)---NC---Ni(CN)2---CN---Cu(dpt)--- in which the Cu(II) and Ni(II) atoms are linked by CN groups. The nickel atom is four coordinate with four cyanide-carbon atoms (two cyano groups are terminal and two cyano groups (in cis fashion) are bridged) in a square-planar arrangement and the copper atom is five coordinate with two cyanide-nitrogen and three dpt-nitrogen atoms, in a distorted square-pyramidal arrangement. The temperature dependence of magnetic susceptibility (2–300 K) was measured for compound 1. The magnetic investigation showed the presence of a very weak antiferromagnetic interaction (J=−0.16 cm−1) between the copper atoms within each chain through the diamagnetic Ni(CN)4 2− ions.  相似文献   

7.
Recently, there has been considerable interest in cyano-bridged lanthanide(Ⅲ) hexacyanometalate(Ⅲ) complexes LnM(CN)6·nH2O (M=Fe, Cr and Co) because of their potential as catalytic, semiconductive, and magnetic materials.[1-8] In this study, we employed N,N-dimethylformamide (DMF) as a hybrid ligand to construct a bimetallic complex[Eu(DMF)4(H2O)2Cr(CN)6]·H2O. It was synthesized as yellow crystals by the self-assembly of anhydrous EuCl3 and (Bu4N)3[Cr(CN)6] in MeOH and DMF. Single-crystal X-ray diffraction analysis shows that it consists of a cyano-bridged chain structure. The Eu atom is eight-coordinate with a distorted bicapped square antiprism geometry. Six oxygen atoms of two water molecules and four DMF molecules and two nitrogen atoms of the bridging CN ligands are bound to Eu with the Eu-O distance ranging from 2.368(7) to 2.447(8) Å. The bridging cyanides coordinate to the Europium(Ⅲ) ion[N(l)-Eu=2.543(9) Å and N(3)-EuA=2.543(8) Å] in a bent fashion with the bond angles of 164.0(9) for C(1)-N(1)-Nd and 155.1(7)。for C(3)-N(3)-EuA (A denotes the symmetry transformation:-x+l,y-l/2,-z+3/2). Each Cr(CN)6 coordinates to two Eu(Ⅲ) ions using two cis cyanide ligands, while each Eu(DMF)4(H2O)2 group connects two Cr(CN)6 moieties in a cis fashion, giving rise to an unprecedented chain structure. Crystal data:monoclinic, space group P21/c, a=13.151(2), b=12.905(2), c=19.186(2) Å, β=109.70(1)°, V=3065.5(7) Å3,Z=4, ρobs=1.531 Mg m-3, S=1.024,R1=0.0540, Rw=0.1616.  相似文献   

8.
Compounds [n-CnH2n+1N(CH3)3]2CoCl4(n=16, C16C3Co; n=18, C18C3Co) containing lipid-like bilayers embedded in a crystalline matrix exist in solid-solid phase transition. The low-temperature bilayer structures of the two compounds were organized by neutralizing CoCl42- with alkylammonium ions. Alkyl chains lay parallel to each other and slightly tilted with respect to the normal of the inorganic layers. The adjacent alkyl chains interacted with each other by van der Waals interaction. When the temperature increased, the two compounds underwent a reversible solid-solid phase transformation within 310―330 K. In such a case, the chains showed a large motional freedom, and a disordered phase appeared. The structures can alternatively be viewed as a double layer of alkylammonium ions between CoCl42- sheets and be considered as crystalline models of lipid bilayers. The experimental subsolidus binary phase diagram of [n-C16H33N(CH3)3]2CoCl4-[n-C18H37N(CH3)3]2CoCl4 was constructed over the entire composition range by differential scanning calorimetry and X-ray diffraction technique. Experimental phase diagram indicates one stable intermediate phase [n-C16H33N(CH3)3][n-C18H37N(CH3)3]CoCl4 at wC16C3Co= 39.89% and two invariant three- phase equilibria, which shows two eutectoid temperatures: Te1 at (316±1) K for wC16C3Co= 27.35% and Te2 at (313±1) K for wC16C3Co=59.76%. These three noticeable solid-solution ranges are α-phase at the left, β-phase at the right, and γ-phase in the middle of the phase diagram.  相似文献   

9.
The reaction of CpTiCl3 with two equivalents of 1,2(LiS)2C6H4 and one equivalent of Ph4PBr in acetone/pentane affords the new anionic titanium(IV) complex [Ph4P][CpTi(1,2-S2C6H4)2], which has been characterized by chemical analysis and by 1H NMR and IR spectroscopy. The structure of the five-coordinated, half-sandwich bis(dithiolato)titanate anion in the tetraphenyl phosphonium salt has been determined by an X-ray diffraction study. The anion has the two five-membered TiS2C2 chelate rings folded along the S---S axes by 36 and 23°, with one chelate ligand plane arranged exo, the other endo in relation to to the Cp ligand.  相似文献   

10.
Reaction of YbI2 with two equivalents of cyclopentylindenyl lithium (C5H9C9H6Li) affords ytterbium(II) substituted indenyl complex (C5H9C9H6)2Yb(THF)2 (1) which shows high activity to ring-opening polymerization (ROP) of lactones. The reaction between YbI2 and cyclopentylcyclopentadienyl sodium (C5H9C5H4Na) gives complex [(C5H9C5H4)2Yb(THF)]2O2 (2) in the presence of a trace amount of O2, the molecular structure of which comprises two (C5H9C5H4)2Yb(THF) bridged by an asymmetric O2 unit. The O2 unit and ytterbium atoms define a plane that contains a Ci symmetry center.  相似文献   

11.
双(2,4-二甲基戊二烯基)氯化钆的合成及晶体结构   总被引:2,自引:0,他引:2  
合成双(2,4-二甲基戊二烯基)氯化钆{[2,4-(CH3)2C5H5]2GDcl}2,并测定了晶体结构.晶体为单斜晶系,P21/n空间群.晶胞参数a=0.89141(18)nm,b=1.4486(3)nm,c=1.15925(15)nm,β=92.996(18)°,V=1.4949(4)nm3,Z=3.  相似文献   

12.
Reaction of [18]aneS6 with two molar equivalents of [Cu(NCMe)4](ClO4) in CH2Cl2-MeCN affords the binuclear copper(I) complex [Cu2([18]aneS6)(NCMe)2](ClO4)2. The single crystal X-ray structure of the complex shows a centrosymmetric cation with two tetrahedral copper(I) centres each coordinated to three thioether S-donors of [18]aneS6,Cu---S(1) = 2.3200(15), Cu---S(4) = 2.3415(16), Cu---S(7) = 2.3250(15) Å, and to one MeCN molecule, Cu---N(1) = 1.939(5) Å, to give an overall NS3-donation at the metal centres. Additionally, S(7′) shows a long-range interaction, Cu …S(7′) = 3.318(2) Å thus distorting the coordination geometry of the metal ion towards trigonal bipyramidal. The metal-metal separation of 4.428(2) Å suggests that there is no significant interaction between the copper centres of the dimer. Reaction of [9]aneS3 with one molar equivalent of [Cu(NCMe)4](ClO4) in refluxing MeCN in the presence of ligands, L, affords the adducts [Cu([9]aneS3)L]+ (L = PPh3, AsPh3). The single crystal X-ray structure of the complex [Cu([9]aneS3)(AsPh3)](ClO4) shows tetrahedral AsS3 coordination at copper(I) with [9]aneS3 bound facially to the metal centre, Cu---S = 2.303(6), Cu---As = 2.322(4) Å.  相似文献   

13.
Polycrystalline octa-nuclear copper(I) O,O′-di-i-propyl- and O,O′-di-i-amyldithiophosphate cluster compounds, {Cu8[S2P(OR)2]68-S)} where R = iPr and iAm, were synthesized and characterized by 31P CP/MAS NMR at 8.46 T and static 65Cu NMR at multiple magnetic field strengths (7.05, 9.4 and 14.1 T). The symmetries of the electronic environments around the P sites were estimated from the 31P chemical shift anisotropy (CSA) parameters, δaniso and η. Analyses of the 65Cu chemical shift and quadrupolar splitting parameters for these compounds are presented with the data being compared to those for the analogous octa-nuclear cluster compounds with R = nBu and iBu. The 65Cu transverse relaxation for the copper sites in {Cu8[S2P(OiPr)2]68-S)} and {Cu8[S2P(OiAm)2]68-S)} was found to be very different, with a relaxation time, T2, of 590 μs (Gaussian) and 90 μs (exponential), respectively. The structures of {Cu4[S2P(OiPr)2]4} and {Cu8[S2P(OiPr)2]68-S)} cluster compounds in the liquid- and the solid-state were studied by Cu K-edge EXAFS. The disulfide, [S2P(OiAm)2]2, was obtained and characterized by 31P{1H} NMR. The interactions of the disulfide and of the potassium O,O′-di-i-amyldithiophosphate salt with the surfaces of synthetic chalcocite (Cu2S) were probed using solid-state 31P NMR spectroscopy and only the presence of copper(I) dithiophosphate species with the {Cu8[S2P(OiAm)2]68-S)} structure was observed.  相似文献   

14.
In order to study the relationship between structure and conductivity, ten new organometallic radical ionic salts. [CpFeBz]n[M(mnt)2] and [CpFeBz]n[M(dmit)2] (M=Ni, Pd, Pt, Cu, Co; Cp=Cydopentadienyl; Bz=Benzene; H2mnt=maleonitriledithiole; H2dmit=4,5-dimercapto-1, 3-dithioie-2-thione; n=1 or 2), were synthesized according to a new synthetic route. They were characterized using elemental analysis, infrared and 1H-nuclenr magnetic reso-nance spectroscopy. The crystal structure of [CpFeBz]2[Ni(mnt)2] was determined using X-ray diffraction. The electrical conductivity of siolid stale was reported. Gomplexes of [CpFeBz]n[M(mnt)2] showed a low conductivity, while complexes of [CpKeBz]n[M(dmit)2] exhibited a rather high conductivity in the range of 10-1-10-2S·cm-1.  相似文献   

15.
[W3Se7(S2P(OEt)2)3]Br was prepared by reacting (Et4N)2W3Se7Br6 with KS2P (OEt)2 in CH3CN and its crystal structure determined. In the [W33-Se)(μ2-Se2)3]4+ core the W---W bond length is 2.755(5)-2.764(6) Å and the Se---Se bond length is 2.32(1)- 2.34(4) Å.  相似文献   

16.
The redox characteristics of the ternary clathrate compound {Mo[S2CN(C2H5)2]4}+{C6H5CH2SSCH2C6H5}-was studied by electrochemical measurement and quantum-chemical calculations.The cyclic voltammogram of this ternary clathrate compound in 0.1M KClO4-DMF with a platinum electride had 2.pairs of redox peak.Both the electrochemical parameters derived from the voltammogram and the results of EHMO calculations indicate that the pair of redox peak at relatively positive potentials corresponds to the redox reaction of Fe(Ⅲ)/Fe(Ⅱ) which is irreversible in nature,while the pair of redox peak at more negative potentials corresponds to the redox reaction of Mo(Ⅴ)/ Mo(Ⅱ) which is semi-reversible.The calculations from experiment measurements are fairly agreement with the theoretical calculations.  相似文献   

17.
The cation-π interactions have attracted much attention as an important noncovalent binding force. We have synthesized and characterized the first example[K(DB 18C6)]2[Pd(SCN)4] which exist K+-π interactions in crown ether compounds[1]. However,the reported Na+ complexes structurally characterized by X-ray diffraction analysis have so far been limited to a few compounds. We now report the structure of complex:[Na(DB18C6)]2[Pd(SCN)4] which also exist Na+-n interactions.  相似文献   

18.
The new terminal phosphinidene complex [Cp2Zr=PDmp(PMe3)] (Dmp=2,6-Mes2C6H3; 1) was prepared in 81% yield by the reaction of [Li(Et2O)][P(H)Dmp] with [Cp2Zr(Me)Cl] in the presence of excess PMe3. Compound 1 reacts with Ph2PCl to produce selectively the sterically congested triphosphane DmpP(PPh2)2 (2) and [Cp2ZrCl2] in high yields. The structure of 2 obtained by X-ray diffraction analysis of a single crystal reveals phosphorus–phosphorus bond lengths of 2.251(2) and 2.234(2) Å and a PPP bond angle of 105.46(6)°.  相似文献   

19.
A new transition metal complex, [Cu(N-MeIm)4(BF4)2](N-MeIm=N-methylated imidazoles, BF4= tetrafluoroborate), was synthesized via the solvothermal method in ionic liquid. The ionic liquid acts as thermal decomposition reaction medium, soft temple agent and ligand compound. The central Cu(II) ion is coordinated by four N atoms from four N-methylated imidazole ligands, and the four N-methylated imidazole rings are perpendicular to each other. The crystal structure of [Cu(N-MeIm)4(BF4)2] was determined by single crystal X-ray diffraction. The results of thermogravimetry(TG) and Fourier transform infrared spectrometry(FTIR) analyses were in accordance with that of crystal structure. The complex showed strong ligand-based absorbance with maximum wavelength at 208 and 231 nm, which are attributed to π-π* transition of the N-methylated imidazole ligands.  相似文献   

20.
The two ion-pair complexes, [pyH]2[Zn(mnt)2] (1) and [4,4′-bipyH2]-[Zn(mnt)2] (2), were synthesized, where mnt2− denotes maleonitriledithiolate, and [pyH]+, [4,4′-bipyH2]2+ represent pyridinium and diprotonated 4,4′-bipyridinium, respectively. Their single crystal structures show that there are strong bifurcated H-bonding interactions between the cations of the pyridinium derivative and the [Zn(mnt)2]2− anions in both 1 and 2. The bifurcated H-bonding interactions between the N–H of the pyridiniums and the CN groups of the mnt2− ligands give rise to a 2D layered H-bonding network, the adjacent layers come together in such way as mutual embrace to give a tight pack, thus 2D hydrogen-bonding sheets further develop into 3D H-bonding networks through weak C–HS and ππ stacking interactions in 1. As for 2, the cations and anions connect into several types of H-bonding macrorings ([2+2], [3+3] and [4+4]), these H-bonding macrorings fuse to extend into 2D layered structure, the interpenetration between [3+3] and [4+4] type H-bonding macrorings in the adjacent layers give further rise to novel 3D extended H-bonding networks, in which there are clearly parallel stacks of cations and the chelate rings of anions.  相似文献   

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