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1.
The unusually stable cis-dioxobis(diisobutyldithiocarbamato)tungsten(VI) [WO2(i-Bu2dtc)2] was synthesized by the reaction between WO4 2− and i-Bu2dtc in water under the air. The X-ray crystal structure and voltammetric behaviour of the complex are reported. The geometry of the WO2S4 core of the complex is distorted octahedral with two terminal oxo ligands in a cis position to each other. The average WO distance of the complex is 1.719 Å and the bond angle of O-W-O is 104.7°, which are in the range of those of cis-dioxotungsten(VI) complexes. The structural features of [WO2(i-Bu2dtc)2] are very similar to those of corresponding cis-dioxomolybdenum(VI) analogues. The complex [WO2(i-Bu2dtc)2] undergoes one-electron quasi-reversible reduction followed by a homogeneous chemical reaction at more negative potential (−1.40 V vs. SSCE) than the corresponding molybdenum analogue [MoO2(i-Bu2dtc)2] (−0.92 V vs. SSCE) in dichloromethane.  相似文献   

2.
The self assembly of [FeIII(L)]Cl2ClO4 (L = pentadentate macrocyclic ligand) with octacyano metallates [MIV(CN)8]4− (M = Mo, W) leads to bimetallic cyano-bridged 2-D coordination polymers of formula [{Fe(L)}3{M(CN)8}2]Cl·xH2O with M = Mo (2), or W (3). The structure of the tungsten analogue has been established by single crystal X-ray diffraction. The magnetic properties for both Mo and W derivative are reported.  相似文献   

3.
A series of compounds of formula [{Cu2(OOCCmH2m + 1)4(urea)}2] (m=5-11) have been characterized. X-ray structure analysis for the hexanoate compound reveals a new type of tetranuclear dicopper(II) tetracarboxylate, where the central coordination sphere in [{Cu2(OOCC5H11)4(urea)}2] is composed of two dinuclear dicopper tetracarboxylates, connected via two inter-dinuclear Cu-O coordination bonds at a distance 2.222(2) Å through the apical positions of two dimers. Urea molecules (Cu-O 2.114(2) Å) occupy both outside apical positions of the resulting tetranuclear units. A strong antiferromagnetic behaviour has been shown for [{Cu2(OOCC5H11)4(urea)}2] (−2J=261.4(4) cm−1), and compared with related isolated dinuclear and polymeric hexanoate compounds [Cu2(OOCC5H11)4(urea)2], [Cu2(OOCC5H11)4]n, respectively. Only small differences in the magnetic susceptibility have been found, while EPR spectroscopy showed significantly different results for all three hexanoate compounds, also with the dicopper tetracarboxylate central core and square-pyramidal CuO4O chromophores. A solid-to-solid phase transition for [{Cu2(OOCC5H11)4(urea)}2] was observed by magnetic measurement and analysed for the whole series [{Cu2(OOCCmH2m + 1)4(urea)}2] by TG, DTA, and variable temperature XRD studies.  相似文献   

4.
The reactions of the Keplerate super cluster [Mo132O372(CH3CO2)30(H2O)72]42− with a Cu(II) source and an organonitrogen donor in methanol/DMF solutions yielded a series of bimetallic organic-inorganic oxide hybrid materials, including the molecular species [Cu(phen)2MoO4] (1) and [{Cu(terpy)}2(MoO4)2] (2) and a series of materials constructed from the tetranuclear building block {Mo4O10(OMe)6}2−: the molecular [{Cu2(phen)2(O2CCH3)2 (MeOH)}Mo4O10(OMe)6] (3), [{Cu(terpy)(O2CCH3)}2Mo4O10(OMe)6] (4) and [{Cu(terpy)Cl}2Mo4O10(OMe)6] (5), the one-dimensional phases [{Cu(bpy)(HOMe)2}Mo4O10(OMe)6] (6), [{Cu(bpy)(DMF)2}Mo4O10(OMe)6] (7), [{Cu(bpa)(DMF)2}Mo4O10(OMe)6] (8), [{Cu(phen)(DMF)2}Mo4O10(OMe)6] (9) and [{CuCl(dpa)}2Mo4O10(OMe)6] (10), and the two-dimensional material [{Cu2(DMF)2(pdpa)}{Mo4O10(OMe)6}2] (11). When methanol is replaced by the tridentate alkoxide tris-methoxypropane (trisp), the {Mo2O4(trisp)2}2− cluster building block is observed for [Cu(phen)Mo2O4(trisp)2] (12), [Cu(bpa)(DMF)Mo2O4(trisp)2] (13) and [{Cu(bpy)(NO3)}2Mo2O4(trisp)2] (14).  相似文献   

5.
Reactions of dichlorodioxobis(triphenylphosphine oxide)molybdenum(VI) complexes with ammonium/sodium salts of O,O-dialkyl(alkylene) and diphenyl dithiophosphoric acids in 1:1 molar ratio in dichloromethane solution yield dioxomolybdenum complexes of the types, MoO2Cl[S2P(OR)2] · OPPh3 (R=Me, Et, i-Pr, Ph) and MoO2Cl[S2] · OPPh3. (G=-CH2CMe2CH2O-, -OCMe2CMe2O-). These newly synthesized compounds were characterized by IR, UV-visible and 1H NMR spectroscopy and elemental analysis. The molecular structure of MoO2Cl2(OSMe2)2 was determined by single-crystal X-ray diffraction. MoO2Cl2(OSMe2)2 crystallizes as orthorhombic in the space group Pbca with cell parameters a=13.7235(3) Å, b=12.2429(2) Å, c=14.3356(3) Å, V=2408.60(8) Å−3, Z=8, R=0.0221, Rw=0.0519. There are two cis oxo ligands, two cis dimethylsulphoxide moieties and two trans chlorine atoms in a distorted octahedral environment around molybdenum.  相似文献   

6.
The complexes [{Ru(tpy)(bpy)}2(μ-adpc)][PF6]2 where tpy is 4,4′,4″-tri-(tert-butyl)-2,2′:6′,2″-terpyridine, bpy is 2,2′-bipyridine, and adpc2− is 4,4′-azo-diphenylcyanamide dianion and trans,trans-[{Ru(tpy)(pc)}2(μ-adpc)] where pc is 2-pyrazine-carboxylato were prepared and characterized by cyclic voltammetry and spectroelectrochemical methods. Intervalence band properties and IR spectroelectrochemistry of the mixed-valence complexes [{Ru(tpy)(bpy)}2(μ-adpc)]3+ and trans,trans-[{Ru(tpy)(pc)}2(μ-adpc)]+ are consistent with delocalized and valence-trapped mixed-valence properties respectively. The reduction in mixed-valence coupling upon substituting a bipyridine ligand with 2-pyrazine carboxylato strongly suggests that hole-transfer superexchange is the dominant mechanism for metal-metal coupling in these complexes.  相似文献   

7.
In view of the wide applicability and versatility of titanium based Lewis acids in selective organic synthesis including asymmetric synthesis, we have synthesized a family of mono and polyatomic titanium derivatives. The polymetallic complexes prepared are bridged by pyridimine, quinone and triazine based ligands. The synthesis of [{Ti(O-i-Pr)3(Oddbf)}2] (1), [Ti(O-i-Pr)2(Oddbf)2] (2), [{Ti(O-i-Pr)2(Oddbf)(OMent)}2] (3) (ddbfO = 2,3-dihydro-2,2-dimethyl-benzofuranoxo; MentO = (1R,2S,5R)-(−)-menthoxo), [{Ti(O-i-Pr)3(OMenpy)}2] (4), [Ti(O-i-Pr)2(OMenpy)2] (5) (MenpyO = (1S,2S,5R)-(−)-menthoxo-pyridine); [{(Ti(OR)3)2L}n] (RO = isopropoxo, (1R,2S,5R)-(−)-menthoxo) (6-11) and [{(Ti(O-i-Pr)3)3L}n] (12) was accomplished from a Lewis acid such as Ti(O-i-Pr)4, [{Ti(O-i-Pr)3(OMent)}2] or [Ti(OMent)4] and chelating ligands (ddbfOH = 2,3-dihydro-2,2-dimethyl-benzofuranol; MenpyOH = (1R,2S,5R)-(−)-5-methyl-2-isopropyl-1-(2′-pyridinyl)cyclohexan-1-ol; LH2 = 4,6-dihydroxy-2,5-diphenyl-pyrimidine, 2,4-dihydroxy-5,6-dimethyl-pyrimidine, 5,8-dihydroxy-1,4-napthoquinone, 2,5-dihydroxy-1,4-benzoquinone and LH3 = cyanuric acid) that provide a rigid framework for the metal centre. The molecular structure of 5 has been determined by single crystal X-ray diffraction studies.  相似文献   

8.
The hydrothermal reaction of MoO3, Na3VO4, 2,2′:6′,2″-terpyridine (terpy) and H2O in the mole ratio 1.53:1.00:1.30:1460 at pH 3 yields red crystals of [{VO(terpy)}MoO4] (1) in 55% yield. The structure of 1 is a one-dimensional chain of {VO(terpy)}2+ units bridged in the characteristic O,O′-mode by {MoO4}2− tetrahedra. Crystal data: C15H11N3O5MoV, orthorhombic, P212121, a=26.145(1) Å, b=6.7607(4) Å, c=9.2496(5) Å, V=1634.9(2) Å3, Z=2, Dcalc=1.869 g cm−3; structure solution and refinement converged at R1=0.0335 and wR2=0.0735.  相似文献   

9.
A new class of asymmetric N-capped (dianionic/trianionic) tripodal proligands [Hx(Ln)] (x = 2, n = 1-6; x = 3, n = 7, 8) which possess pendant arms with N2OS, N2S2 or NOS2 donor groups and with different chelate ring sizes {5,5,5} or {5,6,5} has been prepared. Treatment of these ligands with [WO2Cl2(dme)] (dme = 1,2-dimethoxyethane) in the presence of base (triethylamine or KOH) leads to the formation of cis-dioxotungsten(VI) complexes of the types [WO2(Ln)] (n = 1-6) and K[WO2(Ln)] (n = 7, 8). Reaction of these tetradentate ligands with [MoO2(acac)2] (acac = acetylacetonate) gives the corresponding Mo(VI) analogues [MoO2(Ln)] (n = 1-6) and K[MoO2(Ln)] (n = 7, 8). Moreover, a new five coordinate dioxomolybdenum(VI) complex with an NS2 tridentate ligand [MoO2(L9)] has been synthesised using similar procedure. All these compounds have been spectroscopically characterised and the molecular structures of [MoO2(Ln)] (n = 2, 6) and [WO2(L6)] have been established by X-ray diffraction analysis. The electrochemistry and the catalytic activity for oxidation of allylic and benzylic alcohols of these dioxo complexes have also been investigated.  相似文献   

10.
Hydrothermal reactions were used in the preparation of a series of bimetallic organic-inorganic hybrid materials of the M(II)/VxOy/organonitrogen ligand class. Compound 1, [{Cu2(bpa)2(C2O4)}2V4O12]·H2O, is molecular, while [{Cu(terpy)}2V6O17] (2), [Cu2(bpyrm)V4O12] (4) and [{Cu(phen)(H2O)2}VOF4(H2O)]·2H2O (5) are two-dimensional, three-dimensional and one-dimensional, respectively (bpa = 2,2′-bipyridylamine; terpy = 2,2′:6,2″-terpyridine; bpyrm = 2,2′-bipyrimidine; phen = 1,10-phenanthroline). In contrast to the 2-D structure of 2, the Ni(II) analogue [{Ni(terpy)}2V4O12]·2H2O (3) is one-dimensional. The {V4O12}4− cluster is a building block of structures 1, 3, and 4 while 2 is constructed from {V6O17}4− rings.  相似文献   

11.
The reaction between [PtII(Ox)2]2− and an appropriate oxidant resulted in the formation of the dimeric unbridged platinum complex [{PtIII(Ox)2 }2]2− where (Ox) is oxalate. This complex was moderately stable under ambient conditions and was studied via a variety of NMR and spectrophotometric techniques. Reaction of the [{PtIII(Ox)2}2]2− complex with [PtII(Ox)2]2− in the presence of H+ lead to the formation of a series of longer platinum oligomers with non-integral oxidation states, culminating in the formation of partially oxidized platinum polymers of general formula [{Pt(Ox)2}n]n. The concentration of H+ was an important factor leading to higher oligomers and the approximate number of protons associated with each oligomer was determined. The analogous [{PtIII(Mal)2}2]2− complex, where (Mal) is the malonate anion, was also synthesized and studied but was shown to be significantly less stable.  相似文献   

12.
The hydrothermal reactions of MoO3, As2O5, Cu(CH3CO2)2 · H2O and an appropriate organonitrogen ligand in the presence of HF as mineralizer yield a series of bimetallic oxides of the Cu/Mo/O/As system. The compounds [{Cu2(4,7-phen)(4,7-phenH)2}Mo12AsO40] · 2.66H2O (1 · 2.66H2O) and [{Cu3(qtpyr)2}Mo12AsO40] · 0.4H2O (2 · 0.4H2O) (qtpyr = 2,4′:5′, 3″:4″,2?-quaterpyridine) are two-dimensional phases constructed from Keggin clusters linked through binuclear {Cu2(4,7-phen)(4,7-Hphen)2}2+ units in metal organic networks in 2. In contrast, the structure of [{Cu2(2,4′-Hbpy)4}Mo18As2O62] · 2H2O (3 · 2H2O) is one-dimensional, consisting of Dawson clusters linked through binuclear {Cu2(Hbpy)4}6+ subunits. In the case of the compounds [{Cu(5,5′-dimethyl-2,2′-bpy)}2Mo2O4F2(AsO4)2] (4) and [{Cu(phen)}2Mo2O4F2(AsO4)2] (5), the fluoride mineralizer has been incorporated into the structure to give one-dimensional phases constructed from oxyfluoride {Mo2O4F2(AsO4)2}2−clusters bridged through {Cu(organonitrogen)}2+ units.  相似文献   

13.
The present paper describes a new tripodal ligand containing imidazole and pyridine arms and its first cis-[RuIII(L)(Cl)2]ClO4 complex (1). The crystal structure of 1 shows RuIII in a distorted octahedral geometry, in which two chloride ions, cis-positioned to each other, are coordinated besides the four nitrogen atoms from the tetradentate ligand L. The cyclic voltammogram of 1 exhibits three redox processes at −67, +73 and +200 mV versus SCE, which are attributed to the RuIII/RuII couple in the cis-[RuIII(L)(Cl)2]+, cis-[RuII(L)(H2O)(Cl)]+ and cis-[RuII(L)(H2O)2]2+, respectively. After chemical reduction (Zn(Hg) or EuII) only the cis-[RuII(L)(H2O)2]2+ species is observed in the cyclic voltammetry. Complex 1 absorbs at 470 nm (ε=1.4×103 mol−1 L cm−1), 335 nm (ε=7.9×103 mol−1 L cm−1), 301 nm (ε=6.7×103 mol−1 L cm−1) and 264 nm (ε=9.9×103 mol−1 L cm−1), in water solution (CF3COOH, 0.01 mol L−1, μ=0.1 mol L−1 with CF3COONa). Spectroelectrochemical experiments show a decrease of the bands at 335 and 301 nm, which are attributed to LMCT transitions from the chloride to the RuIII center and the appearance of a broad band at 402 nm ascribed to MLCT transition from the RuII center to the pyridine ligand. The lability of the water ligands in the cis-[RuII(L)(H2O)2]2+ species has been investigated using the auxiliary ligand pyrazine. Reactions in the presence of stoichiometric and excess of pyrazine yield the same species, cis-[RuII(L)(H2O)(pz)]2+, which exhibits a reversible redox process at 493 mV versus SCE and absorbs at 438 nm (ε=5.1×103 mol−1 L cm−1) and 394 nm (ε=4.2×103 mol−1 L cm−1). Experiments performed with a large excess of pyrazine gave a specific rate constant k1=(2.8±0.5)×10−2 M−1 s−1, at 25 °C, in CF3COOH, 0.01 mol L−1, μ=0.1 mol L−1 (with CF3COONa).  相似文献   

14.
Interaction of [Cp*RuCl(μ-Cl)]2 with 2,2′-bipyridine (2,2′-bipy) in the presence of Na[PF6] gave a chloride bridging dinuclear complex [{Cp*Ru(2,2′-bipy)}2(μ-Cl)][PF6] (1). In the crystal structure, the cation [{Cp*Ru(2,2′-bipy)}2(μ-Cl)]+ contains a bent Ru-Cl-Ru linkage with an angle of 141.87(12)°. The tris(μ-hydroxo)diruthenium complex [{(η6-p-cymene)Ru}2(μ-OH)3][BF4] in acetone solution was treated by 4,4′-bipyridine (4,4′-bipy) to give a hydroxo-bridged tetranuclear complex [{(η6-p-cymene)Ru}2(μ-OH)2(μ-4,4′-bipy)]2[BF4]4 (2). Complex 2 consists of four (η6-p-cymene)Ru moieties connected by two 4,4′-bipy and four hydroxo-bridging groups, forming a novel metallomacrocycle with alternating hydroxyl and 4,4′-bipy bridges between the ruthenium atoms. Spectroscopic properties along with electrochemistry of two organoruthenium (II) complexes 1 and 2 are reported.  相似文献   

15.
Treatment of [Ti(OPri)2Cl2] with K(tpip) (tpip = [N(PPh2O)2]) followed by chlorination with HCl afforded cis-[Ti(tpip)2Cl]2 (1). Reduction of 1 with Na/Hg in THF gave [Ti(tpip)3] (2), which could also be prepared from [TiCl3(THF)3] and K(tpip). Recrystallization of [V(O)(tpip)2] (3) from CH2Cl2-Et2O in air afforded trinuclear [{V(O)}3(μ-tpip)3(μ-O)3] (4). Treatment of [Cr(NBut)2Cl2] and [Cr(NBut)Cl3(dme)] (dme = 1,2-dimethoxyethane) with [Ag(tpip)]4 led to isolation of [Cr(tpip)3] (6) and [Cr(NBut)(tpip)2Cl] (7), respectively. The Ti- and V-tpip complexes are capable of catalyzing oxidation of sulfides with tert-butyl hydroperoxide and H2O2. The crystal structures of 1, 2, and 4 have been determined.  相似文献   

16.
Four new dinuclear Mn(III) compounds have been synthesised: [{Mn(bpy)(H2O)}2(μ-4-ClC6H4COO)2(μ-O)}](ClO4)2 (1), [{Mn(EtOH)(phen)}2(μ-O)(μ-4-ClC6H4COO)2](ClO4)2 (2), [{Mn(bpy)(EtOH)}(μ-4-BrC6H4COO)2(μ-O){Mn(bpy)(ClO4)](ClO4) (3) and [{Mn(H2O)(phen)}2(μ-4-BrC6H4COO)2(μ-O)](ClO4)2 (4). The crystal structures of 2 and 3 are evidence for the tendency of the ethanol and the perchlorate to act as ligands. Due to the coordination of these groups, the environment of the manganese ions is elongated in the monodentate ligand direction, and this distortion is more important when this ligand is the perchlorate. The magnetic properties of the four compounds have been analysed: compounds 1, 3 and 4 show antiferromagnetic behaviour, with J = −6.33 cm−1 for 1, J = −6.76 cm−1 for 3 and J = −3.08 cm−1 for 4 (H = −JS1·S2), while compound 2 shows a very weak ferromagnetic coupling. For this compound, at low temperature the most important effect on the χMT data is the zero-field splitting of the ion, and the best fit was obtained with |DMn| = 2.38 cm−1 and |EMn| = 0.22 cm−1.  相似文献   

17.
New complexes of formulae [Cu(HL2)(H2O)(NO3)](NO3) (1), [{Cu(L1)(tfa)}2] (2), [{Cu(L1)}2(pz)](ClO4)2 (3) and {[{Cu(L1)}2(dca)](ClO4)}n (4), where HL1 = pyridine-2-carbaldehyde thiosemicarbazone, HL2 = pyridine-2-carbaldehyde 4N-methylthiosemicarbazone, Htfa = trifluoroacetic acid (CF3COOH), pz = pyrazine (C4H4N2) and dca = dicyanamide [N(CN)2], have been synthesized and characterized. The crystal structures of these compounds are built up of monomers (1), dinuclear entities with the metal centers bridged through the non-thiosemicarbazone coligand (2 and 3) and 1D chains of dimers (4). In all the cases, square-pyramidal copper(II) ions are present, except for the square-planar ones in 3. Magnetic measurements show antiferromagnetic couplings in 2, 3 and 4. The susceptibility data were fitted by the Bleaney-Bowers’ equation for copper(II) dimers derived from H = -2JS1S2 being the obtained J/k values −4.8, −4.3 and −5.1 K for compounds 2-4, respectively. The magnetic susceptibility of the already known [{Cu(HL1)(tfa)}2](tfa)2 compound has been also measured for the first time. The J/k value is -0.3 K, lower than that in 2. The nuclease activity of 3 and 4 has been analyzed.  相似文献   

18.
The hydrothermal reaction of MoO3, [Cu(CH3CO2)2] · H2O, 2,2:6,2″-terpyridine (terpy), H2O3AsC6H5, H2O and H2SO4 yields aqua colored crystals of [{Cu(terpy)}2Mo12O34(O3AsC6H5)4] · 2.25H2O (1 · 2.25H2O). The two-dimensional structure of 1 is constructed from {Mo12O34(O3AsC6H5)4}4− clusters linked through {Cu(terpy)}2+ subunits. Each Cu(II) site exhibits {CuN3O2} coordination geometry and links two adjacent clusters. In turn, each cluster is associated with four Cu(II) sites through {MoO · Cu} interactions.  相似文献   

19.
Protonation of produces the well-characterized polymolybdates, but at concentrations below 10−3 M the dominant species is monomeric molybdic acid, H2MoO4. It is likely to be the species adsorbed on manganese oxide, a process thought to control levels in the ocean, because of the strong proton dependence of adsorption. The molecular structure of H2MoO4 is elusive, since it occurs only in dilute solutions. Using 244 nm laser excitation, near resonance with O → Mo charge-transfer electronic transitions of H2MoO4, we have detected a 919 cm−1 Raman band assignable to νsMoO. Using DFT, we have computed geometries and vibrational modes for the various structures consistent with the H2MoO4 formula. We tested the computations on a series of Mo(VI) oxo complexes with known vibrational frequencies, at several levels of theory. Best agreement with experimental values, at reasonable computational cost, was obtained with the B3LYP functional, employing a LANL2DZ ECP basis set for Mo and the 6-311+G(2df,p) basis set for O and H. Among the possible H2MoO4 structures only those based on the MoO3 unit, with one, two or three coordinated water molecules, gave a scaled frequency for νsMoO that was within two standard deviations of 919 cm−1. Best agreement was obtained for MoO3(H2O)3. The MoO2 and MoO structures gave frequencies that were too high. The Mo(OH)6 structure could be excluded, because its vibrational frequencies shift down strongly upon H/D exchange, whereas the 919 cm−1H2MoO4 band shifts up 1 cm−1 in D2O.  相似文献   

20.
Aerial recrystallization of the mononuclear molybdenum(V) complex {HB(Me2pz)3}MoO(OC6H4-o-S) produced the novel binuclear Mo(VI) complex [{HB(Me2pz)3}MoO2(OC6H4- o-S)]2 which contains a disulfide bond. The dimer crystallizes as the dioxane solvate in the space group C2/c with cell parameters a=23.46(2), b=11.100(4), c=21.571(8) Å, β=104.23(4)°, Z=4. Final Rw=0.062 (2236 reflections with Fo>3σ(Fo), 301 variable parameters). The dimer contains two crystallographically identical distorted octahedral MoO22+ centers. One face of each octahedron is occupied by two oxo ligands and a phenolate oxygen atom; the opposite face is occupied by three nitrogens of the HB(Me2pz)3 ligand. The two Mo(VI) centers of the dimers are linked by a disulfide bond formed upon oxidation of the 2-mercaptophenolate ligand of the original molybdenum(V) compound.  相似文献   

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