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1.
Bis(tetraphenylantimony) 1,2-diphenylethanedione dioximate toluene solvate Ph4SbONC(Ph)C(Ph)NOSbPh4 · 2 PhCH3 (I) and tetraphenylantimony 2-hydroxy-1,2-diphenyl(ethanone oximate Ph4SbONC(Ph)CH(Ph)OH (II) have been synthesized by the reaction of pentaphenylantimony with 1,2-diphenylethane dioxime and 2-hydroxy-1,2-diphenylethanone oxime in toluene. A molecule of compound I is centrosymmetric with an inversion center at the midpoint of the C-C bond in the ethane moiety. A crystal of compound II contains two types of crystallographically independent molecules A and B. Antimony atoms in compounds I and II have a distorted tetragonal bipyramidal surrounding: equatorial CSbC and axial CSbO angles are 114.95(10)°–126.82(11)° and 173.24(9)° (I), 117.2(2)°–122.9(2)° and 178.15(18)° (IIA), and 112.3(2)°–127.7(2)° and 175.09(18)° (IIB), respectively. The Sb-C and Sb-O bond lengths are 2.106(3)–2.182(3) and 2.1344(17) ÅI), 2.118(5)–2.4199(5) and 2.153(4)Å(IIA), and 2.106(5)–2.200(5) and 2.120(4) Å (IIB), respectively. A molecule of compounds I, IIA, and IIB has been found to contain Sb...N intramolecular contacts (2.838(3), 2.867(5), and 2.889(5)Å, respectively). Molecules of compounds IIA and IIB contain O-H...N hydrogen bonds (H...N, 1.91(9) and 2.06(8) Å, respectively).  相似文献   

2.
A series of dipeptide substituted nickel complexes with the general formula, [Ni(P(Ph)(2)N(NNA-amino acid/ester)(2))(2)](BF(4))(2), have been synthesized and characterized (P(2)N(2) = 1,5-diaza-3,7-diphosphacyclooctane, and the dipeptide consists of the non-natural amino acid, 3-(4-aminophenyl)propionic acid (NNA), coupled to amino acid/esters = glutamic acid, alanine, lysine, and aspartic acid). Each of these complexes is an active electrocatalyst for H(2) production. The effects of the outer-coordination sphere on the catalytic activity for the production of H(2) were investigated; specifically, the impact of sterics, the ability of the side chain or backbone to protonate and the pK(a) values of the amino acid side chains were studied by varying the amino acids in the dipeptide. The catalytic rates of the different dipeptide substituted nickel complexes varied by over an order of magnitude. The amino acid derivatives display the fastest rates, while esterification of the terminal carboxylic acids and side chains resulted in a decrease in the catalytic rate by 50-70%, implicating a significant role of protonated sites in the outer-coordination sphere on catalytic activity. For both the amino acid and ester derivatives, the complexes with the largest substituents display the fastest rates, indicating that catalytic activity is not hindered by steric bulk. These studies demonstrate the significant contribution that the outer-coordination sphere can have in tuning the catalytic activity of small molecule hydrogenase mimics.  相似文献   

3.
4.
Three structurally different metallasiloxanes were formed from reactions between in situ generated suspensions of Ph2Si(OH)2/BuLi (1∶2) in tetrahydrofuran (THF) with, metal dichlorides MgCl2·2THF, CrCl2, or CoCl2 followed by toluene/Py (Py=pyridine) work-up. The X-ray structures are reported for: [Mg{O(Ph2SiO)2}2]-μ-(LiPy)-μ-{(LiPy)3(OH)(Cl)] (1) incorporating two six-membered magnesiasiloxane rings and an MgLi3O3Cl cubane fragment, [{O(Ph2SiO)2}Co{O(Ph2SiO)3}-μ-(LiPy2)2] (2) with both six-and eight-membered cobaltasiloxane rings and [Cr{O(Ph2SiO)2}2-μ-(LiPy2)2] (3) with two six-membered chromiasiloxane rings. Structure assembly in these cases is apparently dictated by the metal dichloride. The compound [{O(Ph2SiO)2}Mg{O(Ph2SiO)3}-μ-(CoClPy)2]·Py (4) is formed from [{O(Ph2SiO)2}Mg{O(Ph2SiO)3}-μ-(LiPy2)2] and CoCl2 (1∶2).  相似文献   

5.
The reaction of the ketophosphine ligand Ph2PCH2C(O)Ph (P~O) with [PtCl2(NCMe)2] and carbon monoxide in THF in the presence of an excess of zinc afforded the 70 electron pentanuclear cluster [Pt5(CO)(μ-CO)5(P~O)4] (1). Reaction of the palladium(0) complex [Pd2(dba)3] CHCl3 (dba = dibenzylideneacetone) with Ph2PCH2C(O)R [R = Ph or C5H4Fe(C5H5)] under SO2 led to the pentapalladium cluster compounds [Pd53-SO2)2 (μ-SO2)2 {Ph2PCH2C(O)R}5] (2a,R = Ph;2b,R = C5H4Fe(C5H5)), Cluster (1) reacts with 2,6-xylyl isocyanide, CNC6H3Me2-2,6 to give a red cluster of formula [Pt5(μ-CNC6H3Me2-2, 6)3 (CNC6H3Me2-2, 6)5 (P~O)2] (3) and a green complex (4). The corresponding complexes (6) and (7) were also obtained by using PPh3 instead of P~O. Clusters (2a) and (2b) react with [NEt3Bz] Cl to give[NEt3Bz][Pd3(μ-SO2)2 (μ-Cl){Ph2PCH2C(O)R}3](8a,R = Ph;8b,R = C5H4Fe(C5H5)). The molecular structures of (1) and (3) were determined by single-crystal X-ray diffraction analyses.  相似文献   

6.
The diiron ynamine complex [Fe2(CO)7{-C(Ph)C(NEt2)}] (1) reacts with the diphenylbuta-1, 4-diyne, PhCC-CCPh, in refluxing hexane to yield three isomer complexes [Fe2(CO)6{C(Ph)C(NEt2)C(Ph)C(C2Ph}] (2a), [Fe2(CO)6{C(Ph)C(NEt2)C(C2Ph)C(Ph)}] (2b), and [Fe2(CO)6{NEt2)C(Ph)C(C2)C(Ph)}] (2c) All three compounds were identified by their1H NMR spectra. Compounds2a and2c were characterized by single crystal X-ray diffraction analyses. Crystal data: for2a: space group = P21/n,a = 17.873(1) Å, = 18.388(6) Å,c = 9.429(3) Å = 91.99(3)°,Z = 4.3751 reflections,R = 0.044; for2c: space group = P21/n,a = 40.58(2) å,b = 12.101(9) Å,c = 12.551(5) Å, = 94.29(7)°,Z = 8.4723 reflection,R = 0.076. Complexes2a and2b result from a [2 + 2] cycloaddition between one of the CC triple bonds of the diyne ligand and the FeC carbene bond, whereas2c results from insertion of one of the CC group into the bridging carbene. Addition of [Fe2(CO)9] on2a gave two major products, the tripledecker [Fe3(CO)8{C(Ph)C(NEt2)C(C2Ph)}], (3 and a tetrairon cluster [Fe4(CO)11{C(Ph)C(NEt2)C(Ph)C(C2Ph)}] (4). Both compounds were characterized by single crystal diffraction analyses. Crystal data: for3: space group = P21/n,a = 12.039(3) Å,b = 18.046(3) å,c = 15.270(2) Å, = 90.11(2)°,Z = 4, 1430 reflections,R = 0.067; for4 space group = C2/c,a = 18.633(3) Å,b = 21.467(1)_Å,c = 20.742(2) Å, = 115.03(8)°,Z = 8.992 reflections, R = 0.076. Complex4 is based on a spiked triangular cluster with the alkynyl triple bond attached in 3-parallel mode on the triangular grouping.  相似文献   

7.
Abstract

Reaction of [Ph2P(E)NP(E)Ph2]? (E = S or Se) with a series of late transition-metal dimers, in thf or MeOH, leads to facile bridge cleavage and formation of new mononuclear compounds.  相似文献   

8.
Tetrapalladium clusters containing dppa or dppa and dppm bridging ligands were prepared by condensation of dinuclear units. Reaction of [Pd2Cl2(-dppa)2] with [Cu(PPh3)]PF6 (generated in situ in THF) yielded [Pd4(-Cl)2(-dppa)4] (PF6)2 (4) in a virtually quantitative yield but [Pd4(-Cl)2(-dppm)2(-dppa)2] (PF6)2 (6) was best prepared in CH2Cl2 from [Pd2Cl2(-dppm)2] and [Pd2(MeCN)2(-dppa)2](PF6)2 (2). The structure of 6·2(CH3)2CO·2H2O was determined by X-ray diffraction. It consists of a planar, centrosymmetric 10-membered ring structure. The four bridging diphosphine ligands are of two types: two dppa ligands support the Pd Pd bonds [2.6055(4) Å], whereas the two dppm ligands bridge between two palladium atoms separated by 3.722(4) Å, which are also bridged by a chloride ligand.  相似文献   

9.
《Polyhedron》1986,5(9):1487-1488
Crystals of the complex Ni(NCS)2 · 2Ph3P are triclinic with a = 7.939(4) Å, b = 10.457(5) Å, c = 11.474(5) Å, α = 111.08(3)°, β = 74.56(3)° and γ = 92.25(3)°. X-ray data for 2692 independent observed reflections were collected and the structure determined by Fourier methods and refined to R = 0.038. The nickel geometry is square planar with the triphenylphosphine ligands occupying trans positions. A feature of the structure is the large value (173.3°) for the NiNC angles.  相似文献   

10.
11.
The amine PhCH2CH2NH2 undergoes dimetallation by [Ph3Sb(NMe2)2] (1) under mild conditions to give the first structurally authenticated example of an organo-Sb(V) imido complex, [Ph3Sb(μ-NCH2CH2Ph)]2 (2).  相似文献   

12.
Russian Chemical Bulletin - Gold complexes [Ph3PR]+[Au(CN)2I2-trans]?, where R = Et (1), CH2Ph (2), Ph (3), were synthesized by the reaction of potassium dicyanodiiodoaurate with...  相似文献   

13.
Tris(2-(trimethylsilyl)phenyl)phosphine, P(o-TMSC6H4)3, was synthesised and characterised in solution and in the solid state. The large steric bulk prevents most reactions of the phosphorus donor and makes the compound air stable both in the solid state as well as in solution. This shielded phosphine can still undergo three reactions, namely protonation, oxidation to the phosphine oxide under harsh conditions and complexation to AuI, thus forming a complex with linear coordination. Unexpectedly, complexation was unsuccessful with a range of other metal cations. Neither PdII, PtII, ZnII nor HgII reacted and even the remaining coinage metal cations CuI and AgI could not be coordinated. Both the parent molecule as well as the reaction products were structurally characterised by single crystal X-ray diffraction, and the conformational change of geometry required to accommodate the additional atoms was analysed in detail. Apart from chemical oxidation with H2O2, P(o-TMSC6H4)3 displays reversible electrochemical oxidation with a potential not unlike the one of sterically unencumbered phosphines for which the oxidation is usually not reversible. P(o-TMSC6H4)3 can thus be considered a model compound for the investigation of the electronic properties of sterically unencumbered phosphines.  相似文献   

14.
The reaction of triorganotin(IV) compound Ph2LSnCl (1), (L = 2,6-(t-BuOCH2)2C6H3), with (Bu3Sn)2O resulted to the isolation of Ph2LSn(μ-OH)Bu3SnCl (2), in which a monomeric triorganotin(IV) hydroxide Ph2LSnOH intermolecularly coordinates Bu3SnCl moiety. Compound 2 was characterized by combination of 1H, 13C and 119Sn NMR spectroscopy, ESI/MS, elemental analysis and X-ray diffraction.  相似文献   

15.
Reaction of the heterobinuclear complex (CO)4Ru(μ-PPh2)Co(CO)3 with Ph2PCH2PPh2 (dppm) affords the dppm chelate (dppm)(CO)2Ru(μ-PPh2)Co(CO)3 (1) and the dppm bridged molecule (CO)3Ru(μ-PPh2)(μ-dppm)Co(CO)2 (2) both of which have been characterised by X-ray diffraction: 1 is the first binuclear RuCo complex containing a chelating dppm ligand and 2 the first heterobinuclear μ-dppm (RuCo) compound.  相似文献   

16.
17.
The synthesis and characterization of novel cis-1,2-disilylenylethene [cis-LSi{C(Ph)=C(H)}SiL] (2; L=PhC(NtBu)(2)) and a singlet delocalized biradicaloid [LSi(μ(2)-C(2)Ph(2))(2)SiL] (3) are described. Compound 2 was prepared by the reaction of [{PhC(NtBu)(2)}Si:](2) (1) with one equivalent of PhC[triple chemical bond]CH in toluene. Compound 3 was synthesized by the reaction of 1 with two equivalents of PhC[triple chemical bond]CPh in toluene. The results suggest that the reaction proceeds through an [LSi{C(Ph)==C(Ph)}SiL] intermediate, which then reacts with another molecule of PhC[triple chemical bond]CPh to form 3. Compounds 2 and 3 have been characterized by X-ray crystallography and NMR spectroscopy. X-ray crystallography and DFT calculations of 3 show that the singlet biradicals are stabilized by the amidinate ligand and the delocalization within the "Si(μ(2)-C(2)Ph(2))(2)Si" six-membered ring.  相似文献   

18.
The complex Ru3(CO)6[P(Ph)C(Ph)C(Ph)](μ-PPh2)2 has been obtained by treating (μ-H)Ru3(CO)7(μ-PPh2)3 with C2Ph2 in aliphatic hydrocarbons and its structure has been determined by an X-ray diffraction study. The alkyne inserts into a RuP bond and there is reductive elimination of benzene, formed by coupling of a phenyl group of the μ-PPh2 ligand with the cluster μ-hydride.  相似文献   

19.
<正> M=664.21, onthorhombic, Pcab, a=10.434(3), b=19 .528(5), c=28.305 (5)A, V=5767.3A3, Dx=1.530 gcm-3, Z=8, λ(MoKα)=0.7107A. Final R=0.083, Rw= 0.078 for 2138 observed reflections. The complex(Fe2(CO)6(PhC2Ph)2(CO)) was structurally characterized. The Fe-Fe bond length is 2.537(2)A.  相似文献   

20.
The complexes [WI2(CO)(NCMe)(η2)-RC2R)2] (R = Me and Ph) react in CH2Cl2 with an excess of carbon monoxide to give initially the acetonitrile substituted products [WI2(CO)22-RC2R) 2]. For R= Me, the complex [WI2(CO)22- MeC2Me)2] (1) was isolated and its structure determined by X-ray crystallography. However, for R = Ph, dimerisation occurs to give the iodide-bridged compound [W(μ-I)I(CO)(η2-PhC2Ph)2]2 (2) with loss of carbon monoxide. These reactions are reversible as 1 and 2 react with acetonitrile to give [WI2(CO)(NCMe)(η2-RC2R)2]. The 13C NMR spectra of I and 2 indicate that the two alkyne ligands donate a total of six electrons to the tungsten in these complexes.  相似文献   

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