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1.
The thermal reactions of Ru3(CO)12 with RCOCH=CHPh (R=Me, p-MeC6H4) in hydrocarbon solvents lead to the formation of a series of complexes, several of which have been isolated as individual compounds by chromatography. The dinuclear complex Ru2(-H)(CO)6(-MeCOCH=CPh) and the tetranuclear complex Ru4(-H)(-CO)(CO)7(p-MeC 6H4 COCH=CPh)(-p-MeC6H4COCH=CPh)(4-p-MeC6H3COCH=CHPh) are characterized by an X-ray structural study. The structures of other reaction products are discussed on the basis of spectral data. The reactions are accompanied by reduction of the starting enones to the corresponding unsaturated ketones.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 7, pp. 1285–1293, July, 1993.  相似文献   

2.
The reactions of sulfur-bridged clusters, [Mo3( 3-S)(-S)3(-dtp)(dtp)3(CH3CN)] (1) in acetonitrile or [Mo3( 3-S)(-S)3(Hnta)3]2– (2) in pure water, with zinc or cadmium metal result in the formation of three novel molybdenum-zinc or molybdenum-cadmium mixed-metal clusters, [Zn{( 3-S)4Mo3(-dtp)(dtp)3(CH3CN)}2] (3), [Cd{( 3-S)4Mo3(-dtp)(dtp)3(CH3CN)}2] (4), and [Cd{( 3-S)4Mo3(Hnta)3}2]4– (5), respectively. The X-ray crystal structures of 1·H2O(1), 3, 4, and [Co(H2O)6]2 5·22H2O (5) were determined, and the existence of the sandwich cubane-type cores Mo3S4MS4Mo8+ 3 cores (M=Zn, Cd) in 3, 4, and 5 verified. By the change of the ligands, the peak positions at the longest wavelength in the electronic spectra are distinctly different from each other between 4 (856 nm) and 6 (1235 nm). The electronic structures of 3, 4, and 5 have been calculated by Discrete Variational (DV)-X method.  相似文献   

3.
The reactions of cluster (-H)Os3(CO)10(-OH) with ethyl and isopropyl esters ofl-oxyproline were studied. In the presence of Me3NO intermediate complex (-H)Os3(CO)9(-OH)L (L — isopropyl ester ofl-oxyproline) is formed, which slowly converts to the more stable cluster (-H)Os3(CO)9 . Cluster complexes containing chelate-bridging heterocycles were also obtained by heating (-H)Os3(CO)10(-OH) with esters ofl-oxyproline. In both cases, only one of the possible diastereomeric complexes (-H)Os3(CO)9 (R = Et, Pri) is formed, which indicates that the reactions are stereospecific. Based on analysis of Dreiding's models, an attempt to determine the absolute configuration of the obtained clusters was made.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 10, pp. 2021–2025, October, 1995.  相似文献   

4.
A series of novel chiral complexes with ,1and ,2 coordination of organic ligands were prepared by reactions of Os3(CO)11(MeCN) and (-H)Os3(CO)10(-OH) withL--serine ethyl ester and ethanolamine. The diastereomeric cluster complexes with serine ligands were separated by crystallization or chromatography. The structures of the compounds obtained were confirmed by1H NMR and IR spectroscopy, mass-spectrometry, elemental analysis, and X-ray diffraction analysis.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 3, pp. 525–530, March, 1994.  相似文献   

5.
Schemes of redox transformations were proposed for osmium carbonylhydride clusters: trinuclear (-H)Os3(-CR = CHR')(CO)1 0 (R = R' = H, Ph; R = H, R' = Ph), (-H)2Os3(3-L)(CO)9 (L = C = CHPh, CHCPh), tetranuclear CpMnOs3 (-CH = CHPh)(-H)(-CO)(CO)1 1, and trinuclear Os3(3-C = CHPh)(CO)9. Two-electron reduction of the trinuclear clusters results in elimination of the unsaturated ligand with preservation of the metal framework.  相似文献   

6.
The reaction of Os3(CO)10(NCMe)[Si(OMe)3](-H),1, with PMe2Ph yielded the new complex Os3(CO)10(PMe2Ph)[Si(OMe)3](-H),2 by substitution of the MeCn ligand with the phosphine ligand. When heated to 125°C compound2 was decarbonylated and transformed into the new unsaturated cluster complex Os3(CO)8[-PMe2(C6H4)][Si(OMe)3](-H)2,3 in 54% yield. Compound3 was characterized by a single crystal X-ray diffraction analysis, osmium bonds. The phenyl ring of the phosphine ligand has undergoneortho-metallation by a neighboring metal atom. A terminally coordinated Si(OMe)3 ligand is coordinated to the third osmium atom. The cluster is unsaturated by the amount of 2 electrons, and there is an open coordination site on the siloxyl substituted osmium atom that is partially filled by a weak interaction with one of the -bonds of theortho-metalled phenyl ring. Complex3 reacts with CO at 1 atm to reform compound2 in 85% yield in 5 h at 40°C. Crystal Data: for3: space group = P21/n,a = 9.911(2) Å,b = 18.451(6) Å,c = 14.872(2) Å, = 95.64(2)°,Z = 4, 1994 reflections,R = 0.028.  相似文献   

7.
The Os3(-H)2(CO)7(-C6H4){3-Ph2PCH2P(C6H4)Ph} complex, which was isolated from the products of thermolysis of Os3(CO)10(-dppm) (dppm is Ph2PCH2PPh2) in toluene, was characterized by X-ray diffraction analysis. Protonation of the resulting complex with trifluoroacetic acid afforded the cationic complex [Os3(-H)3(CO)7(-C6H4){3-Ph2PCH2P(C6H4)Ph}]+.  相似文献   

8.
Starting with the trinuclear clusters, M3(CO)12 (where M=Os or Ru), Os3(CO)11(NCCH3), Os3(CO)10(NCCH3)2, and (-H)Os3(-OR)(CO)10 (where R=H or Ph), and polyfunctional organic compounds containing vinyl or allyl groups, a number of cluster monomeric complexes have been synthesized containing ligands with an uncoordinated C=C bond,viz.: (-H)Os3(-4-Vpy)(CO)10, (-H)Os3(-O2CCH=CH2)(CO)10, (-H)Os3(-OCNHCH2CH=CH2)(CO)10, and (-H)M3(-SCH2CH=CH2)(CO)10. The (-H)Os3(-4-Vpy)(PPh3)(CO)9 complex was investigated by X-ray diffraction analysis.For part 30, seeRuss. Chem. Bull., 1993,42, 1016.Vpy is the vinylpyridine ligand.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 7, pp. 1293–1298, July, 1993.  相似文献   

9.
Carbonyl exchange of Fe3(3-S)2(CO)9 wioth1,1-bis(diphenylphosphino)ferrocene (dppf) in refluxing THF gives a cluster ligand with a pendant phosphine moiety, Fe3(3-S)2(CO)8 (gn1-Ph2PlC5H4)Fe(C5H4)P4 MePh2)]1 ,4. Addition of 1 to AuCl(SMe2) gives ClAu(-dppf) Fe4(3-S)2(CO)8,8 (45%). Spectroscopic evidence is also obtained for (OC)8 (3-S)2Fe3(-dppf) Os3(CO)11,7 and PdCl2[(-dppf)Fe3(3-D)2(CO)8]2,9, from1 and Os3(CO)11(CH3CN) and PdCl2CN)2, respectively. Crystal data dor3: space group P21/n,a = 10.891(3) Å,b = 19.939(3) Å,c = 20.443(2) Å, 100.17(2)°.Z = 4, 3917 reflections,R = 0.049.  相似文献   

10.
Triosmium cluster Os3(-H)(CO)10(--2-CCC Me2OMe) (1) was obtained by treating OS3(-H)(-Cl)(CO)10 with LiCCCMe2OMe. The reaction of cluster1 with HBF4 · Et2O at –60 °C leads to the cationic complex [Os3(-H)(CO)10(-,,2-C=C=C Me2)]+BF4 (2) with an allenylidene ligand. Thes1H and13C NMR spectra of complex2 reveal the temperature dependence caused by migration of hydrocarbon and carbonyl ligands. Thermodynamic parameters were obtained for be exchange process of the allenylidene ligand.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 12, pp, 2990–2992, December, 1996.  相似文献   

11.
Reaction of the pentanuclear cluster [Os5C(CO)14(PPh2py)] in CH2Cl2 with 1.2 equivalents of Pd(MeCN)2Cl2 led to the high-yield synthesis of the new osmium–palladium carbonyl cluster [Os5PdC(CO)14(-Cl)Cl(-PPh2py)] 1. Cluster 1 is thermally unstable and converts slowly in refluxing CHCl3 to [{Os4C(CO)10(-Cl)(-PPh2py)}(4-Pd){Os4C(CO)12(-Cl)}] 2 and [{Os4 (5-C)(CO)12(-Cl)}2(-Pd2Cl2)] 3 in 4% and 67% yield, respectively. Reaction of 1 with iodine gave [Os5PdC(CO)14(-Cl)I(-PPh2py)] 4 and [{Os4(5-C)(CO)12(-I)}2(-Pd2I2)] 5 in moderate yields. All complexes have been characterized by spectroscopic and single-crystal X-ray diffraction analysis.  相似文献   

12.
The reaction of the anion [Os4(-H)3(CO)12] with one equivalent of Au(PPh3)Cl affords [Os4Au(-H)3(CO)12(PPh3)] (1), the structure of which was established by single crystal X-ray analysis. Its electrochemical behavior and catalytic properties are also reported. This bimetallic cluster catalyses the oxidative carbonylation of aniline to give methyl phenylcarbamate in methanol with good conversion and selectivity compared to the homometallic [Os4(-H)4(CO)12] cluster.  相似文献   

13.
The complexes Pt(nb)3-n(P-iPr3)n (n=1, 2, nb=bicyclo[2.2.1]hept-2-ene), prepared in situ from Pt(nb)3, are useful reagents for addition of Pt(P-iPr3)n fragments to saturated triruthenium clusters. The complexes Ru3Pt(CO)11(P-iPr3)2 (1), Ru3Pt(-H)(3-3-MeCCHCMe)(CO)9(P-iPr3) (2), Ru3Pt(3-2-PhCCPh)(CO)10(P-iPr3) (3), Ru3Pt(-H)(4-N)(CO)10(P-iPr3) (4) and Ru3Pt(-H)(4-2-NO)(CO)10(P-iPr3) (5) have been prepared in this fashion. All complexes have been characterized spectroscopically and by single crystal X-ray determinations. Clusters 1–3 all have 60 cluster valence electrons (CVE) but exhibit differing metal skeletal geometries. Cluster 1 exhibits a planar-rhomboidal metal skeleton with 5 metal–metal bonds and with minor disorder in the metal atoms. Cluster 2 has a distorted tetrahedral metal arrangement, while cluster 3 has a butterfly framework (butterfly angle=118.93(2)°). Clusters 4 and 5 posseses 62 CVE and spiked triangular metal frameworks. Cluster 4 contains a 4-nitrido ligand, while cluster 5 has a highly unusual 4-2-nitrosyl ligand with a very long nitrosyl N–O distance of 1.366(5) Å.  相似文献   

14.
The synthesis, structural properties, and fluxional behaviour of platinum-triosmium and platinum-triruthenium clusters derived from Os3Pt(-H)2 (CO)10(PR3) and Ru3Pt(-H)(-CC t Bu)(CO)9 (dppe) and related species are described.  相似文献   

15.
The complexes Co3(CO)9( 3-X) (X=S, Se) can be reduced to the corresponding anionic species [Co3(CO)9( 3-X)], which react with allyl bromide to give Co3(CO)7(- 3-C3H5)( 3-X) (X=S, Se). These are the first two cobalt complexes containing the bridging - 3-allyl ligand. The structure of the selenium complex was determined by X-ray crystallography. Crystal data for Co3(CO)7(- 3-C3H5)( 3-Se) are as follows: space group P21/c, a=9.051(2) Å, b=8.102(2) Å, c=21.27(4) Å, =93.82(3)°, Z=4, and R=0.0565 for 2491 observed reflections.  相似文献   

16.
Two new tetraosmium carbonyl clusters [Os4(-H)4(CO)11{ 1-NC5H4(N=N)C6H5}] (1) and [Os4(-H)4(CO)10{ 2-NC5H4(N=N)C6H5}] (2) were synthesized from the reaction of [Os4(-H)4(CO)12] with two equivalent of 2-phenylazopyridine ligand in dichloromethane at ambient temperature using trimethylamine-N-oxide as the decarbonylation reagent. Subsequent chromatographic purification led to the isolation of 1and 2as stable orange and blue solids in respectively 25 and 13% yields. Complex 1converted to 2in a 25% yield in refluxing chloroform. Treating a solution of [Os4(-H)4(CO)12] in dichloromethane with two equivalent of 3-phenylazopyridine led to the formation of another two new clusters [Os4(-H)4(CO)11{ 1-NC5H4(N=N)C6H5}] (3) and [Os4(-H)4(CO)10(NMe3){ 1-NC5H4(N=N)C6H5}] (4), which could be isolated as yellow solids in 34% and 21% yields respectively. Thermolysis of 3or 4in refluxing n-hexane gives [Os4(-H)3(CO)10{- 3-NC5H3(N=N)C6H5}] (5) in 24 and 33% yields respectively. Their electronic absorption properties and electrochemical behavior are also reported.  相似文献   

17.
Thermolysis of Ru3 cluster complexes containing diarylallenylidene and dppm ligands results in phenyl migration from dppm to the allenylidene with concomitant H migration and C–C bond formation reactions to give several complexes each containing a cluster-bound indenyl group. In initially-formed complexes 3 or 6, the diarylindenyl group is attached to the cluster by two localized C=C double bonds of one aryl group and a benzylic interaction of the remaining C=C double bond combined with one carbon of the five-membered ring. Thermal rearrangement of these complexes with concomitant loss of CO gives 4 or 7, respectively, in which the indenyl group is more symmetrically bonded to the cluster by two C=C double bonds from the six-membered ring and an 5-interaction from the five-membered ring, both of the indenyl ligand. The X-ray crystal structure determination of Ru3( 3-PPhCH2PPh2)( 3-C9H5Ph2)(CO)5 (4) is reported. A related reaction was found between Ru3(-H)(-CCCPh2)(-OH)(CO)9 and Co2(CO)8, which afforded CoRu3( 3-C9H6Ph) (-CO)4(CO)5 (8), also structurally characterized, in which the indenyl group caps the Ru3 face of a CoRu3 tetrahedron; unusually, there are four CO groups bridging the three Co–Ru bonds.  相似文献   

18.
The reaction of the dinuclear complex Co2(-OOCCMe3)2(2-OOCCMe3)2bpy2 (1) with the polymer [Co(OH) n (OOCCMe3)2–n ] x afforded the unsymmetrical dinuclear complex bpyCo2(2-O,2-OOCCMe3)(2-O,O"-OOCCMe3)2(2-OOCCMe3) (2). The reaction of 2,2"-dipyridylamine with [Co(OH) n (OOCCMe3)2–n ] x gave rise to the analogous complex [(C5H4N)2NH]Co2(2-O,2-OOCCMe3)(-OOCCMe3)2(2-OOCCMe3) (3). The reaction of complex 1 with Ni4(3-OH)2(-OOCCMe3)4(OOCCMe3)2(MeCN)2[2-o-C6H4(NH2)(NHPh)]2 (4) produced an isostructural heterometallic analog of complex 2 with composition bpyM2(2-O,2-OOCCMe3)(2-O,O"-OOCCMe3)2(2-OOCCMe3) (5) (M = Co, Ni; Co : Ni = 1 : 1) and the dinuclear heterometallic complex bpy(HOOCCMe3)M(-OH2)(-OOCCMe3)2M(OOCCMe3)2[o-C6H4(NH2)(NHPh)] (6) (M = Co, Ni; Co : Ni = 0.15 : 1.85). Compounds 2 and 5 exhibit ferromagnetic spin-spin exchange interactions.  相似文献   

19.
The reactions between Ru5( 5-C2PPh2)(gm-PPh2(CO)13 (1) and cyclopentadienes afforded the hexanuclear clusters Ru6( 6-C)( 3-PPh2)2(CO)10(-C5 R 5) [R 5 = H5 (2), H4Me (3), Me5 (4)] which contain an encapsulated carbide and a face-capping 3-CH group, formed by cleavage of CC and CP bonds of the C2PPh2 moiety in1. In the reaction with cyclopentadiene, the unusual ligand C13H12O, formed by combination of C2, CO and two molecules of C5H6 (or one molecule of dicyclopentadien), was characterized in the complex Ru5( 4-PPh) ( 4-C13H12O)(-PPh2(CO)11(-C5H5) (5). In the reaction with pentamethylcyclopentadiene, the vinylidene complex Ru5( 3-CCHPh)( 4-PPh)( 4-PPh) (-PPh2)(CO)9(-C5Me5) (6) was also formed.  相似文献   

20.
Addition of aqueous HCl to Ru5( 3-C=CH2)(-SMe)2(-PPh2)2(CO)10 afforded the structurally characterized carbyne complex Ru5( 3-SMe)( 3-CMe)(-Cl)(-SMe)(-PPh2)2(CO)9, formed by addition of H to the vinylidene ligand; a Cl atom bridges an Ru–Ru bond.  相似文献   

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