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1.
A tetranuclear gold cluster has been synthesized by the reaction of [Au(PPh3)NO3] with the closo carborane diphosphine 1,2-(PPh2)2-1,2-C2B10H10 in THF, and characterized by elemental analysis, FT-IR, 1H and 13C?NMR spectroscopy and X-ray structure determination. The cluster crystallizes in the triclinic Pī, a?=?15.118(8)?Å, b?=?16.057(9)?Å, c?=?24.284(13)?Å, α?=?80.822(9)°, β?=?79.624(8)°, γ?=?81.938(8)°, Z?=?2, R 1?=?0.0626, wR 2?=?0.1894. A single crystal structure determination showed that four gold atoms form a tetrahedral framework. Among these four gold atoms, two were chelated by two nido carborane diphosphine [7,8-(PPh2)2-7,8-C2B9H10]? anions coming from the degradation of the initial closo ligand 1,2-(PPh2)2-1,2-C2B10H10, while the other two were ligated to two PPh3 groups. The luminescence of this cluster was also investigated in dichloromethane solution at room temperature.  相似文献   

2.
The cross-coupling reaction of 9-I-3-(π-C5H5)-3,1,2-CoC2B9H10 with organozinc compounds catalyzed by palladium complexes was used to synthesize the first representative ofB-phenyl-substituted carboranes, 9-C6H5-3-(π-C5H5)-3,1,2-CoC2B9H10. Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No: 6, pp. 1253–1254, June, 1998.  相似文献   

3.
A convenient synthesis of arachno-6,9-C2B8H14, based on the reduction of nido-5,6-C2B8H12 with sodium tetrahydroborate, is reported. Electrophilic halogenation of the former carborane produced a series of 1-X-6,9-C2B8H13 (X = Cl, Br and I) derivatives whose constitution was established on the basis of their 1H and 11B NMR spectra.  相似文献   

4.
The reaction of the [(η-9-SMe2-7,8-C2B9H10)IrBr2]2 complex with Tl[Tl(η-7,8-C2B9H11)] afforded the iridacarborane compound (η-9-SMe2-7,8-C2B9H10)Ir(η-7,8-C2B9H11). The cationic complex [Cp*Ir(η-9-SMe2-7,8-C2B9H10)]+PF6 (5 · PF6, Cp* is pentamethylcyclopentadienyl) was synthesized by the reaction of [Cp*IrCl2]2 with Na[9-SMe2-7,8-C2B9H10]. The structures of (η-9-SMe2-7,8-C2B9H10)Ir(η-cod) (cod is 1,5-cyclooctadiene) and 5 · PF6 were established by X-ray diffraction. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 1, pp. 81–84, January, 2006.  相似文献   

5.
Abstract

Structure of 3-ammonio derivative of nido-carborane 3-NH3-7,8-C2B9H11 was determined by single crystal X-ray diffraction. The isomeric 10-ammonio derivative 10-NH3-7,8-C2B9H11 was prepared by the treatment of the corresponding ethylnitrilium derivative 10-EtC≡N-7,8-C2B9H11 with hydrazine hydrate in acetonitrile.  相似文献   

6.
The tetranion ligand η7-C2B10H124− has been observed for the first time in 1 , which was obtained from the reaction of o-C2B10H12 with excess K metal followed by treatment with UCl4. As shown in the picture (without K cations and coordinated THF molecules), 1 is a centrosymmetric dimer with a bent sandwich structure.  相似文献   

7.
Heating of 1,1,3-(PPh3)3-1-H-1,2,4-RuC2B8H9 with 2-(hydroxymethyl)bicyclo[2.2.1]hepta-2,5-diene in arene solvents (benzene, toluene, or mesitylene) unexpectedly afforded the ruthenium arene complexes 1-(η6-arene)-3-(C7H9CH2O)-isonido-1,2,4-RuC2B8H9 containing the nortricyclene fragment in the carborane ligand.  相似文献   

8.
The character of electron density distribution in the C2B3 open face, the influence of the SMe2 group on the character of electron density distribution, and the nature of the sodium—anion interaction were studied based on the data of high-resolution X-ray diffraction study of crystals of the sodium salt of charge compensated nido-carborane [9-SMe2-7,8-C2B9H10] and quantum-chemical calculations for the Na...H—B bonded dimer, the isolated [9-SMe2-7,8-C2B9H10] anion, and the [7,8-C2B9H10]2− dianion. The character of electron density distribution in the C2B3 open face is analogous to the electron distribution in the cyclopentadienyl ligand. In nido-carborane, a substantial charge redistribution takes place compared to that observed in the closo analogs. The topological analysis of the electron density distribution function demonstrated that the cation—anion interactions are determined predominantly by Na...H—B contacts. The total energy of these contacts in the { [9-SMe2-7,8-C2B9H10]Na(thf)2}2 dimer estimated from X-ray diffraction data is 11.74 kcal mol−1. Dedicated to Corresponding Member of the Russian Academy of Sciences E. P. Serebryakov on the occasion of his 70th birthday. __________ Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 911–918, April, 2005.  相似文献   

9.
1,4- and 1,3-C6H4(CH2-9-C2H2B9H9-7,8-nido]2 2? dianions obtained fromnido-7,8-dicarbollide ion and 1,4-bis(bromomethyl)- and 1,3-bis(bromomethyl)benzenes react with (Ph3P)3RhCl to give binuclear rhodacarboranes, 1,4- and 1,3-[3,3-(Ph3P)2-3-H-3,1,2-RhC2B9H10-4-CH2]2C6H4.  相似文献   

10.
《Polyhedron》1987,6(9):1737-1740
The AlX3-catalyzed (X = Cl, Br, and I) halogenation of arachno-4,5-C2B7H13 with anhydrous hydrogen halides produces a series of 6-substituted derivatives, 6-X-4,5-C2B7H12. The same compounds along with 6,8-I2-4,5-C2B7H11 are obtained in non-catalyzed reactions with elemental halogens. The electrophile-induced nucleophilic substitution concept (EINS) of the substitution with hydrogen halides is suggested. The constitution of all compounds isolated was unambiguously determined via 1H, 13C, 11B, and two-dimensional (2-D) 11B-11B NMR spectra.  相似文献   

11.
Reaction of cis-Pt(PMe2Ph)2Cl2 with Tl2[7-Ph-7,8-nido-C2B9H10] affords 1-Ph-3,3-(PMe2Ph)2-3,1,2-PtC2B9H10, mild thermolysis (55°C) of which yields 1-Ph-3,3-(PMe2Ph)2-3,1,11-PtC2B9H10 and 11-Ph-3,3-(PMe2Ph)2-3,1,11-PtC2B9H10. Both of the latter compounds are produced by the microwave irradiation of a mixture of cis-Pt(PMe2Ph)2Cl2 and [HNMe3][7-Ph-7,8-nido-C2B9H11]. When cis-Pt(PMe2Ph)2Cl2 is allowed to react with Tl2[7,8-Ph2-7,8-nido-C2B9H9] at room temperature the only isolable species is 1,11-Ph2-3,3-(PMe2Ph)2-3,1,11-PtC2B9H9. The generation of rearranged products with 3,1,11-PtC2B9 architectures is inconsistent with a diamond-square-diamond mechanism for the isomerisation of icosahedral heteroboranes.  相似文献   

12.
A single crystal X-ray diffraction study of a new iodine-containing cluster compound 9-(pyridine)-11-iodo-decahydro-7,8-dicarba-nido-undecaborane [9-C5H5N-11-I-7,8-C2B9H10] has been performed. Crystal data: C7H15B9NI, M = 337.39, monoclinic, space group P21/c, unit cell parameters: a = 9.348(1) Å, b = 11.159(1) Å, c = 13.442(2) Å, β = 98.13(1)°, V = 1388.1(5) Å3, Z = 4, d calc = 1.614 g/cm3, T = 295 K, F(000) = 648, μ = 2.276 mm?1. The structure was solved by a direct method and refined in the full-matrix anisotropic approximation (isotropic for hydrogen atoms) to final agreement factors R 1 = 0.0254, wR 2 = 0.0454 for 2437 I hkl ≥ 2σI from 3590 measured I hkl (an Enraf-Nonius CAD-4 diffractometer, λMoK α , graphite monochromator, θ/2θ-scanning). The molecules are joined into a supramolecular assembly by hydrogen bonds X-H?I (X = B, C).  相似文献   

13.
A technique is proposed for directed synthesis of 6,11-dichloro-9-dimethylthio-7,8-dicarba-nido-undecaborane [6,11-Cl2-9-SMe2-7,8-C2B9H9]. Single-crystal X-ray diffraction is used to identify the molecular and crystal structure of the compound.  相似文献   

14.
Closo-carborane anions are prominent, whereas the cations of the same are less abundant in the literature. As these ions have similar size and are weakly coordinating, the ionic liquids of these two ions could have important applications in many areas of chemistry. In view of limited number of polyhedral carborane cations available, we revisited the rearrangement of dicarboranyl methyl cation (7-CH2 7,9-nido-C2B9H10+) using ab initio molecular dynamics calculations with metadynamics. Our simulations confirmed the concerted mechanism of the rearrangement. We believe this work will resume the interest in its synthesis and carborane cations in general.  相似文献   

15.
Closo-1-Sn-2,3-[Si(CH3)3]2-2,3-C2B4H4 (1) reacts with 1,10-phenanthroline to form the complex 1-(C12H8N2)Sn-2, 3-[Si(CH3)3]2-2,3-C2B4H4. When crystals of this complex were grown slowly from benzene, a crystalline modification (2) was obtained in which the unit cell consisted of four identical molecules of the base-stannacarborane and six benzene molecules of solvation. When the complex was sublimed, a second crystalline modification (3) was obtained whose unit cell consisted of two crystaliographically different molecules (3-1 and3-2). In all three forms the tin was not symmetrically bonded to the carborane but was slipped toward the boron side of the C2B3 face, and the phenanthroline molecules were oriented opposite to the cage carbons so that the plane of the base and the carborane faces gave acute dihedral angles. However, the three forms showed a great deal of variation in the extent of slippage and the magnitudes of the base-carborane dihedral angles. Since these distortions are common structural features of base-group 14-carborane and cyclopentadienyl systems, MNDO-SCF molecular orbital calculations were carried out on the model compounds 1-(C12H8N2)Sn-2,3-C2B4H6, 1-[C10H8N2)Sn-2, 3-C2B9H11, and [(C10H8N2)-SnC5(CH3)5]+ to determine what factors dictate the structures of these complexes. The results showed that competing bonding interactions give rise to a very broad minimum in energy as a function of slippage and base orientation. Small energy variations, such as those produced by crystal packing forces, could produce large structural changes. Complex2 crystallizes in the monoclinic space group P21/n witha=11.096 (9) Å,b=26.51(2) Å,c=11.729 (7) Å,=107.43 (6) ,U=3291 (4) Å3, andZ=4. Full-matrix least-squares analysis converged atR=0.044 andR w=0.055. Complex3 crystallizes in the triclinic space group P¯1 witha=10.251 (3) Å,b= 13.845(9) Å;c=19.168 (9) Å,=71.12 (5) ,=89.29 (3) ,=84.62 (4) ,U=2562 (2) Å3, andZ=4. The structure refined atR=0.079 andR w=0.125.  相似文献   

16.
《Polyhedron》1999,18(8-9):1279-1283
Some new o-carborane derivatives of stoichiometry 1,2-(SR)2-1,2-C2B10H10 [SR=S2NC7H4, S2CNEt2] have been synthesised by reaction of 1,2-Li2-1,2-C2B10H10 with the corresponding disulfide derivatives RSSR (RSSR=(C7H4NS2)2, 2,2′-dithiobis(benzothiazole); (Et2NCS2)2, tetraethylthiuram disulfide) in molar ratio 1:2. The reaction of 1-Li-2-SitBuMe2-1,2-C2B10H10 with RSSR (RSSR=(C5H4NS)2, 2,2′-dithiodipyridine; (C7H4NS2)2) in molar ratio 1:1 has afforded the new mixed di-substituted compounds 1-SR-2-SitBuMe2-1,2-C2B10H10 (SR=SNC5H4; S2NC7H4). The reaction of 1-SNC5H4-2-SitBuMe2-1,2-C2B10H10 with NBu4F in THF in molar ratio 1:2 has afforded the mono-substituted derivative 1-SNC5H4-1,2-C2B10H11, whereas the treatment of 1,2-(C7H4NS2)2-1,2-C2B10H10 with NBu4F in THF in molar ratio 1:5 has led to the partially degraded derivative NBu4[7,8-(S2NC7H4)2-7,8-C2B9H10]. The crystal structure of 1-SNC5H4-1,2-C2B10H11 has been determined by X-ray diffraction.  相似文献   

17.
Herein, we describe the synthesis of a carborane-supported octanuclear palladacycle complex, Pd8(o-C2B10H10CS2CH3)4Cl4(CH3CN)4 (complex 1 ), with B(3)–H activations on o-carborane ligand. The substitution reaction of 1 has been explored, and three of its substituted complexes Pd8(o-C2B10H10CS2CH3)4Cl4(L)4 (L = tBuNC, 2 ; L = C5H5N, 3 ; L = C4H8S, 4 ) have been synthesized. The m- and p-carborane disubstituted ligands m- and p-C2B10H10(CS2CH3)2 (ligands 5 and 6 ) as well as their B—H activated carborane complexes [m-C2B10H9(CS2CH3)2PdCl] ( 7 ) and [p-C2B10H8(CS2CH3)2][PdCl(tBuNC)]2 ( 8 ) have also been synthesized by the similar method. All of these complexes have been characterized, including X-ray single crystal diffraction, NMR spectroscopy, IR spectroscopy and elemental analysis methods.   相似文献   

18.
Regioselective deuteration of 1-X-C2B10H12 (X = 2, 7) cage systems with C6D6/AlCl3 is correlated to ab initio calculational results on a [C2B10H13]+ intermediate. Full geometry optimizations of pertinent [C2B10H13]+ isomers, derived from each of the two 1-X-C2B10H12 carborane isomers, result in cage geometries not unlike the (nearly) icosahedral starting carborane. Each isomer contains a BH2 group having an acute H-B-H angle, long B–H bonds, and a very short H · · · H distance, hinting that the pertinent boron shares the electrons of a hydrogen molecule σ pair. It is suggested that the structural differences between the BH2 group of [C2B10H13]+ and the CH2 group of the benzenium ion, [C6H7]+ (the intermediate strongly intimated upon protonation of benzene), can be explained, in part, by (a) the availability of the π-ring electrons for bonding to the (extra) proton in the latter and (b) the unavailability of π electrons from the carborane. Thus, the C2B10H12 cage is most probably very reluctant to give up a cage electron pair in order to assist in bonding to an (externally bound) proton. Instead, it is more probable that “hydridic” B–H sigma electrons could very well play the important role in providing bonding to the attacking proton. © 1998 John Wiley & Sons, Inc. Heteroatom Chem 9:95–102, 1998  相似文献   

19.
The action of SMe2 on the ten-vertex nido-ruthenaborane [6-(η6-C6Me6)RuB9Hl3] ( 1 ) provides a high-yield route to the unsubstituted isocloso-ruthenaborane [1-(η6-C6Me6)RuB9H9] (2). The benzene analogue [1-(η6-C6Me6)RuB9H9] is prepared similarly. By contrast, reaction of (1) with PhNH2 gives a variety of B-phenylamino isocloso derivatives, including orange crystals of [1-(η6-C6Me6)-2-(PhNH)-isocloso-1-RuB 9 H8] ( 3 ), red-orange [1-(η6-C6Me6)-2,3-(PhNH)2-isocloso-1-RuB9H7] ( 4 ) and dark-red [1-(η6-C6Me6)-5,6,7-(PhNH)3-isocloso-1-RuB9H6] ( 5 ). Detailed 1H and 11B nmr properties of these various compounds are described. The structure of ( 3 ) has been established by a single-crystal X-ray diffraction study of the solvate [1-(η6-C6Me6)-2-(PhNH)-isocloso-1-RuB9H8] · 1/2 CH2Cl2; the crystals were monoclinic, space group C2/c, with a = 1895.1(3), b = 1556.6(3), c = 1716.4(3) pm, β = 104.37(1)° and z = 8.  相似文献   

20.
Visible light irradiation of the benzene complex [(η-1-ButNH-1,7,9-C3B8H10)Fe(η-C6H6)]+ in the presence of the charge-compensated carborane anions [9-L-7,8-C2B9H10] (L = SMe2, NMe3) affords ferracarboranes (η-1-ButNH-1,7,9-C3B8H10)Fe(η-9-L-7,8-C2B9H10). Their structures were established by X-ray diffraction analysis.  相似文献   

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