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1.
《Polyhedron》1987,6(10):1823-1831
Reaction of phenyldichlorophosphine, 2b, with N,N′-dimethyl-N,N′-bis(trimethylsilyl)urea, 1, leads to a symmetrical diphosphorylation product, 3b. A mechanism for the formation of 3b, on the basis of 31P NMR-data, is proposed. 3b reacts with oxalic acid bis(trimethylsilyl)ester, 5, with intramolecular P—P-coupling and formation of the λ3P–λ4P-mixed-valence diphosphorus compound, 1,4-dimethyl-2,3-diphenyl-1,4,3,2- diazadiphospholidin-5-one-2-oxide, 6, which has been oxidized by means of tetrachloroorthobenzoquinone (TOB), 7, to the λ4P–λ5P-compound, 8. The structures of 3b, 6 and 8 have been elucidated by 1H- and 31P-NMR-spectroscopy; single crystal X-ray diffraction studies of 3b and of 6 have been conducted. The identity of both compounds has been confirmed. In the acyclic diphosphorus compound, 3b, a remarkably short non-bonding PP distance of 280.6 pm has been found while the PP bond length in the cyclic compound 6 is of the usual order of magnitude (221.1 and 221.8 pm, respectively).  相似文献   

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4.
Treatment of [Mo(CO)3(η-C7H7)][BF4] with either sodium amalgam or sodium naphthalide results in a reductive dimerisation to the ditropyl complex “Mo(CO)326,η′6-C14H14). The results of an X-ray crystallographic study confirm that the hydrogen atoms of the linking carbon atoms are both endo with respect to molybdenum. The reaction of Mo(CO)6 with ditropyl, C14H14, leads to all three possible isomers of “Mo(CO)326,η′6-C14-H14). The structure of each is assigned by its 1H NMR spectrum.  相似文献   

5.
The reaction of Cr(CO)3(NH3)3 with diphenylacetylene affords as a main product the complex with Cr(CO)3 moiety bound to a phenyl ring of diphenylacetylene; Cr(CO)36-PhC2Ph) (I). Complex I readily reacts with Co2(CO)8 yielding the mixed metal complex Cr(CO)362-PhC2Ph)Co2(CO)6 (II). The reaction proceeds with retention of the Cr(CO)36-arene) structural unit, the Co2(CO)6 fragment being bound to the triple bond of diphenylacetylene in μ22-mode. The structure of II was determined by single crystal X-ray analysis. The complex crystallizes in space group P21/c with unit cell parameters a 8.666(3) Å, b 18.046(3) Å, c 15.155(6) Å. β 97.57(3)°, V 2349(2) Å3, Z = 4, Dx = 1.70 g/cm3. The structure was solved by direct methods and refined by full-matrix least-squares technique to R and Rw values of 0.032 and 0.034, respectively, for 3655 observed reflections. The data obtained show that two structural units in II, Cr(CO)36-Ph-) and Co2(CO)622-CC), are distorted due to steric repulsion between these metal carbonyl moieties. The Cr(CO)3 fragment is shifted from the centre of the phenyl ring and slightly tilted with respect to the phenyl ring plane. The Co2C2 tetrahedron in the Co2(CO)622-CC) moiety is distorted in such a way that two of the four CoiCj bonds are elongated.  相似文献   

6.
First Suzuki-Miyaura coupling reactions applied to (η(5)-chloro-cyclohexadienyl)Mn(CO)3 complexes are described and lead to the syntheses of (η(5)-aryl-cyclohexadienyl)Mn(CO)3 and of cationic (η(6)-arene)Mn(CO)3 complexes after rearomatization. The structures of two of the new complexes have been investigated by X-ray diffraction study.  相似文献   

7.
Bis(η5-indenyl)dicarbonyltitanium has been produced in 47% yield by reduction of bis(η5-indenyl)dichlorotitanium with activated aluminum in THF solution under a carbon monoxide atmosphere. Bis(η5-indenyl)dicarbonylzirconium can similarly be prepared in 45% yield by the reductive carbonylation of bis(η5-indenyl)dichlorozirconium using activated magnesium turnings. IR spectral evidence has been obtained for the corresponding hafnium analog, although it could not be isolated. Detailed syntheses for the precursors (η5-indenyl)2MCl2 (M = Ti, Zr, Hf) have been developed. Bis(η5-indenyl)dicarbonyltitanium crystallizes in the monoclinic space group C2/c with unit cell parameters a 30.435(8), b 7.357(5), c 28.279(8) Å and β 90.93(5)°. Refinement of 3530 observed reflections lead to final agreement indices of R = 0.052 and Rw = 0.049. Bis(η5-indenyl)dicarbonylzirconium crystallizes in the monoclinic space group P21/n with unit cel parameters of a 7.288(5), b 14.398(8), c 15.273(7) Å and β 89.84(5)°. Refinement of 2253 observed reflections lead to final agreement indices of R = 0.049 and R2 = 0.055.  相似文献   

8.
The [2,3]-Wittig sigmatropic rearrangement of (benzyl (E)-crotyl ether)chromium complexes is shown to give a syn stereoselection which is different from the anti selection reported for the corresponding chromium-free compounds.  相似文献   

9.
Planar chiral arenetricarbonylchromium complexes have been intensively investigated and they have been applied as valuable building blocks for asymmetric synthesis and as ligands for asymmetric catalysis. In contrast, in the field of the isoelectronic cationic [(η(6)-arene)Mn(CO)(3)](+) complexes, until these last 10 years, very few studies were published involving nonracemic planar chiral cationic complexes and their potential applications, certainly because of the difficult access to enantiopure starting material. In 2009, however, the discovery of the first resolution of such compounds opened a new area for their application in the field of organic as well as of organometallic enantioselective syntheses. We felt it important to write a review on this subject to give an up-to-date summary of the methodologies used to prepare enantiomerically pure planar chiral neutral [(η(5)-cyclohexadienyl)Mn(CO)(3)] and cationic [(η(6)-arene)Mn(CO)(3)](+) complexes as well as their potential in enantioselective synthesis.  相似文献   

10.
Stable dicarbonyl(cycloocta-1,5-diene)(η1-indenyl)iridium is formed by addition of CO to cyclooctadiene(η5-indenyl)iridium in CD2Cl2 at low temperature. On raising the temperature above 250 K, the η1 species changes quantitatively into dicarbonyl (η5-indenyl)iridium.  相似文献   

11.
Photochemical reactions of M(CO)3(5-C9H7), where M=Mn (1) or Re (2), with indene have produced 2-indene complexes M(CO)2(2-C9H8)(5-C9H7), where M=Mn (3) or Re (4). Deprotonation of complex3 witht-BuOK in THF at –60 °C gives the anion [Mn(CO)2(1-C9H7)(5-C9H7) (5), in which there occurs a rapid interchange of the Mn(CO)2(5-C9H7) group between positions 1 and 3 in the 1-indenyl ligand. The reaction of complex4 with Ph3CPF6 in CH2Cl2 at 0 °C leads to the complex [Re(CO)2(3-C9H7)(5-C9H7)PF6, whereas the similar reaction of complex3 gives only decomposition products even at –20 °C.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 7, pp. 1280–1285, July, 1993.  相似文献   

12.
The violet ruthenium complex [(η5-C5Me5)Ru(η5-C3B2Me4R1)] (2a, R1 = Me) reacts with terminal alkynes R2CCH to give yellow 4-borataborepine compounds [(η5-C5Me5)Ru{η7-(MeC)3(R1B)2(R2C2H)}] (4c, R1 = Me, R2 = Ph; 4d, R1 = Me, R2 = SiMe3; 4e, R1 = Me, R2 = H). The insertion of alkynes into the folded C3B2 heterocycle of 2a causes some steric hindrance, which yields with elimination of the distant boranediyl group the corresponding boratabenzene complexes 5 as byproducts. The analogous reactions with internal alkynes R2CCR2 proceed slowly and afford predominantly the boratabenzene complexes [(η5-C5Me5)Ru{η6-(MeC)3(MeB)(R2C)2}] (5f, R2 = Et, 5g, R2 = p-tolyl), respectively. In the latter case, three byproducts are formed: methylboronic acid and 1,2,3,4-tetra-p-tolyl-1,3-butadiene (9) due to hydrolysis of the postulated 2,3,4,5-tetra-p-tolyl-1-methylborole (10) and unexpectedly, the cationic triple-decker complex [{(η5-C5Me5)Ru}2{μ,η7-(MeC)3(MeB)2(CH)2}]Cl (11) having two separated CH groups. The new compounds were characterized by NMR, MS, and single-crystal X-ray studies of 4c, 5f, 9 and 11.  相似文献   

13.
The reaction between trans-1-bromopenta-2,4-diene and nonacarbonyldiiron in pentane yields (syn3-C5H7)Fe(CO)3Br. The spectroscopic data and chemical reactivities of this compound are reported and discussed.  相似文献   

14.
It has been shown that the reactions of tricarbonyl(η6 -2-lithiothiophene)chromium(O) with various arene carboxaldehydes yields mixtures of unequal amounts of diastereoisomers, which can be separated by flash chromatography. The structures of the products have been established by 1H NMR spectroscopy and by independent synthesis. A novel synthesis of tricarbonyl(η6-thiophene)-chromium(O) (1) is described.  相似文献   

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17.
The roe of oxidatively induced homolyhc scission a the C(sp3)-H bonds in the iron phenykychhexadienyl complexes Fe(5-6-PhC6H6)(5-C5H5) (1) depends on the spatial orientation of the Ph substitutent. In the case of the (1 endo +) radical cation this process, resulting in the cationic biphenyl complex (Fe(6 -C6H5C6H5)(5-C5H5)]+ (2 +), is fast and proceeds for several minutes. In the case of the more stable radical cation (1 exo +) the formation of 2+ is slow and takes tens minutes to complete.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 7, pp. 1698–1700, July, 1996.  相似文献   

18.
《Tetrahedron letters》1986,27(22):2479-2482
Direct diastereoselective chromium complexation of meta-methoxy benzylalcohol derivatives was achieved by the introduction of Me3,Si group, and the benzylic acetoxyl groups of the complexes were substituted with stereochemical retention to lead the key complexes to acorenone and acorenone B.  相似文献   

19.
The electron distributions and bonding in Ru3(CO)9( 3- 2, 2, 2-C6H6) and Ru3(CO)9( 3- 2, 2, 2-C60) are examined via electronic structure calculations in order to compare the nature of ligation of benzene and buckminsterfullerene to the common Ru3(CO)9 inorganic cluster. A fragment orbital approach, which is aided by the relatively high symmetry that these molecules possess, reveals important features of the electronic structures of these two systems. Reported crystal structures show that both benzene and C60 are geometrically distorted when bound to the metal cluster fragment, and our ab initio calculations indicate that the energies of these distortions are similar. The experimental Ru–Cfullerene bond lengths are shorter than the corresponding Ru–Cbenzene distances and the Ru–Ru bond lengths are longer in the fullerene-bound cluster than for the benzene-ligated cluster. Also, the carbonyl stretching frequencies are slightly higher for Ru3(CO)9( 3- 2, 2, 2-C60) than for Ru3(CO)9( 3- 2, 2, 2-C6H6). As a whole, these observations suggest that electron density is being pulled away from the metal centers and CO ligands to form stronger Ru–Cfullerene than Ru–Cbenzene bonds. Fenske-Hall molecular orbital calculations show that an important interaction is donation of electron density in the metal–metal bonds to empty orbitals of C60 and C6H6. Bonds to the metal cluster that result from this interaction are the second highest occupied orbitals of both systems. A larger amount of density is donated to C60 than to C6H6, thus accounting for the longer metal–metal bonds in the fullerene-bound cluster. The principal metal–arene bonding modes are the same in both systems, but the more band-like electronic structure of the fullerene (i.e., the greater number density of donor and acceptor orbitals in a given energy region) as compared to C6H6 permits a greater degree of electron flow and stronger bonding between the Ru3(CO)9 and C60 fragments. Of significance to the reduction chemistry of M3(CO)9( 3- 2, 2, 2-C60) molecules, the HOMO is largely localized on the metal–carbonyl fragment and the LUMO is largely localized on the C60 portion of the molecule. The localized C60 character of the LUMO is consistent with the similarity of the first two reductions of this class of molecules to the first two reductions of free C60. The set of orbitals above the LUMO shows partial delocalization (in an antibonding sense) to the metal fragment, thus accounting for the relative ease of the third reduction of this class of molecules compared to the third reduction of free C60.  相似文献   

20.
《合成通讯》2013,43(21):3695-3706
Abstract

7-Chloro-5-carbomethoxy-1,3-dihydro-2H-1,4-benzodiazepines and its nucleophilic substituted products were synthesized via η6-arenetricarbonylchromium(0) intermediates. Ring enlargement of 5-chloro-N-chloroacetylisatin with hexamine in presence of Cr(CO)6 led to the formation of 7-chloro-5-carbomethoxy-1,3-dihydro-2H-1,4-benzodiazepine in good yield with reduced reaction time. Nucleophilic substitutions on arene ring of η6-arenetricarbonylchromium(0) complexes with thiols, phenol, and primary amines were successfully carried out in decalin medium.  相似文献   

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