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T. P. Bochkareva B. V. Passet K. R. Popov N. V. Platonova T. I. Koval'chuk 《Chemistry of Heterocyclic Compounds》1987,23(10):1084-1089
A novel method has been developed for the synthesis of sulfonic acids of five-membered heterocycles containing two heteroatoms, with a solution of sulfur trioxide in 1,2-dichloroethane. High yields of the required products are obtained, under conditions which are mild in comparison with those used in earlier methods. The mechanism of sulfonation is discussed, and some azole·SO3 complexes have been obtained and described.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 10, pp. 1353–1359, October, 1987. 相似文献
4.
Sharutin V. V. Pakusina A. P. Egorova I. V. Platonova T. P. Bukvetskii B. V. Popov D. Yu. 《Russian Journal of Coordination Chemistry》2002,28(12):827-830
Tetraphenylantimony nitrite was synthesized by reacting pentaphenylantimony with triphenylantimony dinitrite at a molar ratio of 1 : 1 in toluene, and its structure was determined using X-ray diffraction analysis. The Sb atom is coordinated to the oxygen atom of the axial nitrite group to form a trigonal bipyramid. The Sb–C(Ph)eq distances vary within the 2.103–2.111(3) Å range, and the S–O(1) and Sb–C(41) bond lengths are equal to 2.386(3) and 2.156(3) Å, respectively. The Sb...N distance and the axial C(41)SbO(1) angle are equal to 3.133(4) Å and 174.7(1)°, respectively. 相似文献
5.
Sharutin V. V. Sharutina O. K. Pakusina A. P. Platonova T. P. Zadachina O. P. Gerasimenko A. V. 《Russian Journal of Coordination Chemistry》2003,29(2):89-92
Tetraphenylantimony chloride and bromide were synthesized through the reaction of pentaphenylantimony with diphenylantimony trichloride or tribromide taken at a molar ratio of 2 : 1 in toluene. When the initial compounds were taken at a molar ratio of 1 : 1, triphenylantimony dichloride or dibromide was formed. The phenylation of triphenylantimony sulfate with pentaphenylantimony yielded tetraphenylantimony sulfate. According to the X-ray diffraction data, the antimony atom in the tetraphenylantimony chloride molecule has a distorted trigonal bipyramidal configuration with the chlorine atom in the axial position. The Sb–Cl distance is equal to 2.686(1) and Sb–C distances are equal to 2.113(4) and 2.165(4) Å (av. 2.130 Å). 相似文献
6.
V. V. Sharutin O. K. Sharutina L. P. Panova T. P. Platonova A. P. Pakusina V. K. Bel'skii 《Russian Journal of General Chemistry》2002,72(2):229-231
Tri-p-tolylantimony reacts with p-toluenesulfonic acid in the presence of benzoyl peroxide (1 : 2 : 1 molar ratio) in ether to give tri-p-tolylantimony ditosylate in 91% yield. According to X-ray diffraction data, the central antimony atom has the trigonal bipyramidal coordination with the axial location of the tosyl groups. The Sb-O bond lengths are 2.07(2) and 2.17(2) Å; Sb-C bond lengths, 2.08(3), 2.13(3), and 2.13(3) Å; and OSbO bond angle, 175.6(7)°. 相似文献
7.
Sharutin V. V. Sharutina O. K. Osipov P. E. Platonova T. P. Pakusina A. P. Fukin G. K. Zakharov L. N. 《Russian Journal of Coordination Chemistry》2001,27(7):483-485
2-tert-Butylphenoxytetraphenylantimony Ph4SbOC6H4(Bu-t)-2 was prepared by the reaction of pentaphenylantimony with 2-tert-butylphenol in toluene at 20°. The structure of the obtained compound was determined by X-ray diffraction. The Sb atom in this compound has a distorted trigonal-bipyramidal coordination with the aroxy group in the axial position. The Sb–C(Ph)eqand Sb–C(Ph)axdistances are 2.111(7)–2.138(7) and 2.180(7) Å the Sb–O and O–CArdistances are 2.143(4) and 1.363(8) Å, respectively. The C(Ph)axSbOAraxial angle is 174.1(2)°, while the SbOC angle is 126.7(4)°. 相似文献
8.
Sharutin V. V. Sharutina O. K. Senchurin V. S. Platonova T. P. Nasonova N. V. Pakusina A. P. Gerasimenko A. V. Sergienko S. S. 《Russian Journal of Coordination Chemistry》2001,27(9):669-675
Heating of a solution of pentaphenylantimony in toluene in atmospheric oxygen affords -oxo-bis(tetraphenylantimony) (I) in a 63% yield. The latter compound can be converted to bis(tetraphenylantimony) carbonate or phthalate by the action of carbon dioxide or phthalic anhydride, respectively. According to X-ray diffraction data, the antimony atoms in compound Ihave a distorted trigonal-bipyramidal coordination (Sb–O 2.0050(4) Å, the SbOSb angle 151.71(9)°). The molecule of bis(tetraphenylantimony) phthalate is composed of two equal fragments, and its Sb atoms also have trigonal-bipyramidal coordination (Sb–O 2.2421(8) Å; Sb–C 2.176(1), 2.115(1), 2.130(1), and 2.137(1) Å). 相似文献
9.
N. V. Platonova Yu. O. Punin V. D. Franke E. N. Kotelnikova 《Journal of Structural Chemistry》1994,35(5):634-641
In the ammonium chloride crystallization region of the NH4Cl−CuCl2−H2O−CH3ON system, cocrystallization of the impurity with the main substance occurs by epitaxial adsorption of complexes of varying
composition. In NH4Cl crystals, the Cu2+ impurity forms oriented interlayers (ingrowths) simultaneously at the macro-and microlevels. The ratio between the two trapping
forms depends on the growth conditions.
St. Petersburg State University. Translated fromZhurnal Strukturnoi Khimii, Vol. 35, No. 5, pp. 70–78, September–October, 1994.
Translated by L. Smolima 相似文献
10.
Sharutin V. V. Sharutina O. K. Platonova T. P. Pakusina A. P. Gerasimenko A. V. Gerasimenko E. A. Bukvetskii B. V. Popov D. Yu. 《Russian Journal of Coordination Chemistry》2003,29(1):11-15
Tetraphenylantimony N,N-dimethyldithiocarbamate (I) and tetra-p-tolylantimony N,N-dimethyldithiocarbamate (II) were synthesized via the reaction of tetraarylantimony chloride Ar4SbCl (Ar = C6H5 or C6H4Me-4) with sodium N,N-dimethyldithiocarbamate in water. According to the X-ray diffraction data, the tetraarylantimony N,N-dimethyldithiocarbamate molecules have a distorted octahedral configuration. The Sb–S bond lengths are equal to 2.7158(5) Å, 2.7440(5) Å and 2.761(2) Å, 2.8002(2) Å for I and II, respectively. 相似文献