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1.
V. V. Sharutin V. S. Senchurin O. A. Fastovets A. P. Pakusina O. K. Sharutina 《Russian Journal of Coordination Chemistry》2008,34(5):367-373
The reactions of tetraphenylantimony with hexachloroplatinic and chloroauric acids in benzene afford bis(tetraphenylantimony)
hexachloroplatinate (I) and tetraphenylantimony tetrachloroaurate (II), respectively. Compound II is also synthesized from tetraphenylantimony chloride and chloroauric acid in acetone. Bis(tetraphenylantimony) hexachlorostannate
(III) is synthesized from tin dichloride and tetraphenylantimony chloride in acetone or from tin tetrachloride and tetraphenylantimony
chloride in benzene. The crystal structures of compounds I–III are determined by X-ray diffraction analysis. The antimony atoms in the [Ph4Sb]+ cations have a distorted tetrahedral coordination (CSbC bond angles range from 105.7(1)° to 118.5(1)° (I), from 106.2(3)° to 114.4(3)° (II), and from 106.0(1)° to 117.1(1)° (III)). The Sb-C bond lengths vary in intervals of 2.094(2)–2.098(2), 2.087(7)–2.111(7), and 2.093–2.100(3) ?, respectively. The
coordination of the Pt and Sn atoms in complexes I and III is close to an ideal octahedral coordination with ClPtCl and ClSnCl bond angles of 88.68(2)°–91.32(3)° and 88.84(3)°–91.16(3)°,
respectively. The square coordination of the Au atom in complex II is slightly distorted: the Au-Cl bond lengths are 2.266(2)–2.277(2) ?, the ClAuCl bond angles are equal to 89.7(1)°–90.5(1)°,
the root-mean-square deviation of the atoms from the coordination plane being 0.004 ?.
Original Russian Text ? V.V. Sharutin, V.S. Senchurin, O.A. Fastovets, A.P. Pakusina, O.K. Sharutina, 2008, published in Koordinatsionnaya
Khimiya, 2008, Vol. 34, No. 5, pp. 373–379. 相似文献
2.
V. V. Sharutin V. S. Senchurin O. K. Sharutina O. A. Fastovets A. P. Pakusina 《Russian Journal of Inorganic Chemistry》2010,55(9):1410-1414
Complexes Ph3(n-Pr)P2+[CoI4]2− (I) and [Ph3(n-Am)P]2+ [CoI4]2− (II) were synthesized by reactions of triphenyl(alkyl)phosphonium iodide with cobalt(II) iodide in acetone. According to the
X-ray diffraction data, complexes I and II consist of tetrahedral triphenyl(alkyl)phosphonium cations (for I, P-C is 1.787(4)–1.804(4) ? and CPC is 106.73(18)°–111.4(18)°; for II P-C is 1.786(6)–1.802(6) ? and CPC is 107.6(3)°–111.7(3)°) and [CoI4]2− anions (Co-I 2.5923(6)–2.6189(6) ?, ICoI 101.86(2)°–113.25(2)° for I; Co-I 2.5899(9)–2.6171(9) 107.01(3)°–110.47(3)° for II). 相似文献
3.
V. V. Sharutin V. S. Senchurin O. K. Sharutina B. B. Kunkurdonova 《Russian Journal of Inorganic Chemistry》2011,56(9):1384-1389
Complexes [Me3EtN]2+[CoI4]2− (I) and [Me3EtN]2+[CoI4]2− (II) were synthesized by reacting trimethylalkylammonium iodide with cobalt(II) iodide in acetone. According to X-ray diffraction
data, complexes I and II consist of tetrahedral tetraalkylammonium cations (for I, N-C is 1.481(5)–1.590(8) CNC is 107.3(3)°–111.6(3)°; for II, N-C is 1.485(8)–1.506(10) ? and CNC is 106.9(7)°–111.7(5)°) and [CoI4]2− anions (for I, Co-I is 2.5951(5)–2.6127(5) ? and ICoI is 104.67(2)°–113.23(2)°; for II, Co-I is 2.5914(8)–2.5943(9) ? and ICoI is 107.05(2)°–114.42(5)°). 相似文献
4.
V. V. Sharutin I. V. Egorova N. N. Klepikov E. A. Boyarkina O. K. Sharutina 《Russian Journal of Coordination Chemistry》2009,35(3):186-190
The complexes [Ph3BuP]2+[Bi2I8 · 2Me2C=O]2− (II) and [Ph3BuP]2+[Bi2I8 · 2Me2S=O]2− (III) are synthesized by the reactions of triphenyl(n-butyl)phosphonium iodide (I) with bismuth iodide in acetone and dimethyl sulfoxide. In the cations of complexes I–III, the P atoms have a distorted tetrahedral coordination (CPC angles 106.3(2)°–112.0(3)°). The butyl group in cation I is disordered over two positions. In the binuclear centrosymmetric anions of structures II and III, the octahedrally coordinated bismuth atoms are linked in pairs by two bridging (br) iodine atoms (Bi-Ibr 3.1508(7) and 3.2824(8) ? in compound II, 3.1961(3) and 3.3108(3) ? in complex III), which are coplanar to four terminal (t) iodine atoms (Bi-It 2.9260(7) and 2.9953(6) ? in complex II, 2.9206(3) and 2.9786(3) ? in complex III). The two remaining positions at the bismuth atom are occupied by the iodine atom (Bi-It 2.8531(7) ? in complex II, 2.8984(3) ? in complex III) and O atom of the organic molecule (Bi-O 2.747(6) ? in complex II, 2.507(3) ? in complex III).
Original Russian Text ? V.V. Sharutin, I.V. Egorova, N.N. Klepikov, E.A. Boyarkina, O.K. Sharutina, 2009, published in Koordinatsionnaya
Khimiya, 2009, Vol. 35, No. 3, pp. 188–192. 相似文献
5.
V. V. Sharutin V. S. Senchurin O. K. Sharutina A. P. Pakusina O. A. Fastovets 《Russian Journal of Inorganic Chemistry》2010,55(9):1415-1420
Triphenylbenzylphosphonium tetrachloroaurate (I) and triethanolammonium tetrachloroaurate hydrate (II) were prepared by reacting tetrachloroauric acid in acetone with triphenylbenzylphosphonium and triethanolammonium, respectively.
Triphenylethylphosphonium hexachlorodicuprate (III) was synthesized from triphenylethylphosphonium chloride and copper chloride in acetone. The crystal structures of complexes
I to III were determined by single-crystal X-ray diffraction. The phosphorus atoms in complex I have a nearly undistorted tetrahedral coordination (CPC, 108.3°–110.6°; P-C, 1.788–1.793 ?). The coordination of nitrogen
atoms in the cations of complex II is a distorted tetrahedron (CNC, 111.7°–112.4°). The square coordination of aurum in I and II is only slightly distorted: the ClAuCl angles are 89.6°–90.3° (I) and 89.5°–90.6° (II) and the Au-Cl distances are 2.256–2.278 ? I) and 2.280–2.285 ? (II). The phosphorus atoms in complex III are tetracoordinated (CPC, 106.34°–111.73°; P-C, 1.790–1.795 ?). The copper atoms in III have a distorted tetrahedral coordination (ClCuCl, 98.48°–144.85°; Cu-Cl, 2.1999–2.3263 ?). The central fragment Cu2Cl2 in the anion of complex III is bent relative to the Cu2 axis (the chlorine atom deviates from the Cu2Cl plane by 0.27 ?). 相似文献
6.
V. V. Sharutin V. S. Senchurin O. K. Sharutina B. B. Kunkurdonova 《Russian Journal of General Chemistry》2011,81(11):2235-2241
Complexes [Ph3MeP]3[Sb3I12]Me2C=O (I), [Ph3MeP]3[Sb2I9] (II), and [Ph3MeP]2[SbI5] (III) were obtained via the reaction of triphenylphosphonium iodide with antimony triiodide in acetone in 1:1, 3:2 and 2:1 molar ratios. Reaction of the complex III with antimony triiodide (1:1) affords [Ph3MeP]3[Sb3I12] (IV). The structure of the obtained complexes was confirmed by X-ray analysis. 相似文献
7.
V. V. Sharutin V. S. Senchurin O. K. Sharutina N. V. Somov A. V. Gushchin 《Russian Journal of Coordination Chemistry》2011,37(11):854-860
The complexes [Bu4N]2+[PtBr6]2− (I), [Ph4P]2+[PtBr6]2− (II), and [Ph3(n-Am)P]2+ (III) are synthesized by the reactions of tetrabutylammonium bromide, tetraphenylphosphonium bromide, and triphenyl(n-amyl)-tetraphenylphosphonium bromide, respectively, with potassium hexabromoplatinate (mole ratio 2: 1). After recrystallization
from dimethyl sulfoxide, complexes I, II, and III transform into [Bu4N]+[PtBr5(DMSO)]− (IV), [Ph4P]+[PtBr5(DMSO)]− (V), and [Ph3(n-Am)P]+[PtBr5(DMSO)]− (VI). According to the X-ray diffraction data, the cations of complexes IV–VI have a slightly distorted tetrahedral structure. The N-C and P-C bond lengths are 1.492(7)–1.533(6) and 1.782(10)–1.805(10)
?, respectively. The platinum atoms in the mononuclear anions are hexacoordinated. The dimethyl sulfoxide ligands are coordinated
with the Pt atom through the sulfur atom (Pt-S 2.3280(18)–2.3389(11) ?). The Pt-Br bond lengths are 2.4330(6)–2.4724(6) ?. 相似文献
8.
V. V. Sharutin V. S. Senchurin O. K. Sharutina B. B. Kunkurdonova T. P. Platonova 《Russian Journal of Inorganic Chemistry》2011,56(8):1272-1275
Bismuth complex [Bu4N]2+[Bi2I8 · 2Me2S=O]2−(I) was synthesized by reacting tetrabutylammonium iodide with bismuth iodide. In the cations, an N atom has a distorted tetrahedral
coordination (CNC angles change in the range from 107.9(5)° to 111.9(5)°). In the centrosymmetric binuclear anion, octahedral
bismuth atoms are bound to each other through the bridging (br) iodine atoms (Bi-Ibr, 3.2779(7) ? and 3.3156(9) ?), which are coplanar with four terminal (t) iodine atoms (Bi-It, 2.9392(7) ? and 2.9534(8) ?). Two remaining positions near the bismuth atom are occupied by an iodine atom (Bi-I, 3.0079(8)
dimethyl sulfoxide (DMSO) molecule (Bi-O, 2.456(5) ?). 相似文献
9.
I. V. Korol’kov S. A. Martynova K. V. Yusenko S. V. Korenev 《Russian Journal of Inorganic Chemistry》2010,55(9):1347-1351
Double complex salts [Ru(NH3)5Cl][OsCl6] and [Ru(NH3)5Cl]2[OsCl6]Cl2 were prepared and characterized. An X-ray diffraction study showed that [Ru(NH3)5Cl][OsCl6] is isostructural to the previously synthesized [Rh(NH3)5Cl][OsCl6]. The structure of [Ru(NH3)5Cl]2[OsCl6]Cl2 was solved by X-ray diffraction (a = 11.1849(8) ?, b = 7.9528(6) ?, c = 13.4122(9) ?; β = 99.765(2)°; V= 1175.75 ?3; space group C2/m; Z = 2). Thermolysis of the compounds under hydrogen and helium was studied. According to X-ray diffraction, nanosized metallic
powders of the corresponding alloys are formed as the final products of thermolysis. The compositions of the obtained solid
solutions are consistent with the phase diagram of the Ru-Os system. 相似文献
10.
Marzena Sokalska Ma?gorzata Prussakowska Marcin Hoffmann B?a?ej Gierczyk Rafa? Frański 《Journal of the American Society for Mass Spectrometry》2010,21(10):1789-1794
The following ions [UO2(NO3)3]−, [UO2(ClO4)3]−, [UO2(CH3COO)3]− were generated from respective salts (UO2(NO3)2, UO2(ClO4)3, UO2(CH3COO)2) by laser desorption/ionization (LDI). Collision induced dissociation of the ions has led, among others, to the
formation of UO4
− ion (m/z 302). The undertaken quantum mechanical calculations showed this ion is most likely to possess square planar geometry as
suggested by MP2 results or strongly deformed geometry in between tetrahedral and square planar as indicated by DFT results.
Interestingly, geometrical parameters and analysis of electron density suggest it is an UVI compound, in which oxygen atoms bear unpaired electron and negative charge. 相似文献
11.
A new compound C17H22FN3O3
2+ • CuCl4
2- [pefloxacindium tetrachlorocuprate(II)], C17H20FN3O3 — 1-ethyl-6-fluoro-1,4-dihydro-4-oxo-7-(4-methyl-1-piperazinyl)-3-quinoline carboxylic acid (pefloxacin, PefH) is synthesized
and characterized by single crystal X-ray diffraction technique. The crystal structure of the compound contains one PefH3
2+ cation and one CuCl4
2- anion. The supramolecular architecture of the crystal is determined. 相似文献
12.
V. V. Sharutin V. S. Senchurin O. K. Sharutina O. A. Davydova 《Russian Journal of General Chemistry》2012,82(2):194-198
Complexes [Ph4P]2[Bi2I8(Me2S=O)2]·2Me2S=O (I) and [Ph4P]4[Bi8I28] (II) were obtained by the reaction of tetraphenylphosphonium iodide with bismuth triiodide in DMSO and acetone, respectively.
Dissolving bismith iodide in DMSO resulted in the formation of complex [(Me2S=O)8Bi][Bi2I9] (III). Reactions of complexes II or III with tetraphenylphosphonium iodide in DMSO yielded complex I. The structure of the obtained bismuth complexes was confirmed by X-ray diffraction data. 相似文献
13.
IR and single-crystal X-ray diffraction study are carried out for compound, C36H112Cl9Fe3N18O8P6(I). It crystallizes in the orthorhombic space group P212121 with a = 14.2992(3), b = 21.4351(4), c = 25.5407(5) ?, V = 7828.3(3) ?3, ρcalcd = 1.553 g/cm3, Z = 4. The FeCl fragment is coordinated with chlorine atom of two water molecules and three HMPA molecules to form a cation,
with a distorted octahedral coordinate geometry. In the crystal I, the cation is linked with HMPA by the O-H…O hydrogen bond.
The chiral crystal is formed through self-assembly even from achiral molecules. 相似文献
14.
D. B. Vasil’chenko E. Yu. Filatov I. A. Baidina P. E. Plyusnin S. V. Korenev 《Russian Journal of Coordination Chemistry》2010,36(5):347-352
Three novel complex salts containing the cation trans-[Rh(β-Pic)4Cl2]+ with the anions Cl− (I), ReO4− (II), and ClO4− (III) were obtained and characterized by elemental analysis, X-ray diffraction, NMR spectroscopy, and IR spectroscopy. The complex
trans-[Rh(β-Pic)4Cl2]ReO4 crystallizes from DMF as a solvate in which solvent molecules fill the channels formed by the cations and anions. The thermal
properties of complexes I, II, and II · DMF were examined by DTA. Final and some intermediate products of the thermolysis were isolated and characterized by physicochemical
methods. 相似文献
15.
D. B. Vasilchenko I. A. Baidina E. Yu. Filatov S. V. Korenev 《Journal of Structural Chemistry》2009,50(2):335-342
[RhPy4Cl2]Cl·4H2O (I), [RhPy4Cl2]ReO4 (II), [RhPy4Cl2]ClO4 (III), and [RhPy4Cl2]ReO4·2H2O complex salts were synthesized. The crystal structure of compounds II (P4/ncc, a = 25.5655(3) ?, c = 14.3521(4) ?), III (P21/n, a = 13.5308(3) ?, b = 15.1044(5) ?, c = 23.3457(8) ?, β = 93.327°), and dyhydrate of II (Pbcm, a = 10.6199(9) ?, b = 10.4964(9) ?, c = 22.9834(16)?) was determined by X-ray diffraction analysis. The thermal transformations of the complexes were studied by
differential thermal analysis. The substances were characterized by IR spectroscopy, XRPA, and element analysis
Original Russian Text Copyright ? 2009 by D. B. Vasilchenko, I. A. Baidina, E. Yu. Filatov, and S. V. Korenev
__________
Translated from Zhurnal Strukturnoi Khimii, Vol. 50, No. 2, pp. 349–356, March–April, 2009. 相似文献
16.
G. A. Kostin A. O. Borodin Yu. V. Shubin N. V. Kurat’eva V. A. Emelyanov P. E. Plyusnin M. R. Gallyamov 《Russian Journal of Coordination Chemistry》2009,35(1):57-64
Three new heteronuclear complexes [Ru(NO)(NO2)4(OH)M(Py)3] (M = Co2+, Ni2+, Zn2+) were synthesized and structurally characterized. In all compounds, the [Ru(NO)(NO2)4(OH)] fragment is coordinated to the M atom by a bridging OH and two bridging NO2 groups. The coordination environment of the metal also includes three pyridine nitrogen atoms. Thermal decomposition of cobalt
and nickel complexes in an inert atmosphere yields bimetallic solid solutions.
Original Russian Text ? G.A. Kostin, A.O. Borodin, Yu.V. Shubin, N.V. Kurat’eva, V.A. Emelyanov, P.E. Plyusnin, M.R. Gallyamov,
2009, published in Koordinatsionnaya Khimiya, 2009, Vol. 35, No. 1, pp. 57–64. 相似文献
17.
A. A. Rybinskaya E. A. Shusharina P. E. Plyusnin Yu. V. Shubin S. V. Korenev S. A. Gromilov 《Journal of Structural Chemistry》2011,52(4):816-819
A single crystal of [Pd(NH3)4]3[Ir(NO2)6]2·H2O double complex salt is studied by X-ray diffraction. Crystallographic characteristics are as follows: a = 21.0335(5) ?, b = 8.0592(2) ?, c = 21.3452(5) ?, β = 91.254(1)°, V = 3617.43(15) ?3, P21/c space group, Z = 4, d
x = 2.714 g/cm3. Single-layer pseudohexagonal packing of complex anions is determined along the [−1 0 1] direction in the structure. Complex
cations and crystallization water molecules are located between the mentioned layers. 相似文献
18.
Osmotic coefficients were measured for tetra-n-butylammonium hexafluorophosphate (TBA PF6) and tetra-n-butylammonium tetrakis(pentafluorophenyl)borate (TBABARF) in tetrahydrofuran and in acetonitrile. These osmotic coefficients
were fit using equations first derived by Pitzer. Mean ionic activity coefficients were determined using the integrated form
of the Pitzer equations. Densities were measured for each of the solutions and the results were used to convert mean ionic
activity coefficients on the molal scale to the molar scale. Remarkably, over concentrations ranging from 0.1 to 1.0 m in acetonitrile, the behavior of TBABARF is consistent with the simple Debye-Hückel equation.
Published in Russian in Elektrokhimiya, 2008, Vol. 44, No. 1, pp. 66–73.
The text was submitted by the authors in English. 相似文献
19.
Abstract
The complex [Fe(C6H4N2S2)3]2+(NO3−)2 was prepared from the reaction of 4,4′-bithiazole with Fe(NO3)3·9H2O in methanol. It was characterized by IR, UV-Vis, luminescence, 1H NMR and 13C NMR spectroscopy, and X ray crystallography. The structure was solved in the orthorhombic space group P212121 with a = 12.1500(5), b = 12.8434(6), c = 16.2222(7) ?, V = 2531.43(19) ?3, Z = 4, and with wR 2 = 0.0897. 相似文献20.
A. A. Rybinskaya P. E. Plyusnin E. A. Bykova S. A. Gromilov Yu. V. Shubin S. V. Korenev 《Journal of Structural Chemistry》2012,53(3):527-533
Two new double complex salts [Pd(NH3)4]3[Rh(NO2)6]2 (I) and [Pd(NH3)4]3[Rh(NO2)6]2·H2O (II) are synthesized and characterized. The techniques to produce one-phase residues of the salts are developed. The crystallographic data for I: a = 18.915(2) ?, V = 6767.4 ?3, F-43c space group, Z = 8, d x = 2.548 g/cm3; II: a = 21.160(6) ?, b = 8.085(7) ?, c = 21.363(4) ?, β = 91.71(4)°, V = 3661.1(6) ?3, P21/c space group, d x = 2.357 g/cm3. Thermal properties of the obtained compounds in the hydrogen and helium atmosphere are studied. It is shown that the final product of their decomposition both in the inert and reducing atmosphere is a powder consisting of bimetallic nanosized particles (nanoalloy) of Pd0.59Rh0.41 (Fm-3m space group, a = 3.856(2) ?, crystallite size of 8–11 nm). 相似文献