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1.
The kinetics of rapid CO substitution by PPh3 in Co4(CO)12 and Rh4(CO)12 have been examined by stopped-flow and low temperature FT-IR methods. In Co4(CO)12 rapid (kobs ∼ 1.8 s−1) substitution of CO occurs after a 1–15 s induction period at 28 °C in C6H5Cl solvent by a catalytic process. Addition of PPh3 to Rh4(CO)12 yields Rh4(CO)11(PPh3) according to a predominantly second order rate law k1[Rh4- (CO)12] + k2[Rh4(CO)12][PPh3] with k1 = 25 ± 11 s−1 and k2 = 2.97 ± 0.27 X 104 M−1 s−1 at 28 °C. Substitution of a second CO ligand also occurs rapidly with k1 = 0.15 ± 0.09 s−1 and k2 = 6.54 ± 0.07 X 102 M−1 s−1 at 28 °C. The reactivity of Rh4(CO)12 toward associative substitution is 104– 1011 faster than for the Co and Ir analogues, In Rh4(CO)11(PPh3) the increase in CO substitution rates over Co and Rh analogues is 102–107. The ordering of associative substitution rates Co << Rh >>> Ir in these clusters exaggerates the trend seen in mononuclear metal complexes.  相似文献   

2.
[Rh2Cl2(CO)4] reacts with the ligands L (2-pyridone, 2-thiopyridone, and the isomers 6-methyl-2-thiopyridone, 2-methylmercaptopyridine, and N-methylthiopyridone) to give initially, when L/Rh = 1, the bridged-cleaved compounds cis- [RhCl(CO)2L]. Further additions of 2-methyl- mercaptopyridine, N-methylthiopyridone, or 2-pyridone caused no further change, but 2- thiopyridone and 6-methyl-2-thiopyridone gave new cis-dicarbonyl species (L/Rh = 2) and eventually monocarbonyl species (L/Rh > 3). All these solutions are air-sensitive and air oxidation of a solution of [Rh2Cl2(CO)4] with an excess of 6-methyl-2- thiopyridone gave fac-[Rh(MeC5H3NS)3] the X-ray structure of which shows three equivalent chelating 6-methyl-2-thiopyridonato ligands.  相似文献   

3.
Rhodium(II) complexes [Rh2(μ-OAc)2(OAc)(bpy)(H2O)2]PF6 (1), [Rh2(μ-OAc)2(OAc)(phen)(H2O)2](PF6)·H2O (2), [Rh2(μ-OOCCH3)3(OOCCH3)(phen)] (3) and [Rh2(μ-O2CCH3)3(O2CCH3)(Ph2phen)] (4) (Ph2phen = 4,7-diphenyl-1,10-phenanthroline) have been synthesized and characterized by means of NMR, IR and UV-Vis spectroscopic methods. X-ray structure of complex 4·1.5(CH3COCH3) has been determined and its geometry and electronic structure has been elucidated using OPBE and B3LYP DFT methods. The compounds are active cytostatic agents against tumor cells.  相似文献   

4.
《Inorganica chimica acta》1986,116(2):125-133
Previously discussed topological models of metal cluster bonding are now extended to the treatment of anionic rhodium carbonyl clusters having structures consisting of fused polyhedra. Examples of such rhodium carbonyl clusters built from fused octahedra include the ‘biphenyl analogue’ [Rh12(CO)30]−2, the ‘face-sharing naphthalene analogue’ [Rh9- (CO)19]3−, and the ‘perinaphthene analogue’, [Rh11- (CO)23]3−. More complicated anionic rhodium carbonyl clusters treated in this paper include the [Rh13(CO)24H5−q]q anions (q = 2, 3, 4) having an Rh13 centered cuboctahedron, the [Rh14(CO)25- H4−q]q (q = 3,4) and [Rh14(CO)26]2− anions based on a centered pentacapped cube, the [Rh15- (CO)30]3− anion having an Rh15 centered 14-vertex deltahedron, the [Rh15(CO)27]3− anion having a tricapped centered 11-vertex polyhedron, the [Rh17- (CO)30]3− anion having a tetracapped centered cuboctahedron, and the [Rh22(CO)37]4− anion having a hexacapped centered cuboctahedron fused to an octahedron so that the octahedron and the cuboctahedron share a triangular face. Analyses of the bonding topologies in [Rh9(CO)19]3−, [Rh17- (CO)30]3−, and [Rh22(CO)37]4− indicate that a polyhedral network containing several fused globally delocalized polyhedral chambers will not necessarily have a multicenter core bond in the center of each such polyhedral chamber. This observation is of potential importance in extending topological models of metal cluster bonding to bulk metals.  相似文献   

5.
《Inorganica chimica acta》2006,359(11):3589-3595
Reactions between the activated cluster [Os3(CO)10(NCMe)2] and malonic acid, succinic acid and dicarboxylic acetylene, respectively, lead to the formation of the linked cluster complexes [{Os3H(CO)10}2(CO2CH2CO2)] (1), [{Os3H(CO)10}2(CO2C2H4CO2)] (2), and [{Os3H(CO)10}2(C4O4)] (3) in good yield. Cluster 3 was subsequently treated with [Co2(CO)8] and this results in the addition of a “Co2(CO)6” group giving [{Os3H(CO)10}2(C2O4){Co2(CO)6}] (4). The X-ray crystal structures are reported for 24. In each structure the two triangular triosmium units are linked by the carboxylate groups and within each complex the carboxylate groups are chelating and bridge two osmium atoms.  相似文献   

6.
Structures of rhodium(II) binuclear complexes [Rh2(OOCCH3)2(bpy)2(H2O){(CH3)2CHOH}][B(C6H5)4]2 · H2O (1), [Rh2Cl2(OOCCH3)2(bpy)2] · 2H2O (2), [Rh2Br2(OOCCH3)2(bpy)2] · 3H2O (3), and [Rh2I2(OOCCH3)2(bpy)2] (4), as well as an unprecedented wire with infinite Rh-Rh chain, {[Rh4(μ-OOCH)4(bpy)4](BF4)}n · 0.5nC4H8O2 (5), have been determined and discussed. Mass spectra of complexes [Rh2(OOCMe)2(bpy)2(H2O)2](MeCOO)2 and [Rh2(OOCMe)2(phen)2(H2O)2](MeCOO)2 have showed stability of polynuclear cations with rhodium in oxidation states in the range +1.25 to +1.75.  相似文献   

7.
《Inorganica chimica acta》1988,145(2):231-233
The photochemical oxidation reaction of W(CO)6 to [W(CO)4Cl2]2 with CCl4 was applied in the synthesis of [WCl2(CO)3(PPh3)2] and [WCl2(CO)2−- (dppe)].  相似文献   

8.
Mo(CO)4(LL) complexes, where LL = polypyridyl ligands such as 2,2′-bipyridine and 1,10-phenanthroline, undergo quasi-reversible, one-electron oxidations in methylene chloride yielding the corresponding radical cations, [Mo(CO)4(LL)]+. These electrogenerated species undergo rapid ligand substitution in the presence of acetonitrile, yielding [Mo(CO)3(LL)(CH3CN)]+; rate constants for these substitutions were measured using chronocoulometry and were found to be influenced by the steric and electronic properties of the polypyridyl ligands. [Mo(CO)3(LL)(CH3CN)]+ radical cations, which could also be generated by reversible oxidation of Mo(CO)3(LL)(CH3CN) in acetonitrile, can be irreversibly oxidized yielding [Mo(CO)3(LL)(CH3CN)2]2+ after coordination by an additional acetonitrile. Infrared spectroelectrochemical experiments indicate the radical cations undergo ligand-induced net disproportionations that follow first-order kinetics in acetonitrile, ultimately yielding the corresponding Mo(CO)4(LL) and [Mo(CO)2(LL)(CH3CN)3]2+ species. Rate constants for the net disproportionation of [Mo(CO)3(LL)(CH3CN)]+ and the carbonyl substitution reaction of [Mo(CO)3(LL)(CH3CN)2]2+ were measured. Thin-layer bulk oxidation studies also provided infrared characterization data of [Mo(CO)4(ncp)]+ (ncp = neocuproine), [Mo(CO)3(LL)(CH3CN)]+, [Mo(CO)3(LL)(CH3CN)2]2+ and [Mo(CO)2(LL)(CH3CN)3]2+ complexes.  相似文献   

9.
Trirutheniumdodecacarbonyl (Ru3(CO)12) reacts with 2-hydroxy-6-methylpyridine and with 2-hydroxy-5,6,7,8-tetrahydroquinoline in toluene to form centrosymmetric tetranuclear complexes of the type [Ru(η2, μ-L)(CO)23-L)Ru(CO)2]2, where L is the respective (N,O)-pyridonate ligand (2 and 3). The structures of these complexes, which are almost insoluble in all common solvents, could be determined by single-crystal X-ray diffraction. Reaction of Ru3(CO)12 with 2-hydroxy-4,6-diphenylpyridine in methanol includes ortho-metallation at the phenyl ring, furnishing the dinuclear complex [Ru(κ2N,C-L)(CO)2(μ-OCH3)2Ru(CO)22N,C-L)] (4), where L = (2-(6-hydroxy-4-phenylpyridin-2-yl)phenyl), according to an X-ray crystal structure determination.  相似文献   

10.
The reactions of the butterfly complex Ru4(CO)12(MeC2Ph) with several alkynes give the quasiplanar derivatives Ru4(CO)11(MeC2Ph)(Alkyne) in almost quantitative yields.The structure of Ru4(CO)11(MeC2Ph)2 has been determined by X-ray methods. Crystals are monoclinic, space group C2/c, with Z = 4 in a unit cell of dimensions a 22.383(16), b 9.048(8), c 18.268(12) Å, β = 127.25(4)°. The structure has been solved from diffractometer data by Patterson and Fourier methods and refined by full-matrix least-squares to R = 0.034 for 1420 observed reflections. The complex, having an imposed C2 symmetry, presents a tetranuclear metal cluster in which the Ru atoms are in a tetrahedrally-distorted square arrangement. Ten carbonyls are terminal and one symmetrically bridges an edge of the cluster. Each of the two alkyne ligands is σ-bonded to two Ru atoms on the opposite vertices of the cluster and π-bonded to the other two. The organometallic cluster has a Ru4C4 core in which the metal and carbon atoms occupy the vertices of a triangulated dodecahedron.  相似文献   

11.
—During 1966, clinical trials were conducted in three Canadian centres to determine the safety and efficacy of Rh0(D) immune globulin (human) in preventing isoimmunization by the Rh0(D) antigen in Rh-negative women delivering ABO-compatible Rh-positive infants.The candidates were randomly divided into control and treated groups; the treated mothers received an intramuscular injection of 300 μg. of anti-Rh0(D) within 72 hours of delivery. Follow-up antibody screening tests were conducted on the sera of all patients six to nine months post partum.Of the 175 control patients, 11 or 6.2% became actively immunized to the Rh antigen, whereas complete protection against maternal Rh immunization was observed in the 191 treated patients.  相似文献   

12.
The structures and relative energies of the As2Co2(CO)n (n = 6, 5, 4) derivatives are predicted by density functional theory to be analogous to those of the corresponding H2C2Co2(CO)n derivatives. Thus As2Co2(CO)6 is predicted to have three carbonyls on one cobalt atom eclipsed relative to the three carbonyls on the other cobalt atom. The corresponding As2Co2(CO)6 structure with a staggered rather than eclipsed arrangement of the Co(CO)3 units is a transition state rather than a genuine minimum. For As2Co2(CO)5 the structure in which an equatorial group is removed from the As2Co2(CO)6 structure and a singly bridged As2Co2(CO)4(μ-CO) structure are predicted to have essentially the same energies, within <2 kcal/mol. A higher energy As2Co2(CO)5 structure by 9 ± 2 kcal/mol is derived from the As2Co2(CO)6 structure by removal of an axial carbonyl group. The two unbridged As2Co2(CO)5 structures correspond to those observed experimentally in the photolysis of As2Co2(CO)6 in Nujol matrices at low temperatures. In such photolysis experiments the higher energy isomer is produced initially and then converted to the lower energy isomer upon annealing. A singly bridged structure was found for As2Co2(CO)4. The analogous structure was not observed in the previous work with H2C2Co2(CO)4. However, such a H2C2Co(CO)3(μ-CO) structure is found here for the acetylene complex. This singly bridged structure is predicted to lie 1.9 kcal/mol below the H2C2Co2(CO)44-1S structure by the BP86 method but 3.5 kcal/mol above the latter by the B3LYP method. In addition to the singly bridged As2Co2(CO)4 structure, the same six unbridged structures were located for As2Co2(CO)4 that were previously found for H2C2Co2(CO)6.  相似文献   

13.
Os3(CO)10(MeCN)2 reacts at room temperature in MeCN or toluene with R-Pyca2 to yield two isomers of Os3(CO)10(R-Pyca) that differ in the bonding of the R-Pyca ligand to the Os3(CO)10 unit. In all cases Os3(CO)10(R-Pyca(4e)) (isomer A; 4a: R = c-Pr, 4b: R = i-Pr, 4c: R = neo-Pent, 4d: R = t-Bu), containing a chelating 4e donating R-Pyca ligand and three OsS bonds, could be isolated. In the case of R = c-Pr and R = i-Pr Os3(CO)10(R-Pyca(6e)) (isomer B; 5a: R = c-Pr, 5b: R = i-Pr), in which only two OsS bonds are present and the R-Pyca ligand is bonded as a 6e donating ligand bridging two non-bonded Os atoms, could be isolated as a minor product.At 70 °C Os3(CO)10(R-Pyca(4e)) (4b and 4d) loses one carbonyl and the pyridine moiety of the R-Pyca ligand is ortho-metallated to form HOs3(C5H3N-2-C(H)NR)(CO)9 (6b: R = i-Pr and 6d: R = t-Bu). Under the same conditions Os3(CO)10(i-Pr-Pyca(6e)) (5b) reacts to Os2(CO)6(6e)) (7b) containing a bridging 6e donating ligands. The latter two reactions were followed with FT-IR spectroscopy in a high temperature IR cell.The structure of the complexes in solution have been studied by 1H and 1C NMR and IR spectroscopy. The stoichiometries of 4a and 5a were determined by FAB-mass spectrometry while an exact mass determination was carried out for 4a.The crystal structure of 6b has been determined. Crystal of 6b are monoclinic, space group P21/n, with a = 7.808(2),b = 17.613(3),c = 16.400(8)Å, β = 94.09(3)° and Z = 4. The structure was refined to R = 0.039. The molecule contains a triangular array of osmium atoms [Os(1)Os(2) = 2.898(2)Å, Os(1)Os(3) = 2.886(2)Åand Os(2)O(3) = 2.911(2)Å] and nine terminally bonded carbonyl ligands. The C5H3N-2-C(H)N-i-Pr ligand is chelate bonded to Os(2) with the pyridine and imine nitrogens atoms axially and equatorially coordinated respectively [Os(2)N(1) = 2.00(2)Åand Os(2)N(2) = 2.11(2)Å]. The i-Pr-Pyca ligand is ortho-metallated at C(1) and forms a four membered ring containing Os(2), Os(3), C(1) and N(1), the Os(3)C(1) distance being 2.12(2)Å. The hydride, which could not be located unequivocally from a difference Fourier map is proposed to bridge the Os(2)(3) bond on the basis of stereochemical considerations.  相似文献   

14.
Dirhodium carbonyl complex with the 3,5-bis(diphenylphosphinoethyl)pyrazolato ligand (PNNPC2), [(μ-κ22-PNNPC2)Rh2(CO)3]BF4, is prepared and its reactivity is studied as compared with the previously reported 3,5-bis(diphenylphosphinomethyl)pyrazolate (PNNP), [(μ-κ22-PNNP){Rh(CO)2}2]BF4, and 1,4-bis(diphenylphosphinomethyl)phthalazine (PNNPPh) derivatives, [(μ-κ22-PNNPPh){Rh(CO)2}2](BF4)2. The three quadridentate ligands are different in the size of the central ring and the charge; six-membered ring/neutral (PNNPC2) vs. five-membered ring/mono-negative (PNNP) vs. six-membered ring/neutral (PNNPPh). The number of the carbonyl ligands (n) in the dirhodium carbonyl complexes, [(μ-PNNP)Rh2(CO)n](BF4)x, is dependent on the dinucleating ligand: n = 2 (PNNPPh), 3 (PNNPC2) and 4 (PNNPPy). The three dirhodium carbonyl complexes serve as 4e-acceptors, and their reactivities turn out to be very similar as can be seen from formation of the analogous, unique tetranuclear μ4-acetylide ([(μ-PNNP)2{Rh(CO)}44-CC-R)](BF4)x) and μ4-dicarbide complexes ([(μ-PNNP)2{Rh(CO)}44-C2)](BF4)x).  相似文献   

15.
《Inorganica chimica acta》1986,113(2):167-172
IR spectra of crystal, solution and pseudo-gas phases (argon and nitrogen matrices) of Fe2Ru(CO)12 and of crystal and solution phases of Fe3(CO)12 were recorded. By quantitative data-handling procedures, structures and bond angles for bridging carbonyls were estimated. Fe2Ru(CO)12 in crystal has a bridging structure analogous to that of Fe3(CO)12, with two bridged carbonyls and C2v or pseudo-C2v symmetry. In solution, both samples contain the same carbonyl bridged structure of C2v symmetry,just as in pseudo- gas phase; the latter, however, contains other bridged molecules of unknown structures, too.  相似文献   

16.
The kinetic inertness of Rh(III) has facilitated investigations of the early stages of hydrolytic polymerization of [Rh(OH2)6]3+. These studies have led to the synthesis, solution characterization and determination of the X-ray crystal structure of a series of polynuclear aqua ions, which range in nuclearity from binuclear to tetranuclear. The inertness of Rh(III) has enabled the identification of three structural forms of the trinuclear aqua ion which vary in their degree of condensation as well as detailed kinetic and mechanistic studies of water exchange on the binuclear aqua ion, [Rh2(μ-OH)2(OH2)8]4+, applying both 18O isotopic labeling and 17O NMR spectroscopy. Strategies have been developed which led to the quite efficient synthesis of heteropolynuclear Rh(III)-Cr(III) aqua ions and a heterobinuclear Rh(III)-Ir(III) aqua ion. Elucidation of the composition, properties and structure of heteropolynuclear aqua ions has been possible by applying techniques that had been instrumental in the development of the chemistry of homometallic aqua ions. Kinetic and thermodynamic studies of the Rh(III)-Cr(III) aqua ions generally revealed thermodynamic and activation parameters that corresponded to those for similar processes occurring at Cr(III), as may have been expected given the greater lability of Cr(III) relative to Rh(III). Inductive effects caused by the Rh(III) centers do, however, influence reactivity as exemplified by the slower than expected rate of cleavage of [CrRh2(μ-OH)4(OH2)10]5+.  相似文献   

17.
The decaaqua-di-rhodium(II) cation has been found to be an interesting starting material in the preparation of dioxygen complexes with different N-donor ligands. Treatment of aqueous HClO4 solution of [Rh2(H2O)10]4+ with NH4OH/NH3, py and/or en results in water exchange and the formation of corresponding [Rh2II(H2O)10−m(base)n(OH)m](4−m)+ derivatives. Reaction of the latter with dioxygen afforded superoxo and/or peroxo complexes, depending on reaction conditions: [Rh2III(O2 −)(NH3)8(OH)2](ClO4)3 (1), [Rh2III(O2 −)(NH3)8(OH)(H2O)](ClO4)4 (2), [Rh2III(O2 2−)(NH3)10](ClO4)4 · 6H2O (3), [Rh2III(O2 −)(py)8(H2O)2](ClO4)5 (4), [Rh2III(O2 2−)(en)4(H2O)2](ClO4)4 (5) and [Rh2III(O2 −)(en)4(H2O)2](ClO4)5 (6). All the obtained complexes were characterized by elemental analysis, mass spectrometry, UV-Vis, IR and ESR spectroscopies and magnetic measurements.  相似文献   

18.
The reaction of cis-[Os(CO)4Me2] with Me3NO in the THF or MeCN yields the complexes fac-[Os(CO)3(L)Me2] (where L = THF or MeCN). Whereas the THF complex is unstable and only characterised spectroscopically, fac-[Os(CO)3(MeCN)Me2] has been isolated as a white solid and fully characterized by both analytical and spectroscopic methods. These complexes fac-[Os(CO)3(L)Me2] are shown to be useful intermediates. Thus, reaction with PPh3 gives fac-[Os(CO)3(PPh3)Me2] in good yield.Reactions of fac-[Os(CO)3(L)Me2] (L = CO or MeCN) with CPh3PF6 or B(C6F5)3 have been investigated. Whereas cis-[Os(CO)4Me2] showed no reaction with either CPh3PF6 or B(C6F5)3, the reaction of fac-[Os(CO)3(MeCN)Me2] with CPh3PF6 in CH2Cl2 occurred over 16 h at room temperature to give an unstable cationic product and CPh3Me. The reaction was monitored by both IR and NMR spectroscopies. When this reaction of fac-[Os(CO)3(MeCN)Me2] was carried out in the presence of a trapping ligand such as MeCN, the stable cationic product [Os(CO)3(MeCN)2Me]+ could be isolated and identified spectroscopically.  相似文献   

19.
The reaction of [HRe3(CO)12]2− with an excess of Ph3PAuCl in CH2Cl2 yields [(Ph3PAu)4Re(CO)4]+ as the main product, which crystallizes as [(Ph3PAu)4Re(CO)4]PF6 · CH2Cl2 (1 · CH2Cl2) after the addition of KPF6.The crystal structure determination reveals a trigonal bipyramidal Au4Re cluster with the Re atom in equatorial position.If [(Ph3PAu)4Re(CO)4]+ is reacted with PPh4Cl, a cation [Ph3PAu]+ is eliminated as Ph3PAuCl, and the neutral cluster [(Ph3PAu)3Re(CO)4] (2) is formed.It combines with excess [(Ph3PAu)4Re(CO)4]+ to afford the cluster cation, [(Ph3PAu)6AuRe2(CO)8]+. It crystallizes from CH2Cl2 as[(Ph3PAu)6AuRe2(CO)8]PF6 · 4CH2Cl2 (3 · 4CH2Cl2). In [(Ph3PAu)3Re(CO)4] the metal atoms are arranged in form of a lozenge while in [(Ph3PAu)6AuRe2(CO)8]+ two Au4Re trigonal bipyramids are connected by a common axial Au atom.The treatment of [(Ph3PAu)4Re(CO)4]+ with KOH and Ph3PAuCl in methanol yields the cluster cation [(Ph3PAu)6Re(CO)3]+, which crystallizes with from CH2Cl2 as [(Ph3PAu)6Re(CO)3]PF6 · CH2Cl2 (4 · CH2Cl2). The metal atoms in this cluster form a pentagonal bipyramid with the Re atom in the axial position.  相似文献   

20.
Deuterioformylation of the vinylidenic substrates 1-phenyl-1-(n-pyridyl)ethenes, in the presence of phosphine modified Rh4(CO)12 as catalyst precursor, was carried out at 100 atm of CO and D2 (1:1), 80 °C and at partial substrate conversion.The direct 2H NMR analysis of the crude reaction mixture allowed to conclude that, under these conditions, the branched alkyl rhodium intermediate is almost exclusively formed. It can β-eliminate, undergo migratory insertion or oxidative addition of deuterium in a different degree depending on the position of the nitrogen atom with respect to the olefinic double bond, accounting for the observed different chemo- and regioselectivity.  相似文献   

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