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1.
The Crystal Packings of (PPh4)2[NiCl4] · 2 MeCN and PPh4[CoCl0.6Br2.4(NCMe)] (PPh4)2[NiCl4] · 2 MeCN was obtained from the reaction of PPh4Cl and NiCl2 in acetonitrile in the presence of S2Cl2, PPh4[Cl2H] being a side product. The product of the reaction of CoS2 with S2Br2 (containing rests of S2Cl2) at 400 °C was treated with PPh4Br in acetonitrile yielding PPh4Br3 and PPh4[CoCl0.6Br2.4(NCMe)]. The crystal structures of the title compounds were determined by X‐ray diffraction. (PPh4)2[NiCl4] · 2 MeCN (space group I 4, a = 1839.3 pm, c = 1375.3 pm) has a crystal packing derived from the BiPh4[ClO4] structure type with a fourfold increased unit cell and one half of the ClO4 positions substituted by pairsof acetonitrile molecules. The crystal structure of PPh4[CoCl0.6Br2.4(NCMe)] (space group I41/a, a = 1804.7 pm, c = 3198.8 pm) is related to the AsPh4[RuNCl4] type with an eightfold increased unit cell. The [CoCl0.6Br2.4(NCMe)] ions are disordered in two orientations and some halogen positions are randomly occupied by Cl and Br atoms. Family trees of group–subgroup relations show the symmetry relations.  相似文献   

2.
Crystal Structures of [ReCl4(PhC?CPh)]2 · 2 CH2Cl2 and PPh4[ReOCl4] Single crystals of [ReCl4(PhC?CPh)]2 · 2 CH2Cl2 were obtained by chilling dilute solutions of the solvate [ReCl4(PhC?CPh)POCl3] in CH2Cl2. PPh4[ReOCl4] was formed by the reaction of the diphenyl acetylene complex [ReCl5(PhC?CPh)] with PPh4Cl · H2O in CH2Cl2 solution. [ReCl4(PhC?CPh)]2 · 2 CH2Cl2: space group P21/c, Z = 2, 2244 observed independent reflexions, R = 0.038. Lattice parameters (19°C): a = 987.2 pm; b = 1533.9 pm; c = 1193.8 pm; β = 90.17° The compound forms centrosymmetrical dimeric molecules with ReCl2Re bridges with Re? Cl distances of 241.2 and 267.6 pm. The longer Re? Cl bond is situated in trans-position to the equatorial, side-on coordinated diphenyl acetylene ligand with mean Re? C distances of 200 pm. PPh4[ReOCl4]: space group P4/n, Z = 2, 1487 observed, independent reflexions, R = 0.047. Lattice parameters (19°C): a = b = 1272.0 pm; c = 771.3 pm. The compound crystallizes in the AsPh4[RuNCl4] type; it consists of [ReOCl4]? anions and PPh4+ cations. The anions are tetragonal with C4v symmetry and bond lengths Re? O = 165.4 pm and Re? Cl = 232.6 pm; the bond angle OReCl is 106.7°.  相似文献   

3.
Adducts of Oxotetrachloro-niobate (V). Formation, Vibrational Spectra, and Crystal Structures of PPh4[NbOCl4(OH2)] and (PPh4)2[NbOCl4(O2PCl2)] · 2 CH2Cl2 Crystalline (PPh4)2[NbOCl4(O2PCl2)] · 2 CH2Cl2 was obtained by hydrolysis of PPh4[NbSCl4] in the presence of POCl3 in CH2Cl2. Experiments to obtain the same compound from PPh4Cl, POCl3, NbCl5, and H2O yielded PPh4[NbOCl4(OH2)]. I.R. spectra of both compounds are discussed. The crystal structure determinations with X-ray diffraction data in both cases show quadratic-pyramidal NbOCl4? ions to which a molecule of either H2O or a PO2Cl2? ion is attached in trans-position to the O atom. PPh4[NbOCl4(OH2)]: tetragonal, space group P4/n, a = 1 308, c = 734 pm, Z = 2, packing as in the AsPh4[RuNCl4] type; refinement down to R = 0.046 for 681 reflexions. (PPh4)2[NbOCl4(O2PCl2)] · 2 CH2Cl2: triclinic, space group P1 , a = 1172, b = 1187, c = 2105 pm, α = 88.40, β = 83.20, γ = 71.28°, Z = 2, packing similar as in (AsPh4)2[NbOCl5] · 2 CH2Cl2; refinement to R = 0.059 for 2 502 reflexions.  相似文献   

4.
The Chlorooxoarsenates(III) (PPh4)2[As4O2Cl10] · 2 CH3CN and (PPh4)2[As2OCl6] · 3 CH3CN (PPh4)2[As2Cl8] can be prepared from As2O3, SOCl2 and PPh4Cl in acetonitrile. Its oxidation with chlorine yields PPh4[AsCl6]. This was also obtained directly from arsenic, chlorine and PPh4Cl, (PPh4)2[As4O2Cl10] · 2 CH3CN being a side product; the latter was obtained with high yield from AsCl3, As2O3 and PPh4Cl in acetonitrile. By addition of PPh4Cl it was converted to (PPh4)2[As2OCl6] · 3 CH3CN. According to their X-ray crystal structure analyses, both crystallize in the triclinic space group P 1. The [As4O2Cl10]2– ion can be regarded as a centrosymmetric association product of two Cl2AsOAsCl2 molecules and two Cl ions, each Cl ion being coordinated with all four As atoms. In the [As2OCl6]2– ion the As atoms are linked via the O atom and two Cl atoms.  相似文献   

5.
The Oxochlorotantalates (PPh4)2[Ta2OCl9]2 · 2 CH2Cl2, (PPh4)2[Ta2OCl10] · 2 CH3CN, and (K-18-crown-6)4[Ta4O6Cl12] · 12 CH2Cl2 (K-18-crown-6)4[Ta4O6Cl12] · 12 CH2Cl2 was obtained from a reaction of tantalum pentachloride, K2S5 and 18-crwon-6 in dichlormethane. According to its crystal structure analysis it is tetragonal (space group I 4 2d) and contains [Ta4O6Cl12]4– ions that have an adamantane-like Ta4O6 skeleton. Each K+ ion is coordinated by the oxygen atoms of the crown ether molecule from one side and with three Cl atoms of one [Ta4O6Cl12]4– ion from the opposite side. (PPh4)2[Ta2OCl10] · 2 CH3CN was a product from PPh4Cl and TaCl5 in acetonitrile in the presence of Na2S4. Its crystals are monoclinic (space group P21/c) and contain centrosymmetric [Ta2OCl10]2– ions having a linear Ta–O–Ta grouping with short bonds (Ta–O 189 pm). TaCl5 and H2S formed a solid substance (TaSCl3) from which a small amount of (PPh4)2[Ta2OCl9]2 · 2 CH2Cl2 was obtained by the reaction with PPh4Cl in CH2Cl2. The anions in the monoclinic crystals (space group P21/n) consist of two Ta2OCl9 units which are joined by chloro bridges; each Ta2OCl9 unit has a nearly linear Ta–O–Ta group with differing bond lengths (179 and 202 pm). The oxygen in the compounds probably was introduced by traces of water in the crown ether, acetonitrile or H2S, respectively.  相似文献   

6.
Cyclic Polyselenidoarsenates(III) and Polyselenidoantimonates(III): PPh4[Se5AsSe], PPh4[AsSe6–xS x ], (PPh4)2[As2Se6] · 2 CH3CN, and (PPh4)2[Se6SbSe]2 In acetonitrile, AsCl3 and sodiumphenolate formed Cl2AsOPh which then was reacted with PPh4Se5 and finally with Na2Se to yield PPh4[Se5AsSe]. With Na2S instead of Na2Se, PPh4[AsSe6–xSx] was obtained; the sulfur contents increased with increasing reaction temperature and time (x = 0.21 to 1.09). With PPh4Se2 instead of PPh4Se5, (PPh4)2[1,4-As2Se6] · 2 CH3CN and PPh4[Se5AsSe] were the products. With SbCl3 instead of AsCl3, (PPh4)2[Se6SbSe]2 formed. PPh4[Se5AsSe] can also be produced from As2Se3, PPh4Br, Na2Se and selenium in acetonitrile. The crystal structure of PPh4[SeAsSe5] is isotypic with PPh4[S5AsS] (X-ray structure analysis with 2414 observed reflexions, R = 0.038). The Se5AsSe ion consists of a six-membered AsSe5 ring in chair conformation, and the As atom has an additional terminal Se atom. The compounds PPh4[AsSe6–xSx] have the same crystal structures, with sulfur atoms taking all selenium positions at random, but with a preference for the terminal position. The anion in (PPh4)2[As2Se6] · 2 CH3CN also has a six-membered ring structure in chair conformation, with two arsenic atoms in positions 1 and 4. The centrosymmetric anion in (PPh4)2[Se6SbSe]2 consists of a central Sb2Se2 ring, and a Se6 ligand is bonded in a chelating manner to each Sb atom (X-ray structure analysis with 2669 observed reflexions, R = 0.099). 77Se-NMR spectra are reported.  相似文献   

7.
Synthesis and Crystal Structures of (PPh4)2[TeS3] · 2 CH3CN and (PPh4)2[Te(S5)2] (PPh4)2[TeS3] · 2 CH3CN was obtained by the reaction of PPh4Cl, Na2S4 and Te in acetonitrile. With sulfur it reacts yielding (PPh4)2[Te(S5)2]. The crystal structures of both products were determined by X-ray diffraction. (PPh4)2[TeS3] · 2 CH3CN: triclinic, space group P1 , Z = 2, R = 0.041 for 4 629 reflexions; it contains trigonal-pyramidal [TeS3]2? ions with an average Te? S bond length of 233 pm. (PPh3)2[Te(S5)2]: monoclinic, P21/n, Z = 2, R = 0.037 for 2 341 reflexions. In the [Te(S5)2]2? ion the tellurium atom has a nearly square coordination by four S atoms. Along with the Te atoms each of the two S5 groups forms a ring with chair conformation.  相似文献   

8.
Reaction of Tin Chlorides with Polysulfides. Crystal Structures of (PPh4)2[SnCl2(S6)2], (PPh4)2[Sn4Cl4S5(S3)O], and (PPh4)2[SnCl6] · S8 · 2CH3CN . The reaction of PPh4[SnCl3] with Na2S4 in acetonitrile in the presence of small amounts of water yields (PPh4)2[Sn4Cl4S5(S3)O] and minor amounts of (PPh4)2[SnCl2(S6)2], PPh4Cl · 2S8 and (PPh4)2[SnCl6]. SnCl4 is partially reduced by (PPh4)2Sx, PPh4[SnCl3] and (PPh4)2[SnCl6] · S8 · 2CH3CN being produced. According to the X-ray crystal structure determination the [Sn4Cl4S5(S3)O]2?-ion consists of an O atom that is coordinated by four Sn atoms which in turn are liked with one another by five single S atoms and one S3 group. In the [SnCl2(S6)2]2?-ion the Sn atom is octahedrally coordinated by two Cl atoms in trans arrangement and by two chelating S6 groups. Octahedral [SnCl6]2? ions and S8 molecules in the crown conformation are present in (PPh4)4[SnCl6] · S8 · 2CH3CN.  相似文献   

9.
Diiodoacetylene Complexes of Tungsten(IV). Crystal Structure of PPh4[WCl5(C2I2)] · 0.5 CH2Cl2 Tungsten hexachloride and diiodoacetylene react in CCl4 solution forming [WCl4(I? C?C? I)]2 which has a dimer structure with chloro bridges. In CH2Cl2, it reacts with PPh4Cl yielding PPh4[WCl5(I? C?C? I)] · 0.5 CH2Cl2. In both compounds the C2I2 ligands attain a marked increase in thermal stability by their side-one coordination to the tungsten atoms. The crystal structure of the PPh4 salt was determined with X-ray diffraction data (3879 observed reflexions, R = 0.050). PPh4[WCl5(C2I2)] · 0.5 CH2Cl2 crystallizes in the space group P21/n with 8 formula units per unit cell. The lattice constants are a = 1723.0, b = 1681.2, c = 2214.6 pm and β = 94.38°. There are two crystallographically independent [WCl5(C2I2)]? ions which differ only slightly from one another. The C2I2 ligand has a staggered arrangement relative to the W? Cl groups, with C? C bond lengths of 127 pm. The infrared spectra are discussed.  相似文献   

10.
Coordination Chemistry of P-rich Phosphanes and Silylphosphanes. XVI [1] Reactions of [g2-{P–PtBu2}Pt(PPh3)2] and [g2-{P–PtBu2}Pt(dppe)] with Metal Carbonyls. Formation of [g2-{(CO)5M · PPtBu2}Pt(PPh3)2] (M = Cr, W) and [g2-{(CO)5Cr · PPtBu2}Pt(dppe)] [η2-{P–PtBu2}Pt(PPh3)2] 4 reacts with M(CO)5 · THF (M = Cr, W) by adding the M(CO)5 group to the phosphinophosphinidene ligand yielding [η2-{(CO)5Cr · PPtBu2}Pt(PPh3)2] 1 , or [η2-{(CO)5W · PPtBu2}Pt(PPh3)2] 2 , respectively. Similarly, [η2-{P–PtBu2}Pt(dppe)] 5 yields [η2-{(CO)5Cr · PPtBu2}Pt(dppe)] 3 . Compounds 1 , 2 and 3 are characterized by their 1H- and 31P-NMR spectra, for 2 and 3 also crystal structure determinations were performed. 2 crystallizes in the monoclinic space group P21/n (no. 14) with a = 1422.7(1) pm, b = 1509.3(1) pm, c = 2262.4(2) pm, β = 103.669(9)°. 3 crystallizes in the triclinic space group P1 (no. 2) with a = 1064.55(9) pm, b = 1149.9(1) pm, c = 1693.2(1) pm, α = 88.020(8)°, β = 72.524(7)°, γ = 85.850(8)°.  相似文献   

11.
The crystal structures of acetonitrile solvates of two related lithium calixarene complexes have been determined by low‐temperature single‐crystal X‐ray diffraction using synchrotron radiation. Bis(μ‐5,11,17,23‐tetra‐tert‐butyl‐26,28‐dihydroxy‐25‐methoxy‐27‐oxidocalix[4]arene)dilithium(I) acetonitrile tetrasolvate, [Li2(C45H57O4)2]·4C2H3N or [p‐tert‐butylcalix[4]arene(OMe)(OH)2(OLi)]2·4MeCN, (I), crystallizes with the complex across a centre of symmetry and with four molecules of unbound acetonitrile of crystallization per complex. Tetraacetonitrilebis(μ‐5,11,17,23‐tetra‐tert‐butyl‐26,28‐dihydroxy‐25,27‐dioxidocalix[4]arene)tetralithium(I) acetonitrile octasolvate, [Li4(C44H54O4)2(C2H3N)4]·8C2H3N or {p‐tert‐butylcalix[4]arene(OH)2(OLi)[OLi(NCMe)2]}2·8MeCN, (II), also crystallizes with the complex lying across a centre of symmetry and contains eight molecules of unbound acetonitrile per complex plus four more directly bound to two of the lithium ions, two on each ion. The cores of both complexes are partially supported by O—H...O hydrogen bonds. The methoxy methyl groups in (I) prevent the binding of any more than two Li+ ions, while the corresponding two O‐atom sites in (II) bind an extra Li+ ion each, making four in total. The calixarene cone adopts an undistorted cone conformation in (I), but an elliptical one in (II).  相似文献   

12.
Reactions of Uranium Pentabromide. Crystal Structures of PPh4[UBr6], PPh4[UBr6] · 2CCl4, (PPh4)2[UBr6] · 4CH3CN, and (PPh4)2[UO2Br4] · 2CH2Cl2 PPh4[UBr6] and PPh4[UBr6] · 2CCl4 were obtained from UBr5 · CH3CN and tetraphenylphosphonium bromide in dichloromethane, the latter being precipitated by CCl4. Their crystal structures were determined by X-ray diffraction. PPh4[UBr6]: 2101 observed reflexions, R = 0.090, space group C2/c, Z = 4, a = 2315.5, b = 695.0, c = 1805.2 pm, β = 96.38°. PPh4[UBr6] · 2CCl4: 2973 reflexions, R = 0.074, space group P21/c, Z = 4, a = 1111.5, b = 2114.2, c = 1718.7 pm, β = 95.42°. Hydrogen sulfide reduces uranium pentabromide to uranium tetrabromide. Upon evaporation, bromide is evolved from solutions of UBr5 with 1 or more then 3 mol equivalents of acetonitrile in dichlormethane yielding UBr4 · CH3CN and UBr4 · 3CH3CN, respectively. These react with PPh4Br in acetonitrile affording (PPh4)2[UBr6] · 4CH3CN, the crystal structure of which was determined: 2663 reflexions, R = 0.050, space group P21/c, Z = 2, a = 981.8, b = 2010.1, c = 1549.3 pm, β = 98.79°. By reduction of uranium pentabromide with tetraethylammonium hydrogen sulfide in dichloromethane (NEt4)2[U2Br10] was obtained; (PPh4)2[U2Br10] formed from UBr4 and PPh4Br in CH2Cl2. Both compounds are extremely sensitive towards moisture and oxygen. The crystal structure of the oxydation product of the latter compound, (PPh4)2[U02Br4]· 2 CH2Cl2, was determined: 2163 reflexions, R = 0.083, space group C2/c, Z = 4, a = 2006.3, b = 1320.6, c = 2042,5 pm, β = 98.78°. Mean values for the UBr bond lengths in the octahedral anions are 266.2 pm for UBr6-, 276.7 pm for UBr62? and 282.5 pm for UO2Br42?  相似文献   

13.
Formation of PPh4[WOCl4 · THF] and PPh4Cl · 4As4S3 from W(CO)6 and PPh4[As2SCl5] and their Crystal Structures When W(CO)6 and PPh4[As2SCl5] are irradiated with UV light in tetrahydrofurane, PPh4[WOCl4 · THF], PPh4 Cl· 4As4S3 and PPh4[Cl2H] are obtained. X-ray crystal structure determinations were performed. PPh4[WOCl4 · THF], monoclinic, space group P21/c, Z = 4, a = 1207.5(2), b = 1003.7(2), c = 2642.0(5) pm, β = 114.71(1)°, R = 0.049% for 2824 reflexions; PPh4+ and [WOCl4. THF]? ions are present, the WOCl4 group having the shape of a tetragonal Pyramid with a short W ? O bond (169 pm) and the THF molecule being weakly associated (W? O 236 pm). PPh4Cl · 4AsS3, tetragonal, I41/a, Z = 4, a = 1742.3(3), c = 1664.5(4) pm, R = 0.066% for 1350 reflexions; it consists of separate PPh4+ and Cl? ions and As4S3 molecules.  相似文献   

14.
Synthesis and Crystal Structure of (PPh4)2[Mo2(S2)2Cl8] · 2 CH3CN and its Topotactic Transformation to (PPh4)2[Mo2(S2)2Cl8] MoS2Cl3 was prepared from molybdenum and S2Cl2 at 200 °C. Its reaction with PPh4Cl in acetonitrile yielded (PPh4)2[Mo2(S2)2Cl8] · 2 CH3CN. In vacuum or upon warming, it loses the acetronitrile without degradation of the crystals. According to the X-ray crystal structure determinations both compounds, with and without acetonitrile, are triclinic. They contain the same [Cl4Mo(μ-S2)2MoCl4]2– ions, in which the Mo atoms are joined by two disulfido groups and an Mo–Mo bond. Details of the crystal packings and their topotactic transformation are given.  相似文献   

15.
Dichloro Acetylene as Complex Ligand. Crystal Structure of PPh4[WCl5(C2Cl2)] · 0.5 CCl4 Tungsten hexachloride and dichloro acetylenediethyletherate react in boiling CCl4 in presence of C2Cl4 as reducing agent forming [Et2O · WCl4(C2Cl2)]. In vacuo the complex looses ether giving the dichloro acetylene complex [WCl4(C2Cl2)]2 which is dimeric with chloro bridges. Both complexes react with tetraphenylphosphonium chloride to form PPh4[WCl5(C2Cl2)] which is equally prepared by ligand exchange of PPh4[WCl5(C2I2)] with silver chloride. All dichloro acetylene complexes are red to brown crystalline solids sensitive to moisture, and are thermally and mechanically very stable compared with the highly explosive dichloro acetylene. The compounds are characterized by their i.r. spectra; [Et2O · WCl4(C2Cl2)] was additionally investigated by 13C-nmr spectroscopy. PPh4[WCl5(C2Cl2)] · 0.5 CCl4 formes dark brown crystals; according to the structural investigation by X-ray diffraction methods the compound crystallizes orthorhombic in the space group Pbca with 8 formula units per unit cell (1317 observed, independent reflexions, R = 0.049). The cell dimensions are a = 1702 pm, b = 1675 pm and c = 2228 pm. The compound consists of [WCl5(C2Cl2)]? anions and PPh4⊕ cations including CCl4 molecules without bonding interactions. The tungsten atoms are seven-coordinated by five chlorine atoms and two carbon atoms. The dichloro acetylene ligand is bonded symmetrically side-on and has a C? C bond length of 128 pm. The W? C distances are 201 pm, the four equatorial Cl atoms have W? Cl bond lengths of 234 pm whereas the chlorine atom in trans-position to the W? C2 group is situated in a distance of 244 pm.  相似文献   

16.
The Orientation of the Re2Cl82– Ions in (PPh4)2[Re2Cl8] · 2 L (L = Acetonitrile, Dichloromethane) (PPh4)2[Re2Cl8] · 2 MeCN was obtained in small yields from PPh4Cl and ReCl5 in the presence of Na2S4 or K2S5 in acetontrile. Its crystal structure was determined by X‐ray diffraction. The crystals are nearly isotypic with those of (PPh4)2[Re2Cl8] · 2 CH2Cl2. The PPh4+ ions, the solvent molecules, and the chlorine atoms occupy nearly identical positions in both triclinic structures. Nevertheless, 98% of the Re≡Re groups are differently oriented within the slightly elongated Cl8 cubes surrounding them. The space requirement of the elongated cubes seems to be more important for the orientation than electrostatic forces. The PPh4+ ions form (PPh4+)2 pairs around inversion centers.  相似文献   

17.
Tetraphenylphosphonium Trichloroplumbate(II), PPh4PbCl3 · CH3CN PPh4PbCl3 · CH3CN was obtained by reaction of PbCl2 and PPh4Cl in acetonitrile. It was also formed along with (PPh4)2Se2Cl6 when PbSe was treated with chlorine in the presence of PPh4Cl. Its crystal structure was determined by X-ray diffraction (R = 0.029 for 4186 reflections). The triclinic crystals contain PbCl3 ions that are associated to polymer chains. Each Pb atom has distorted square pyramidal coordination; the pyramids share two opposite basal edges. The chloro bridges are rather asymmetrical.  相似文献   

18.
Novel Routes to the Synthesis of Thiohalogeno- and Cyclothioarsenates(III). Crystal Structures of PPh4[As2SBr6] · CH3CN and PPh4[SAsS5] By reactions of (PPh4)2[As2Cl8] and (PPh4)2[As2Br8] with Na2S4 in acetonitrile (PPh4)2[As2SCl6] · CH3CN and (PPh4)2[As2SBr6] · CH3CN were obtained, respectively. Using K2S5, PPh4[As2SCl5] and PPh4[SAsS5] were the products. The latter can also be obtained from PPh4[As2SCl5] and Na2S4, while PPh4[As3S3Br4] is formed from PPh4[As2SBr5] with K2S5. Two X-ray crystal structure determinations were performed. PPh4[As2SBr6] · CH3CN: triclinic, P1 , Z = 2, a = 1200.4(7), b = 1507.3(6), c = 1594.4(8) pm, α = 81.59(2), β = 78.22(3), γ = 80.58(2)°, R = 0.096 for 2298 observed reflexions. The structure contains [As2SBr6]2? -ions in which the two Sb atoms are joined via one S and two Br atoms. PPh4[SAsS5]: triclinic, P1 , Z = 2, a = 1133.9(4), b = 1142.5(4), c = 1186.9(5) pm, α = 102.77(4), β = 107.74(3), γ = 106.65(3)°, R = 0.043 für 2677 reflexions. In the [SAsS5]? -ion an AsS5 ring in the chair conformation is present.  相似文献   

19.
Preparation and Crystal Structures of Silver(I) Mixed Ligand Complexes with Bibenzimidazole and Triphenylphosphane: [Ag(PPh3)2(bbimH2)](COOCH3) · 2 CH2Cl2 and [{Ag(PPh3)2}2(μ-bbim)] · 4 CH2Cl2 The title compounds are obtained from silver acetate, 2,2′-bibenzimidazole and PPh3. They are characterized by their IR, 1H-NMR, 31P-NMR spectra and crystal structure determinations. [Ag(PPh3)2(bbimH2)](COOCH3) · 2 CH2Cl2: Reaction in CH2Cl2. Space group C2/c, Z = 4, 3129 observed unique reflections, R = 0.033. Lattice parameters at 203 K: a = 1450.8; b = 1556.2; c = 2316.4 pm; β = 99.69°. The crystal structure is built up by monomeric molecules with distorted tetrahedral coordination of the silver atom (AgP2N2) and bibenzimidazole as a bidentate ligand. The acetate ion is linked to the NH-groups of the bibenzimidazole by hydrogen bonds. [{Ag(PPh3)2}2(μ-bbim)] · 4 CH2Cl2: Reaction in fused PPh3 at 180 °C. Space group P 1, Z = 1. 9227 observed unique reflections, R = 0.051. Lattice parameters at 203 K: a = 1276.5; b = 1352.1; c = 1408.1 pm; α = 96.97; β = 115.87; γ = 96.84°. The crystal structure is built up by centrosymmetric molecules with distorted tetrahedral coordination of the silver atoms (AgN2P2) and bibenzimidazolate(2–) as tetradentate bridging ligand.  相似文献   

20.
Synthesis, I.R. Spectrum, and Crystal Structure of PPh4[OsCl4(NO)(NSCl)] Molten trithiazyl chloride reacts with OsCl3(NO) to yield a product mixture consisting mainly of S4N3[OsCl4(NO)(NSCl)] and S4N3Cl. Extraction of this mixture with a solution of tetraphenylphosphonium chloride in dichloromethane affords green (PPh4)2[OsCl5(NO)] · 2 CH2Cl2 and the red title compound. PPh4[OsCl4(NO)(NSCl)] was characterized by its IR spectrum and an X-ray crystal structure analysis (3001 independent observed reflexions, R = 0.048). Crystal data: monoclinic, space group P21/c, Z = 4, a = 1716, b = 1054, c = 1588 pm, β = 96.25°. The compound consists of PPh4⊕ cations and [OsCl4(NO)(NSCl)]? anions in which the nitrosyl and the chlorothionitrene ligands have a cis arrangement. Due to positional disorder the NO and NSCl groups are superimposed statistically in the structure model.  相似文献   

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