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Molecular structure of heterocyclic derivatives of hypercoordination silicon

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Chemistry of Heterocyclic Compounds Aims and scope

Abstract

Published data and the authors' own data on the molecular structures of heterocyclic derivatives of hyperconjugation silicon are summarized and classified.

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References

  1. É. Ya. Lukevits, O. A. Pudova, and R. Ya. Sturkovich, Molecular structure of Organosilicon Compounds [in Russian], Zinatne, Riga (1988), p. 192.

    Google Scholar 

  2. E. Lukevics, O. Pudova, and R. Sturkovich, Molecular Structure of Organosilicon Compounds, Ellis Horwood, Chichester (1989), p. 262.

    Google Scholar 

  3. W. S. Sheldrick, in: The Chemistry of Organic Silicon Compounds, Part 1, S. Patai and Z. Rappoport (eds.), Wiley, Chichester (1989), p. 227.

    Google Scholar 

  4. V. E. Shklover, Yu. T. Struchkov, and M. G. Voronkov, Main Group Metal Chem.,11, 109 (1988).

    Google Scholar 

  5. V. E. Shklover, Yu. T. Struchkov, and M. G. Voronkov, Usp. Khim.,58, 353 (1989).

    Google Scholar 

  6. P. Hencsei and L. Párkányi, Period. Polytech. Chem. Eng.,34, 293 (1990).

    Google Scholar 

  7. P. Hencsei, L. Bihátsi, I. Kovács, and O. Wagner, Period. Polytech. Chem. Eng.,35, 115 (1991).

    Google Scholar 

  8. P. Hencsei, L. Bihátsi, I. Kovaács, and O. Wagner, Magy. Kem. Foly.,97, 403 (1991).

    Google Scholar 

  9. P. Hencsei, I. Kovács, and L. Bihátsi, Kem. Köl,74, 33 (1992).

    Google Scholar 

  10. P. Hencsei, Struct. Chem.,2, 21 (1991)

    Google Scholar 

  11. A. Greenberg and P. Hencsei, Struct. Chem.,1, 79 (1990).

    Google Scholar 

  12. G. I. Csonka and P. Hencsei, J. Comput. Chem.,17, 767 (1996).

    Google Scholar 

  13. Q. Shen and R. L. Hilderbrandt, J. Mol. Struct.,64, 257 (1980).

    Google Scholar 

  14. P. Hencsei and G. Csonka, Acta Chim. Acad. Sci. Hung.,106, 285 (1981).

    Google Scholar 

  15. G. Forgács, M. Kolonits, and I. Hargittai, Struct. Chem.,1, 245 (1990).

    Google Scholar 

  16. G. I. Csonka and P. Hencsei, J. Comput. Chem.,15, 385 (1994).

    Google Scholar 

  17. G. I. Csonka and P. Hencsei, J. Organomet. Chem.,446, 99 (1993).

    Google Scholar 

  18. É. L. Kupche and É. Lukevits, Khim. Geterotsikl. Soedin., No. 5, 701 (1989).

  19. E. Kupče, E. Liepinš, A. Lapsina, G. Zelchan, and E. Lukevics, J. Organomet. Chem.,251, 15 (1983).

    Google Scholar 

  20. E. Kupče, E. Liepinš, A. Lapsina, I. Urtane, G. Zelcans, and E. Lukevits, J. Organomet. Chem.,279, 343 (1985).

    Google Scholar 

  21. E. Kupče and E. Lukevics, J. Organomet. Chem.,358, 67 (1988).

    Google Scholar 

  22. L. Párkányi, P. Hencsei, L. Bihátsi, and T. Müller, J. Organomet. Chem.,269, 1 (1984).

    Google Scholar 

  23. L. Párkányi, L. Bihátsi, and P. Hencsei, Cryst. Struct. Commun.,7, 435 (1978).

    Google Scholar 

  24. G. S. Zaitseva, S. S. Karlov, A. V. Churakov, E. V. Avtomonov, J. Lorberth, and D. Hartel, J. Organomet. Chem.,523, 221 (1996).

    Google Scholar 

  25. A. A. Kemme, Yu. T. Struchkov, M. S. Sorokin, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,274, 615 (1984).

    Google Scholar 

  26. V. E. Shklover, Yu. T. Struchkov M. S. Sorokin, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,274, 615 (1984).

    Google Scholar 

  27. M. P. Demidov, V. E. Shklover, Yu. L. Frolov, Yu. A. Lukina, V. M. D'yakov, Yu. T. Struchkov, and M. G. Voronkov, Zh. Strukt. Khim.,26, No. 4, 103 (1985).

    Google Scholar 

  28. M. P. Demidov, V. E. Shklover, Yu. T. Struchkov, V. M. D'yakov, Yu. A. Lukina, Yu. L. Frolov, and M. G. Voronkov, Zh. Strukt. Khim.,32, No. 1, 177 (1991).

    Google Scholar 

  29. Yu. É Ovchinnikov, Yu. T. Struchkov, N. F. Chernov, O. M. Trofimova, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,328, 330 (1993).

    Google Scholar 

  30. M. G. Voronkov, N. F. Chernov, O. M. Trofimova, Yu. É. Ovchinnikov, Yu. T. Struchkov, and G. A. Gavrilova, Izv. Akad. Nauk. Ser. Khim., No. 4, 758 (1993).

  31. V. Gevorgyan, L. Borisova, A. Vjater, J. Popelis, S. Belyakov, and E. Lukevics, J. Organomet. Chem.,482, 73 (1994).

    Google Scholar 

  32. É. A. Zel'bst, V. E. Shklover, Yu. T. Struchkov, A. A. Kashaev, M. P. Demidov, L. I. Gubanova, and M. G. Voronkov, Dokl. Akad.Nauk SSSR,260, 107 (1981).

    Google Scholar 

  33. M. Nasim, V. S. Petrosyan, G. S. Zaitseva, J. Lorberth, S. Wocadlo, and W. Massa, J. Organomet. Chem.,441, 27 (1992).

    Google Scholar 

  34. A. A. Kemme, X-ray Crystallographic Investigations of Silatranes and Germatranes [in Russian], Author's Abstract of Thesis for Candidate of Chemical Sciences, Riga (1977).

  35. Ya. Ya. Bleidelis, Molecular and Crystalline Structure of Furan and Its Derivatives, In: Advances in the Chemistry of Furan [in Russian], Zinatne, Riga (1978), Chap. 1, p. 7.

    Google Scholar 

  36. O. A. Pudova, Synthesis and Properties of the Furan and Thiophene Derivatives of the Elements of Group IVB [in Russian], Author's Abstract of Thesis for Candidate of Chemical Sciences, Riga (1980).

  37. Yu. É. Ovchinnikov, T. G. Kovyazina, V. E. Shklover, Yu. T. Struchkov, V. M. Kopylov, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,297, 108 (1987).

    Google Scholar 

  38. M. Nasim, L. I. Livantsova, D. P. Krut'ko, G. S. Zaitseva, J. Lorbeth, and M. Otto, J. Organomet. Chem.,402, 313 (1991).

    Google Scholar 

  39. Yu. É. Ovchinnikov, V. E. Shklover, Yu. T. Struchkov, V. M. Kopylov, T. G. Kovyazina, and M. G. Voronkov, Zh. Strukt. Khim.,27, No. 2, 133 (1986).

    Google Scholar 

  40. V. E. Shklover, Yu. É. Ovchinnikov, Yu. T. Struchkov, V. M. Kopylov, T. G. Kovyazina, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,284, 131 (1985).

    Google Scholar 

  41. P. Hencsei, L. Párkányi, V. Fülöp, V. P. Baryshok, M. G. Voronkov, and G. A. Kuznetsova, J. Organomet. Chem.,346, 315 (1988).

    Google Scholar 

  42. P. Hencsei, I. Kovács, and V. Fülöp, J. Organomet. Chem.,377, 19 (1989).

    Google Scholar 

  43. A. A. Kemme, Ya. Ya. Bleidelis, V. M. D'yakov, and M. G. Voronkov, Izv. Akad. Nauk. Ser. Khim., No. 10, 2400 (1976).

  44. S. Wang and N. Hu Sci. Sin. B,26, 1233 (1983).

    Google Scholar 

  45. Y. Wu, K. Lu, and G. Wu, Second China-Japan-USA Symposium on Organometallic and Inorganic Chemistry, Shanghai, China (1982), p. 203.

  46. S. N. Gurkova, A. I. Gusev, N. V. Alekseev, and M. A. Ignatenko, Zh. Strukt. Khim.,29, No. 2, 203 (1988).

    Google Scholar 

  47. S. N. Gurkova, A. I. Gusev, N. V. Alekseev, and M. A. Ignatenko, Metalloorg. Khim.,1, 1251 (1988).

    Google Scholar 

  48. E. Lukevics, V. Dirnens, N. Pokrovska, J. Popelis, and A. Kemme, Main Group Metal Chem.,18, 337 (1995).

    Google Scholar 

  49. S. Wang and J. Hu, Kexue Tongbao,26, 1084 (1981).

    Google Scholar 

  50. J. W. Turley and F. P. Boer, J. Am. Chem. Soc.,90, 4026 (1968).

    Google Scholar 

  51. L. Párkányi, Kem. Közl.,46, 467 (1976).

    Google Scholar 

  52. L. Párkányi, K. Simon, and J. Nagy, Acta Crystallogr.,30B, 2328 (1974).

    Google Scholar 

  53. L. Párkányi, J. Nagy, and K. Simon, J. Organomet. Chem.,101, 11 (1975).

    Google Scholar 

  54. L. Párkányi, P. Hencsei, L. Bihátsi, I. Kovacs, and A. Szöllosy, Polyhedron,4, 243 (1985).

    Google Scholar 

  55. J. W. Turley and F. P. Boer, J. Am. Chem. Soc.,91, 4129 (1969).

    Google Scholar 

  56. T. M. Chung, Y. A. Lee, Y. K. Chung, and I. N. Jung, Organometallics,9, 1976 (1990).

    Google Scholar 

  57. J. S. Lee, Y. K. Chung, D. Whang, and K. Kim, J. Organomet. Chem.,446, 49 (1993).

    Google Scholar 

  58. Y. A. Lee, Y. K. Chung, J. H. Jeong, G. Chung, and D. Lee, Organometallics,10, 3707 (1991).

    Google Scholar 

  59. Y. A. Lee, Y. K. Chung, Y. Kim, and J. H. Jeong, Organometallics,9, 2851 (1990).

    Google Scholar 

  60. A. S. Oh, Y. K. Chung, and S. Kim Organometallics,11, 1394 (1992).

    Google Scholar 

  61. L. Párkányi, P. Hecsei, L. Bihátsi, and T. Müller, J. Organomet. Chem.,269, 1 (1984).

    Google Scholar 

  62. A. A. Kemme, Ya. Ya. Bleidelis, V. A. Pestunovich, V. P. Baryshok, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,243, 688 (1978).

    Google Scholar 

  63. R. J. Garant, L. M. Daniels, S. K. Das, M. N. Janakiraman, R. A. Jacobson, and J. G. Verkade, J. Chem. Soc.,113, 5728 (1991).

    Google Scholar 

  64. A. A. Macharashvili, V. E. Shlover, Yu. T. Struchkov, V. P. Baryshok, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,297, 1123 (1987).

    Google Scholar 

  65. I. Kovacs, P. Hencsei, and L. Párkányi, Period. Polytech. Chem. Eng.,31, 155 (1987).

    Google Scholar 

  66. L. Párkányi, P. Hensei, and L. Bihatsi, J. Organomet. Chem.,232, 315 (1982).

    Google Scholar 

  67. D. S. Uh, Y. Do, J. H. Lee, and I. H. Suh, Main Group Metal Chem.,16, 131 (1993).

    Google Scholar 

  68. M. W. Kim D. S. Uh, S. Kim, and T. Do, Inorg. Chem.,32, 5883 (1993).

    Google Scholar 

  69. C. Eaborn, K. J. Odell, A. Pidcock, and G. R. Scollary, J. Chem. Soc. Chem. Commun., No. 9, 317 (1976).

  70. G. R. Scollary, J. Aust. Chem.,30, 1007 (1977).

    Google Scholar 

  71. Z. R. Lu, R. X. Zhuo, L. R. Shen, X. D. Zhang, L. F. Shen, J. Organomet. Chem.,489, C38 (1995).

    Google Scholar 

  72. Z. R. Lu, R. X. Zhuo, L. R. Shen, and B. S. Luo, Main Group Metal Chem.,17, 377 (1994).

    Google Scholar 

  73. R. X. Zhuo, Z. R. Lu, J. Liao, and L. F. Shen, J. Organomet. Chem.,446, 107 (1993).

    Google Scholar 

  74. V. Fülöp, A. Kálmán, P. Hencsei, G. Csonka, and I. Kovacs, Acta Crystallogr.,44, 720 (1988).

    Google Scholar 

  75. L. Párkányi, P. Hencsei, G. Csonka, and I. Kovács, J. Organomet. Chem.,329, 305 (1987).

    Google Scholar 

  76. L. Párkányi, P. Hencsei, and E. Popowski, J. Organomet. Chem.,197, 275 (1980).

    Google Scholar 

  77. M. S. Gordon, M. T. Carroll, J. H. Jensen, L. P. Davis, L. W. Burggraf, and R. M. Guidry, Organometallics,10, 2657 (1991).

    Google Scholar 

  78. M. G. Voronkov, M. P. Demidov, V. E. Shklover, V. P. Baryshok, V. M. D'yakov, and Yu. I. Frolov, Zh. Strukt. Khim.,21, No. 2, 100 (1980).

    Google Scholar 

  79. M. P. Demidov, G. G. Aleksandrov, Yu. T. Struchkov, V. P. Baryshok, V. M. D'yakov, Yu. I. Frolov, and M. G. Voronkov, Koord. Khim.,7, 1262 (1981).

    Google Scholar 

  80. B. Chen, G. Wu, and Y. Luo, Jiegou Huaxue,6, 58 (1987).

    Google Scholar 

  81. L. Párkányi, V. Fülöp, P. Hencsei, and I. Kovács, J. Organomet. Chem.,418, 173 (1991).

    Google Scholar 

  82. A. A. Kemme, Ya. Ya. Bleidelis, A. F. Lapsinya, M. B. Fleisher, G. I. Zelchan, and É Ya. Lukevits, Izv. Akad. Nauk Latv. SSR. Ser. Khim., No. 2, 242 (1985).

  83. J. Dai, J. Zhang, and Y. Wu, Jiegou Huaxue,2, 107 (1983).

    Google Scholar 

  84. F. P. Boer, J. W. Turley, and J. I. Flynn, J. Am. Chem. Soc.,90, 5102 (1968).

    Google Scholar 

  85. B. Chen, G. Wu, and Y. Luo, Jiegou Huaxue,6, 165 (1987).

    Google Scholar 

  86. A. Kemme, J. Bleidelis, I. Solomennikova, G. Zelchan, and E. Lukevics, J. Chem. Soc. Chem. Commun., No. 24, 1041 (1976).

  87. J. Grobe, G. Henkel, B. Krebs, and N. Voulgarakis, Z. Naturforsch. B,39B, 341 (1984).

    Google Scholar 

  88. F. P. Boer and J. W. Turley, J. Am. Chem. Soc.,91, 4134 (1969).

    Google Scholar 

  89. P. Hencsei, I. Kovács, and L. Párkányi, J. Organomet. Chem.,293, 185 (1985).

    Google Scholar 

  90. K. Jurkschat, A. Tzschach, J. Meunier-Piret, and M. von Meerssche, J. Organomet. Chem.,317, 145 (1986).

    Google Scholar 

  91. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, A. Lapsina G. Zelčans, and E. Lukevics, J. Organomet. Chem.,349, 23 (1988).

    Google Scholar 

  92. Y. Wan and J. G. Verkade, J. Am. Chem. Soc.,117, 141 (1995).

    Google Scholar 

  93. J. Woning and J. G. Verkade, Organometallics,10, 2259 (1991).

    Google Scholar 

  94. J. Woning, L. M. Daniels, and J. G. Verkade, J. Am. Chem. Soc.,112, 4601 (1990).

    Google Scholar 

  95. J. J. Daly and F. Sanz, J. Chem. Soc. Dalton Trans., No. 19, 2051 (1974).

  96. A. Kemme, J. Bleidelis, I. Urtane, G. Zelchan, and E. Lukevics, J. Organomet. Chem.,202, 115 (1980).

    Google Scholar 

  97. O. A. D'yachenko, L. O. Antovmyan, S. M. Aldoshin, N. G. Komalenkova, A. G. Popov, V. V.Antipova, and E. A. Chernyshev, Izv. Akad. Nauk. Ser. Khim., No. 5, 1081 (1975).

  98. O. A. D'yachenko, L. O. Antovmyan, S. M. Aldoshin, T. . Krasnova, V. V. Stepanov, E. A. Chernyshev, A. G. Popov, and V. V. Antipova, Izv. Akad. Nauk. Ser. Khim., No. 11, 2648 (1974).

  99. D. Schomburg, Z. Anorg. Allg. Chem.,493, 53 (1982).

    Google Scholar 

  100. A. A. Kemme, Ya. Ya. Bleidelis, I. P. Urtane, G. I. Zelchan, and É. Ya. Lukevits, Zh. Strukt. Khim.,25, 165 (1984).

    Google Scholar 

  101. A. A. Kemme, Ya. Ya. Bleidelis, I. P. Urtane, G. I. Zelchan, and É. Ya. Lukevits, Izv. Akad. Nauk. Latv. SSR. Ser. Khim., No. 4, 483 (1982).

  102. J. Y. Corey, N. P. Rath, C. S. John, and E. R. Corey, J. Organomet. Chem.,399, 221 (1990).

    Google Scholar 

  103. E. B. Chuklanova, A. I. Gusev, N. V. Alekseev, L. N. Kireeva, and V. M. D'yakov, Metalloorg. Khim.,4, 1344 (1991).

    Google Scholar 

  104. A. A. Macharashvili, yu. É. Ovchinnikov, Yu. T. Struchkov, V. N. Sergeev, S. V. Pestunovich, and Yu. I. Baukov, Izv. Akad. Nauk. Ser. Khim., No. 1, 189 (1993).

  105. D. Kummer, S. H. Abdel Halim, W. Kuhs, and G. Mattern, J. Organomet. Chem.,446, 51 (1993).

    Google Scholar 

  106. G. Klebe, M. Nix, and K. Hensen, Chem. Ber.,117, 797 (1984).

    Google Scholar 

  107. T. Van der Ancker, B. S. Jolly, M. F. Lappert, C. L. Raston, and B. W. Skelton, J. Chem. Soc. Chem. Commun., No. 15, 1006 (1990).

  108. P. C. Junk, W. C. Patalinghug, R. E. Sue, C. L. Raston, B. W. Skelton, and A. H. White, J. Chem. Soc. Chem. Commun., No. 14, 930 (1991).

  109. G. Klebe, K. Hensen, and H. Fuess, Chem. Ber.,116, 3125 (1983).

    Google Scholar 

  110. G. Klebe, J. W. Bats, and K. Hensen, Z. Naturforsch. B,38B, 825 (1983).

    Google Scholar 

  111. G. Klebe, J. W. Bats, and H. Fuess, J. Am. Chem. Soc.,106, 5202 (1984).

    Google Scholar 

  112. G. Klebe, J. W. Bats, and K. Hensen, J. Chem. Soc. Dalton Trans., No. 1, 1 (1985).

  113. G. Klebe, J. Organomet. Chem.,293, 147 (1985).

    Google Scholar 

  114. Yu. E. Ovchinnikov, Yu. T. Struchkov, N. F. Chernov, O. M. Trofimova, and M. G. Voronkov, J. Organomet. Chem.,461, 27 (1993).

    Google Scholar 

  115. G. Klebe, J. Organomet. Chem.,332, 35 (1987).

    Google Scholar 

  116. J. Boyer, C. Brelière, F. Carré, R. J. P. Corriu, A. Kpoton, M. Poirier, G. Royo, and J. C. Young, J. Chem. Soc. Dalton Trans., No. 1, 43 (1989).

  117. J. Belzner, D. Schär, B. O. Kneisel, and R. Herbst-Irmer, Organometallics,14, 1840 (1995).

    Google Scholar 

  118. C. Brelière, F. Carré, R. J. P. Corriu, G. Royo, M. Wong Chi Man, and J. Lapasset, Organometallics,13, 307 (1994).

    Google Scholar 

  119. C. Brelière, F. Carré, R. J. P. Corriu, and G. Royo, Organometallics,7, 1006 (1988.

    Google Scholar 

  120. F. Carré, C. Chuit, R. J. P. Corriu, A. Mendi, and C. Reye, Organometallics,14, 2754 (1995).

    Google Scholar 

  121. F. Carré C. Chuit, R. J. P. Corriu, A. Mendi, and C. Reye, Angew. Chem. Int. Ed. Engl.,33, 1097 (1994).

    Google Scholar 

  122. J. Belzner and D. Schär, in: Organosilicon Chemistry II, N. Auner and J. Weis (eds.), VCH, Weinheim-New York-Basel-Cambridge-Tokyo (1996), p. 459.

    Google Scholar 

  123. C. Brelière, F. Carré, R. J. P. Corriu, M. Poirier, and G. Royo, Organometallics,5, 388 (1986).

    Google Scholar 

  124. F. Carré, R. J. P. Corriu, A. Kpoton, M. Poirier, G. Royo, J. C. Young, and C. Belin, J. Organomet. Chem.,470, 43 (1994).

    Google Scholar 

  125. R. J. P. Corriu, J. Organomet. Chem.,400, 81 (1990).

    Google Scholar 

  126. C. Brelière, F. Carré, R. J. P. Corriu, M. Poirier, G. Royo, and J. Zweeker, Organometallics,8, 1831 (1989).

    Google Scholar 

  127. K. Boyer-Elma, F. Carré, R. J. P. Corriu, and W. E. Douglas, J. Chem. Soc. Chem. Commun., No. 6, 725 (1995)

  128. K. Tamao, Y. Tatao, Y. Nakagawa, K. Nagata, and Y. Ito, Organometallics,12, 1113 (1993)

    Google Scholar 

  129. H. H. Karsch, F. Bienlein, A. Sladek, M. Henkel, and K. Burger, J. Am. Chem. Soc.,117, 5160 (1995).

    Google Scholar 

  130. S. N. Gurkova, A. I. Gusev, N. V. Alekseev, N. S. Fedotov, G. V. Ryasin, M. V. Polyakova, and V. V. Sokolov, Zh. Strukt. Khim.,20, 160 (1979).

    Google Scholar 

  131. S. N. Gurkova, A. I. Gusev, N. V. Alekseev, G. V. Ryasin, and N. S. Fedotov, Zh. Strukt. Khim.,24, No. 1, 160 (1983).

    Google Scholar 

  132. S. N. Gurkova, A. I. Gusev, N. V. Alekseev, M. G. Los', V. E. Zavodnik, V. K. Bel'skii, G. V. Ryasin, and N. S. Fedotov, Zh. Strukt. Khim.,20, 1059 (1979).

    Google Scholar 

  133. G. Klebe and Duc Tran Qui, Acta Crystallogr. C,40C, 478 (1984).

    Google Scholar 

  134. A. O. Mozzhukhin, Yu. Antipin, Yu. T. Struchkov, B. A. Gostevskii, I. D. Kalikhin, V. A. Pestunovich, and M. G. Voronkov, Metalloorg. Khim.,5, 658 (1992).

    Google Scholar 

  135. K. M. Kane, F. R. Lemke, and J. L. Petersen, Inorg. Chem.,34, 4085 (1995).

    Google Scholar 

  136. J. R. Money, C. K. Choy, K. Knox, and M. Kanney, J. Am. Chem. Soc.,97, 3033 (1975).

    Google Scholar 

  137. C. W. Dirk, T. Inabe, K. F. Schock, and T. J. Marks, J. Am. Chem. Soc.,105, 1539 (1983).

    Google Scholar 

  138. W. J. Kroenke, L. E. Sutton, R. D. Joyner, and M. E. Kenney, Inorg. Chem.,2, 1064 (1963).

    Google Scholar 

  139. D. Adley, P. H. Bird, A. R. Fraser, and M. Onyszchuk, Inorg. Chem.,1, 1402 (1972).

    Google Scholar 

  140. D. Kummer, S. C. Chaudhry, T. Debaerdemacker, and U. Thewalt, Chem. Ber.,123, 145 (1990).

    Google Scholar 

  141. D. Kummer, S. C. Chaudhry, U. Thewalt, and T. Debaerdemacker, Z. Anorg. Allg. Chem.,553, 147 (1987).

    Google Scholar 

  142. G. Sawitzki and H. G. von Schnering, Chem. Ber.,109, 3728 (1976).

    Google Scholar 

  143. W. B. Farnham and J. F. Whitney, J. Am. Chem. Soc.,106, 3992 (1984).

    Google Scholar 

  144. H. H. Karsch, B. Deubelly, U. Keller, F. Bienlein, R. Richter, P. Bissinger, M. Heckel, and G. Müller, Chem. Ber.,129, 759 (1996).

    Google Scholar 

  145. A. A. Kashaev, É. A. Zel'bst, M. P. Demidov, and I. V. Rozhdestvenskaya, Kristallografiya,30, 1186 (1985).

    Google Scholar 

  146. M. G. Voronkov, É. A. Zel'bst, V. S. Fundament-skii, A. A. Kashaev, L. I. Gubanova, N. N. Chipanina, and Yu. L. Frolova, Dokl. Akad. Nauk SSSR,292, 859 (1987).

    Google Scholar 

  147. É. A. Zel'bst, V. E. Shklover, Yu. T. Struchkov, Yu. L. Frolov, A. A. Kashaev, L. I. Gubanova, V. M. D'yakov, and M. G. Voronkov, Zh. Strukt. Khim.,22, No. 3, 82 (1981).

    Google Scholar 

  148. M. G. Voronkov, A. A. Kashaev, É. A. Zel'bst, Yu. L. Frolov, V. M. D'yakov, and L. I. Gubanova, Dokl. Akad. Nauk SSSR,247, 1147 (1979).

    Google Scholar 

  149. É. A. Zel'bst, V. E. Shklover, Yu. T. Struchkov, A. A. Kashaev, L. I. Gubanova, V. M. D'yakov, Yu. L. Frolov, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,259, 1369 (1981).

    Google Scholar 

  150. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, G. I. Oleneva, E. P. Kramarova, A. G. Shipov, and Yu. I. Baukov, J. Chem. Soc. Chem. Commun., No. 10, 683 (1988).

  151. O. B. Artamkina, E. P. Kramarova, A. G. Shipov, Yu. I. Baukov, A. A. Macharashvili, Yu. É Ovchinnikov, and Yu. T. Struchkov, Zh. Obshch. Khim.,63, 2289 (1993).

    Google Scholar 

  152. O. B. Artamkina, E. P. Kramarova, A. G. Shipov, Yu. I. Baukov, A. A. Macharashvili, Yu. É Ovchinnikov, and Yu. T. Struchov, Zh. Obshch. Khim.,64, 263 (1994).

    Google Scholar 

  153. A. A. Macharashvili, Yu. I. Baukov, E. P. Kramarova, G. I. Oleneva, V. A. Pestunovich, Yu. T. Struchkov, and V. E. Shklover, Zh. Strukt. Khim.,28, No. 5, 114 (1987).

    Google Scholar 

  154. A. A. Macharashvili, Yu. Baukov, E. P. Kramarova, G. I. Oleneva, V. A. Pestunovich, Yu. T. Struchkov, and V. E. Shklover, Zh. Strukt. Khim.,28, 107 (1987).

    Google Scholar 

  155. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, Yu. I. Baukov, E. P. Kramarova, and G. I. Oleneva, J. Organomet. Chem.,327, 167 (1987).

    Google Scholar 

  156. E. P. Kramarova, G. I. Oleneva, A. G. Shipov, A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, and Yu. I. Baukov, Izv. Akad. Nauk. Ser. Khim., No. 9, 2156 (1986).

  157. Yu. T. Struchkov, Yu. É. Ovchinnikov, A. G. Shipov, and Yu. I. Baukov, Izv. Akad. Nauk. Ser. Khim., No. 9, 1774 (1995).

  158. N. A. Orlova, A. G. Shipov, Yu. I. Baukov, A. O. Mozzhukhin, M. Yu. Baukov, A. O. Mozzhukhin, M. Yu. Antipin, and Yu. T. Struchkov, Zh. Strukt. Khim.,5, 666 (1992).

    Google Scholar 

  159. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, V. A. Pestunovich, Yu. I. Baukov, E. P. Kramarova, and G. I. Oleneva, Zh. Strukt. Khim.,29, No. 5, 121 (1988).

    Google Scholar 

  160. A. O. Mozzhukhin, M. Yu. Antipin, Yu. T. Struchkov, A. G. Shipov, E. P. Kramarova, and Yu. I. Baukov, Metalloorg. Khim.,5, 917 (1992).

    Google Scholar 

  161. A. O. Mozzhukhin, M. Yu. Antipin, Yu. T. Struchkov, A. G. Shilov, E. P. Kramarova, and Yu. I. Baukov, Metalloorg. Khim.,5, 906 (1992).

    Google Scholar 

  162. Yu. É. Ovchinnikov, A. O. Mozzhukhin, M. Yu. Antipin, T. Struchkov, N. F. Lazareva, and M. G. Voronkov, Zh. Strukt. Khim.,34, No. 6, 66 (1993).

    Google Scholar 

  163. É. A. Zel'bst, Yu. É. Ovchinnikov, A. A. Kashaev, N. F. Lazareva, V. P. Baryshok, Yu. T. Struchkov, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,327, 336 (1992).

    Google Scholar 

  164. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, M. T. Voronkov, B. A. Gostevskii, I. D. Kalikhman, O. B. Bannikov, and V. A. Pestunovich, Metalloorg. Khim.,1, 1131 (1988).

    Google Scholar 

  165. K. D. Onan, A. T. McPhail, C. H. Yoder, and R. W. Hillyard, J. Chem. Soc. Chem. Commun., No. 5, 209 (1978).

  166. A. L. Albanov, N. M. Kudyakov, V. A. Pestunovich, M. G. Voronkov, A. A. Macharashvili, V. E. Shklover, and Yu. T. Struchkov, Metaloorg. Khim.,4 1228 (1991).

    Google Scholar 

  167. É. A. Zel'bst, V. S. Fundamentskii, A. A. Kasaev, M. S. Sorokin, Yu. L. Frolov, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,287, 342 (1986).

    Google Scholar 

  168. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, M. G. Voronkov, B. A. Gostevskii (Gostevsky), I. D. Kalikhman, O. V. Vannikov, and V. A. Pestunovich, J. Organomet. Chem.,340, 23 (1988).

    Google Scholar 

  169. A. A. Macharashvili, V. E. Shklover, Yu. T. Struchkov, B. A. Gostevskii (Gostevsky), I. D. Kalikhman, O. B. Bannikova, M. G. Voronkov, and V. A. Pestunovich, J. Organomet. Chem.,356, 23 (1988).

    Google Scholar 

  170. M. Yu. Antipin, A. A. Macharashvili, Yu. T. Struchkov, and V. E. Shklover, Metalloorg. Khim.,3, 998 (1990).

    Google Scholar 

  171. F. P. Boer and F. P. Remoortere, J. Am. Chem. Soc.,91, 2377 (1969).

    Google Scholar 

  172. F. P. Boer and F. P. Remoortere, J. Am. Chem. Soc.,92, 801 (1970).

    Google Scholar 

  173. A. Mix, U. H. Berlekamp, H. G. Stammler, B. Neumann, and P. Jutzi, J. Organomet. Chem.,521, 177 (1996).

    Google Scholar 

  174. A. I. Gusev, E. B. Chuklanova, A. S. Zhdanov, L. N. Kireeva, and A. N. Kir'yanova, Dokl. Akad. Nauk SSSR,291, 608 (1986).

    Google Scholar 

  175. E. B. Chuklanova and A. I. Gusev, Zh. Strukt. Khim.,28, No. 6, 147 (1987).

    Google Scholar 

  176. M. Kira, L. C. Zhang, C. Kabuto, and H. Sakutai, Chem. Lett., No. 8, 1402 (1995).

  177. F. E. Hahn, M. Keck, and K. N. Paymond, Inorg. Chem.,34, 1402 (1995).

    Google Scholar 

  178. M. J. Barrow, S. Cradock, E. A. V. Ebsworth, and D. W. H. Rankin, J. Chem. Soc. Dalton Trans., No. 9, 1988 (1981).

  179. W. Bett, S. Cradock, and D. W.H. Rankin, J. Mol. Struct.,66, 159 (1980).

    Google Scholar 

  180. T. K. Prakasha, S. Srinivasan, A. Chandrasekaran, R. O. Day, and R. R. Holmes, J. Am. Chem. Soc.,117, 10003 (1995).

    Google Scholar 

  181. N. V. Timosheva, T. K. Prakasha, A. Chandrasekaran, R. O. Day, and R. R. Holmes, Inorg. Chem.,35, 3614 (1996).

    Google Scholar 

  182. R. O. Day, T. K. Prakasha, R. R. Holmes, and H. Eckert, Organometallics,13, 1285 (1994).

    Google Scholar 

  183. Yu. É. Ovchinnikov, M. S. Sorokin, Yu. T. Struchkov, and M. G. Voronkov, Dokl. Akad. Nauk SSSR,330, 337 (1993).

    Google Scholar 

  184. M. J. Barrow, E. A. V. Ebsworth, C. M. Huntley, and D. W. H. Rankin, J. Chem. Soc. Dalton Trans., No. 6, 1131 (1982).

  185. D. Schomburg, Z. Naturforsch.,37B, 195 (1982).

    Google Scholar 

  186. R. R. Holmes, R. O. Day, J. J. Harland, A. C. Sau, and J. M. Holmes, Organometallics,3, 341 (1984).

    Google Scholar 

  187. C. J. Geinsford, T. Kemmitt, and N. B. Milestone, Acta Crystallogr. C,41C, 8 (1995).

    Google Scholar 

  188. R. M. Laine, K. Y. Blohowiak, T. R. Robinson, M. L. Hoppe, P. Nardi, J. Kampf, and J. Uhm, Nature,353, 642 (1991).

    Google Scholar 

  189. K. C. Kumara Swamy, V. Chandrasekhar, J. J. Harland, J. M. Holmes, R. O. Day, and R. R. Holmes, J. Am. Chem. Soc.,112, 2341 (1990).

    Google Scholar 

  190. R. R. Holmes, R. O. Day, and J. S. Payne, Phosphorus, Sulfur, and Silicon and Related Elements,42, 1 (1989).

    Google Scholar 

  191. D. Schomburg, Z. Naturforsch. B,38B, 938 (1983).

    Google Scholar 

  192. R. Tacke, A. Lopez-Mras, and P. G. Jones, Organometallics,13, 1617 (1994).

    Google Scholar 

  193. M. Mühleisen and R. Tacke, Chem. Ber.,127, 1615 (1994).

    Google Scholar 

  194. R. Tacke, O. Dannappel, and M. Muhleisen, Organosilicon Chemistry II, N. Auner and J. Weis (eds.), VCH, Weinheim-New York-Basel-Cambridge-Tokyo (1966), p. 427.

    Google Scholar 

  195. R. Tacke and M. Mühleisen, Inorg. Chem.,38, 4191 (1994).

    Google Scholar 

  196. M. Mühleisen and R. Tacke, Organometallics,13, 3740 (1994).

    Google Scholar 

  197. N. Erchak, G. Ancens, A. Kemme, and E. Lukevics, Eleventh International Symposium on Organosilicon Chemistry, Montpellier, France (1966), p. PA60.

  198. R. R. Holmes, R. O. Day, V. Chandrasekhar, J. J. Harland, and J. M. Holmes, J. Inorg. Chem.,24, 2016 (1985).

    Google Scholar 

  199. F. P. Boer, J. J. Flynn, and J. W. Turley, J. Am. Chem. Soc.,90, 6973 (1968).

    Google Scholar 

  200. R. R. Holmes, R. O. Day, V. Chandrasekhar, and J. M. Holmes, Inorg. Chem., 2009 (1985).

  201. R. R. Holmes, R. O. Day, J. J. Harland, and J. M. Holmes, Organometallics,3, 347 (1984).

    Google Scholar 

  202. D. A. Loy J. H. Small, and K. J. Shea, Organometallics,12, 1484 (1993).

    Google Scholar 

  203. J. J. Harland, R. O. Day, J. F. Vollano, A. C. Sau and R. R. Holmes, J. Am. Chem. Soc.,103, 5269 (1981).

    Google Scholar 

  204. U. Dettlaff-Weglikowska, E. Hawkins, H. G. von Schnering, Z. Naturforsch. B,46, 609 (1991).

    Google Scholar 

  205. R. Tacke, F. Wiesenberger, A. Lopes-Mras, J. Sperlich, and G. Mattern, Z. Naturforsch. B,47, 1370 (1992).

    Google Scholar 

  206. R. Tacke, A. Lopes-Mras, J. Sperlich, C. Strohmann, W. F. Kuhs, and G. Mattern, Chem. Ber.,126, 851 (1993).

    Google Scholar 

  207. R. Tacke, J. Sperlich, C. Strohmann, B. Frank, and G. Mattern, Z. Kristallogr.,199, 91 (1992).

    Google Scholar 

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Latvian Institute of Organic Synthesis, Riga. Translated from Khimiya Geterotsiklicheskikh Soedinenii, Nos. 11–12, pp. 1605–1646, November–December, 1996.

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Lukevits, É., Pudova, O.A. Molecular structure of heterocyclic derivatives of hypercoordination silicon. Chem Heterocycl Compd 32, 1381–1418 (1996). https://doi.org/10.1007/BF01169969

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