Skip to main content
Log in

Furan derivatives of group II elements (review)

  • Published:
Chemistry of Heterocyclic Compounds Aims and scope

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

References

  1. É. Lukevits and O. A. Pudova, Khim. Geterotsikl. Soedin., No. 4, 435 (1995).

  2. A. F. Shepard, N. R. Winslow, and J. R. Johnson, J. Am. Chem. Soc.,52, 2083 (1930).

    Google Scholar 

  3. C. F. H. Allen and H. B. Rosener, J. Am. Chem. Soc.,49, 2110 (1927).

    Google Scholar 

  4. B. A. Tertov, Z. N. Nazarova, Yu. A. Gabaraeva, and N. V. Shibaeva, Zh. Org. Khim.,8, 1081 (1972).

    Google Scholar 

  5. H. E. Ramsden, US Patent No. 2,959,589, Chem. Abs.,55, 5548b (1961).

    Google Scholar 

  6. H. Normant, Bull. Soc. Chim. Fr., No. 5, 728 (1957).

  7. A. Takeda, K. Shinhama, and S. Tsuboi, Bull. Chem. Soc. Jpn.,50, 1903 (1977).

    Google Scholar 

  8. A. Takeda, K. Shinhama, and S. Tsuboi, J. Org. Chem.,45, 3125 (1980).

    Google Scholar 

  9. J. R. Johnson, M. G. Van Campen, and O. Grummitt, J. Am. Chem. Soc.,60, 111 (1938).

    Google Scholar 

  10. G. J. Martin, B. Mechin, Y. Leroux, C. Paulmier, and J. C. Meunier, J. Organomet. Chem.,67, 327 (1974).

    Google Scholar 

  11. E. Sherman and E. D. Amstutz, J. Am. Chem. Soc.,72, 2195 (1950).

    Google Scholar 

  12. S. P. Tanis, Tetrahedron Lett.,23, 3115 (1982).

    Google Scholar 

  13. S. P. Tanis, Y. H. Chuang, and D. B. Head, J. Org. Chem.,53, 4929 (1988).

    Google Scholar 

  14. O. S. Park and W. Y. Lee, Yakhak Hoechi,31, 10 (1987); Chem. Abs.,108, 112767 (1988).

    Google Scholar 

  15. M. Kato, M. Watanabe, B. Vogler, Y. Tooyama, and A. Yoshikoshi, J. Chem. Soc., Chem. Commun., No. 23, 1706 (1990).

  16. S. P. Tanis and D. B. Head, Tetrahedron Lett.,25, 4451 (1984).

    Google Scholar 

  17. S. P. Tanis and D. B. Head, Tetrahedron Lett.,23, 5509 (1982).

    Google Scholar 

  18. S. P. Tanis, Y. H. Chuang, and D. B. Head, Tetrahedron Lett.,26, 6147 (1985).

    Google Scholar 

  19. A. Carpita, F. Bonaccorsi, and R. Rossi, Gazz. Chim. Ital.,114, 443 (1984).

    Google Scholar 

  20. S. P. Tanis and P. M. Herrinton, J. Org. Chem.,48, 4572 (1983).

    Google Scholar 

  21. S. C. Welch, A. S. C. P. Rao, J. T. Lyon, and G. M. Assercq, J. Am. Chem. Soc.,105, 252 (1983).

    Google Scholar 

  22. S. Araki and Y. Butsugan, Chem. Lett., No. 2, 177 (1982).

  23. S. Araki and Y. Butsugan, Bull. Chem. Soc. Jpn.,56, 1446 (1983).

    Google Scholar 

  24. J. Bosch, M. Alvarez, R. Llobera, and M. Feliz, An. Quim.,75, 712 (1979).

    Google Scholar 

  25. R. Grandos Jarque, J. Bosch Cartes, R. Llobera Jimenez, C. Martinez Roldan, and F. Rabadan Peinado, Spanish Patent No. 467,249, Chem. Abs.,92, 6427 (1980).

    Google Scholar 

  26. K. Takanishi, H. Urabe, and I. Kuwajima, Tetrahedron Lett.,28, 2281 (1987).

    Google Scholar 

  27. E. Lindner and C. Scheytt, Z. Naturforsch. B,41, 10 (1986).

    Google Scholar 

  28. A. Corvers, P. C. H. Scheers, J. W. Denaan, and H. M. Buck, Rec. Trav. Chim.,96, 279 (1977).

    Google Scholar 

  29. A. Corvers, J. H. Vanmil, M. M. E. Sap, and H. M. Buck, Rec. Trav. Chim.,96, 18 (1977).

    Google Scholar 

  30. B. P. Gunn, Tetrahedron Lett.,26, 2869 (1985).

    Google Scholar 

  31. S. P. Tanis, P. M. Herrinton, and L. A. Dixson, Tetrahedron Lett.,26, 5347 (1985).

    Google Scholar 

  32. S. J. Burrell, A. E. Derome, M. S. Edenborough, L. M. Harwood, S. A. Leeming, and N. S. Isaacs, Tetrahedron Lett.,26, 2229 (1985).

    Google Scholar 

  33. R. Gaertner, J. Am. Chem. Soc.,74, 5319 (1952).

    Google Scholar 

  34. N. I. Shuikin and G. K. Vasilevskaya, Dokl. Akad. Nauk SSSR,159, 395 (1964).

    Google Scholar 

  35. R. Onesta and A. Ferretti, Gazz. Chim. Ital.,85, 288 (1955).

    Google Scholar 

  36. R. Onesta, A. Ferretti, and B. Notari, Gazz. Chim. Ital.,86, 178 (1956).

    Google Scholar 

  37. C. F. Ingham, R. A. Massy-Westropp, and G. D. Reynolds, Aust. J. Chem.,27, 1477 (1974).

    Google Scholar 

  38. A. Holy and A. Vystrcil, Coll. Czech. Chem. Commun.,27, 1861 (1962).

    Google Scholar 

  39. B. M. Trost, M. Lautens, M. H. Hung, and C. S. Carmichael, J. Am. Chem. Soc.,106, 7641 (1984).

    Google Scholar 

  40. R. Sjoholm, Acta Chem. Scand. B,31, 278 (1977).

    Google Scholar 

  41. B. Gustafsson, Acta Chem. Scand. B,31, 382 (1977).

    Google Scholar 

  42. G. A. Holmberg, M. Wennström, and M. Grönland, Acta Chem. Scand. B.,29, 728 (1975).

    Google Scholar 

  43. I. I. Lapkin, N. V. Bogoslovskii, and F. G. Saitkulova, Zh. Org. Khim.,2, 156 (1966).

    Google Scholar 

  44. Yu. P. Dormidontov and L. P. Shadrina, Zh. Org. Khim.,19, 269 (1983).

    Google Scholar 

  45. S. Benetti, R. Chiron, and Y. Graff, C.r.C.,283, 351 (1976).

    Google Scholar 

  46. S. Vikhert, Zh. Org. Khim.,18, 2223 (1982).

    Google Scholar 

  47. I. S. Berdinskii, L. V. Kazakova, G. P. Petyunin, P. A. Petyunin, and V. P. Baboshko, Zh. Org. Khim.,10, 2077 (1974).

    Google Scholar 

  48. R. Gauthier, G. P. Axiotis, and M. Chastrette, J. Organomet. Chem.,140, 245 (1977).

    Google Scholar 

  49. Sh. Mamedov, M. A. Avanesyan, B. M. Alieva, Zh. Obshch. Khim.,34, 478 (1964).

    Google Scholar 

  50. R. E. Lutz and J. M. Smith, Jr., J. Am. Chem. Soc.,63, 1148 (1941).

    Google Scholar 

  51. C. Amatore, A. Jutand, S. Negri, and J. F. Fauvarque, J. Organomet. Chem.,390, 389 (1990).

    Google Scholar 

  52. E. Negishi, F. T. Luo, R. Frisbee, and H. Matsushita, Heterocycles,18, 117 (1982).

    Google Scholar 

  53. K. Soai and Y. Kawase, J. Chem. Soc. Perkin I, No. 11, 3214 (1990).

  54. T. Klingstedt and T. Frejd, Organometallics,2, 598 (1983).

    Google Scholar 

  55. A. Minato, K. Suzuki, K. Tamao, and M. Kumada, J. Chem. Soc., Chem. Commun., No. 8, 511 (1984).

  56. A. Pelter, M. Rowlands, and I. H. Jenkins, Tetrahedron Lett.,28, 5213 (1987).

    Google Scholar 

  57. T. Frejd and T. Klingstedt, Synthesis, No. 1, 40 (1987).

  58. A. Arcadi, A. Burini, S. Cacchi, M. Delmastro, F. Marinelli, and B. Pietroni, Synlett., No. 1, 47 (1990).

  59. D. S. Ennis and T. L. Gilchrist, Tetrahedron,46, 2623 (1990).

    Google Scholar 

  60. F. T. Luo and R. T. Wang, Heterocycles,32, 2623 (l990).

    Google Scholar 

  61. B. A. Tertov, Z. N. Nazarova, Yu. A. Gabaraeva, and N. V. Shibaeva, Zh. Obshch. Khim.,7, 1062 (1971).

    Google Scholar 

  62. A. P. Dunlop and F. N. Peters, The Furans, Reinhold Publishing Corporation, New York, Ch. 6, 193 (1953).

    Google Scholar 

  63. S. S. Novikov, T. I. Godovikova, and V. A. Tartakovskii, Izv. Akad. Nauk SSSR. Ser. Khim., No. 3, 505 (1960).

  64. S. S. Novikov, T. I. Godovikova, and V. A. Tartakovskii, Izv. Akad. Nauk SSSR. Ser. Khim., No. 3, 505 (1960).

  65. E. Söderbäck, Acta Chem. Scand. B.,13, 1221 (1959).

    Google Scholar 

  66. W. H. Brown and G. F. Wright, Can. J. Chem.,35, 236 (1957).

    Google Scholar 

  67. S. Katsuda, Japanese Patent No. 6,927,230, Chem. Abs.,72, 43420 (1970).

    Google Scholar 

  68. S. Katsuda, Japanese Patent No. 7,123,729, Chem. Abs.,75, 98429 (1971).

    Google Scholar 

  69. T. Okuzumi, Nippon Kagaku Zasshi,79, 1371 (1958).

    Google Scholar 

  70. R. Dowbenko, Chem. Ind.,32, 1425 (1965).

    Google Scholar 

  71. C. A. Giller, A. A. Anderson, A. É. Berzinya, and M. V. Shimanskaya, Izv. Akad. Nauk SSSR. Ser. Khim., No. 5, 575 (1965).

  72. M. Fetizon and P. Baranger, Compt. Rend.,234, 2296 (1952).

    Google Scholar 

  73. J. P. Katney, H. W. Henssen, and N. G. Vijayakumaran, Tetrahedron,27, 3323 (1971).

    Google Scholar 

  74. H. Gilman and R. Burtner, J. Am. Chem. Soc.,55, 859 (1933).

    Google Scholar 

  75. H. Gilman and R. Burtner, J. Am. Chem. Soc.,55, 2903 (1933).

    Google Scholar 

  76. H. Gilman and R. Burtner, J. Am. Chem. Soc.,71, 1213 (1949).

    Google Scholar 

  77. G. M. Donald and E. D. Amstutz, J. Org. Chem.,21, 516 (1956).

    Google Scholar 

  78. C. D. Hurd and K. Wilkinson, J. Am. Chem. Soc.,70, 739 (1948).

    Google Scholar 

  79. W. W. Beck and C. S. Hamilton, J. Am. Chem. Soc.,60, 620 (1938).

    Google Scholar 

  80. A. N. Nesmeyanov, N. E. Kolobova, L. V. Goncharenko, and K. N. Anisimov, Izv. Akad. Nauk SSSR. Set. Khim., No. 5, 1179 (1976).

  81. R. H. Eastman, J. Am. Chem. Soc.,72, 5313 (1950).

    Google Scholar 

  82. D. J. Chadwick, J. Chambers, P. K. G. Hodgson, G. C. Meakins, and R. L. Snowden, J. Chem. Soc. Perkin I,10, 1141 (1974).

    Google Scholar 

  83. G. Büchi, E. Kovats, P. Enggist, and G. Uhde, J. Org. Chem.,33, 1227 (1968).

    Google Scholar 

  84. Y. Gopichand, R. S. Prasad, and K. K. Chakravarti, Tetrahedron Lett., No. 52, 5177 (1973).

  85. D. J. Chadwick, J. Chambers, G. D. Meakins, and R. L. Snowden, J. Chem. Soc., Perkin I, No. 3, 201 (1973).

  86. W. A. Bonner and M. R. Roth, J. Am. Chem. Soc.,81, 5454 (1959).

    Google Scholar 

  87. C. D. Cottet and M. S. Feather, Carbohydr. Res.,98, 173 (1981).

    Google Scholar 

  88. Z. E. Nazarova and Yu. A. Babaev, Zh. Obshch. Khim.,34, 4010 (1964).

    Google Scholar 

  89. J. T. Wrobel and Z. Dabrowski, Rocz. Chem.,40, 503 (1966).

    Google Scholar 

  90. S. Gronowitz and G. Sörlin, Arkiv Kemi,19, 515 (1963).

    Google Scholar 

  91. A. Fabritsy and É. D. Venus-Danilova, Zh. Obshch. Khim.,28, 3227 (1958).

    Google Scholar 

  92. A. Fabritsy and S. Goshchinskii, Zh. Obshch. Khim.,29, 81 (1959).

    Google Scholar 

  93. A. Fabritsy and I. Kubalya, Zh. Obshch. Khim.,30, 3604 (1960).

    Google Scholar 

  94. A. Fabritsy and I Kubalya, Zh. Obshch. Khim.,31, 476 (1961).

    Google Scholar 

  95. A. Fabrycy and Z. Wichert, Rocz. Chem.,42, 35 (1968).

    Google Scholar 

  96. A. Fabrycy and Z. Wichert, Rocz. Chem.,51, 249 (1977).

    Google Scholar 

  97. R. C. Larock and C. L. Liu, J. Org. Chem.,48, 2151 (1983).

    Google Scholar 

  98. R. C. Larock and L. W. Hareison, J. Am. Chem. Soc.,106, 4218 (1984).

    Google Scholar 

  99. N. N. Baranov, M. S. Malinovskii, and M.P. Khmel', Khim. Geterotsikl. Soedin., No. 9, 1164 (1977).

  100. F. Toda and K. Akagi, Tetrahedron,25, 3795 (1969).

    Google Scholar 

  101. F. Toda, N. Odi, and K. Akagi, Bull. Chem. Soc. Japan,44, 1050 (1971).

    Google Scholar 

  102. A. J. Bridges, R. D. Thomas, J. Chem. Soc., Chem. Commun., No. 11, 694 (1984).

  103. É. D. Venus-Danilova and A. Fabritsy, Zh. Obshch. Khim.,26, 2458 (1956).

    Google Scholar 

  104. É. D. Venus-Danilova and A. Fabritsy, Zh. Obshch. Khim.,26, 1901 (1956).

    Google Scholar 

  105. A. Fabritsy [Fabrycy] and P. Dobrzhenetskaya (Dobrzeniecka), Zh. Obshch. Khim.,37, 60 (1967).

    Google Scholar 

  106. A. Fabrycy and R. Dobrzeniecka, Rocz. Chem.,41, 1733 (1967).

    Google Scholar 

  107. G. B. Gill and M. S. H. Idris, Tetrahedron Lett.,26, 4811 (1985).

    Google Scholar 

  108. H. B. Henbest and B. Nichols, J. Chem. Soc., 277 (1959).

  109. B. Giese, K. Henck, H. Lenhardt, and U. Leining, Chem. Ber.,117, 2132 (1984).

    Google Scholar 

  110. J. Barluenga, J. Lopezpradu, P. J. Campos, and G. Asensio, Tetrahedron,39, 2863 (1983).

    Google Scholar 

  111. M. C. Benhamou, G. Etemad-Moghadam, V. Speziale, and A. Lattes, J. Heterocycl. Chem.,15, 1313 (1978).

    Google Scholar 

  112. R. Amouroux, F. Chastrette, and M. Chastrette, J. Heterocycl. Chem.,18, 565 (1981).

    Google Scholar 

  113. S. S. Novikov, V. A. Tartakovskii, T. I. Godovikova, and V. G. Gribov, Izd. Akad. Nauk SSSR. Set. Khim., No. 2, 272 (1962).

  114. R. L. Rowland, J. Am. Chem. Soc.,73, 2381 (1951).

    Google Scholar 

  115. V. Speziale, J. Roussel, and A. Lattes, J. Heterocycl. Chem.,11, 771 (1974).

    Google Scholar 

  116. A. V. Gomez, M. J. Barluenga, M. Yus Asfiz, Rev. Acad. Cienc. Exactas. Fix-Quim. Natur. Zaragoza,28, 225 (1973).

    Google Scholar 

  117. V. Speziale and A. Lattes, J. Heterocycl. Chem.,16, 465 (1979).

    Google Scholar 

  118. R. Ya. Levina, T. I. Tantsyreva, V. N. Vinogradova, and E. G. Treshchova, Dokl. Akad. Nauk SSSR,85, 107 (1952).

    Google Scholar 

  119. R. L. Rowland, W. L. Perry, and H. L. Friedman, J. Am. Chem. Soc.,73, 1040 (1951).

    Google Scholar 

  120. E. A. Shilov and I. M. Vasil'kevich, Ukr. Khim. Zh.,33, 1044 (1967).

    Google Scholar 

  121. A. S. Fomenko, G. P. Miklukhin, and E. A. Sadovnikova, Dokl. Akad. Nauk SSSR,62, 91 (1948),

    Google Scholar 

  122. A. S. Fomenko and E. A. Sadovnikova, Zh. Obshch. Khim.,20, 1898 (1950).

    Google Scholar 

  123. A. N. Nesmeyanov, V. A. Sazonova, and V. N. Drozd, Izv. Akad. Nauk SSSR. Ser. Khim., No. 1, 163 (1959).

  124. D. J. Chadwick, J. Chambers, G. D. Meakins, and R. L. Snowden, J. Chem. Soc. Chem. Commun., No. 12, 742 (1972).

  125. S. Saltzer, Tetrahedron Lett., 457 (1962).

  126. M. N. M. Khodeir, L. Skulski, and P. Wroczynski, Bull. Pol. Acad. Sci. Chem.,34, 443 (1986).

    Google Scholar 

  127. R. C. Larock and J. C. Bernhardt, J. Org. Chem.,42, 1680 (1977).

    Google Scholar 

  128. Y. Izumi, T. Iino, and A. Kasahara, Bull. Chem. Soc. Jpn.,46, 2251 (1973).

    Google Scholar 

  129. H. Schütt, German Patent No. 1,096,367, Chem. Abs.,55, 25984a (1961).

    Google Scholar 

  130. L. Fisera, J. Sura, J. Kovac, and M. Lucky, Coll. Czech. Chem. Commun., No. 39, 1711 (1974).

  131. L. Nyulaszi, A. Gyuricza, and T. Veszpremi, Tetrahedron, No. 43, 5955 (1987).

  132. D. J. Milner, British Patent No. 2,084,995, Chem. Abs.,97, 72242 (1982).

    Google Scholar 

  133. I. Maeba, K. Iwata, F. Usami, and H. Furukawa, J. Org. Chem.,48, 2998 (1983).

    Google Scholar 

  134. T. Kato, M. Tanemura, S. Kauno, T. Suzuki, and Y. Kitahara, Bioorg. Chem.,1, 84 (1971).

    Google Scholar 

  135. N. Fukamiya and S. Yasuda, Chem. Ind., No. 4, 126 (1979).

  136. T. Kato, M. Tanemura, and Y. Kitahara, Japanese Patent No. 7,210,388, Chem. Abs.,77, 75356 (1972).

    Google Scholar 

  137. N. A. Bumagin, I. O. Kalinovskii, and I. P. Beletskaya, Khim. Geterotsikl. Soedin., No. 11, 1467 (1983).

  138. I. P. Beletskaya, J. Organomet. Chem.,250, 551 (1983).

    Google Scholar 

  139. N. A. Bumagin, P. G. More, and I. P. Beletskaya, J. Organomet. Chem.,364, 231 (1989).

    Google Scholar 

  140. R. C. Larock, K. Narayanan, and S. S. Hershberger, J. Org. Chem.,48, 4377 (1983).

    Google Scholar 

  141. N. A. Bumagin, P. G. More, and I. P. Beletskaya, J. Organomet. Chem.,365, 379 (1989).

    Google Scholar 

  142. N. A. Bumagin, P. G. More, and I. P. Beletskaya, Metalloorgan. Khim.,2, 351 (1989).

    Google Scholar 

  143. S. Bhatia, N. K. Kaushik, and G. S. Sodhi, Z. Naturforsch. B,34, 318 (1988).

    Google Scholar 

  144. N. A. Bell and R. M. King, J. Organomet. Chem.,179, 133 (1979).

    Google Scholar 

  145. G. Wittig, Rev. Chim. Acad. Rep. Populaire Roumaine,7, 1393 (1962).

    Google Scholar 

  146. É. Lukevits and S. Giller, Izv. Akad. Nauk Latv. SSR. Khim., No. 4, 99 (1961).

  147. H. Gillman and T. N. Goreau, J. Org. Chem.,17, 1470 (1952).

    Google Scholar 

  148. J. T. Pinhey and E. G. Roche, J. Chem. Soc. Perkin I, No. 8, 2415 (1988).

  149. D. Seyferth, L. L. Anderson, F. Villafane, M. Cowie, and R. W. Hilts, Organometallics,11, 3262 (1992).

    Google Scholar 

  150. A. Kasahara, T. Izumi, G. Saito, and T. Takeda, Asahi Garasu Kogyo Gijutsu Shoreikai Kenkyu Hokoku,22, 95 (1973). Chem. Abs.,81, 135859 (1974).

    Google Scholar 

  151. M. Nagasawa, T. Maeda, and T. Sato, Japanese Patent No. 17,570, Chem. Abs.,59, 11559 (1963).

    Google Scholar 

  152. K. P. Butin, L. G. Yudin, A. I. Pavlyuchenko, I. P. Beletskaya, and A. N. Kost, Zh. Org. Khim.,7, 2586 (1971).

    Google Scholar 

  153. F. P. Colonna, G. Distefano, M. Guerra, D. Jones, and A. Modelli, J. Chem. Soc. Dalton, No. 12, 2037 (1979).

  154. K. Volka, P. Adamek, I. Stibor, and Z. Ksandr, Spectrochim. Acta A,33A, 241 (1977).

    Google Scholar 

  155. A. P. Ebdon, T. N. Huckerby, and F. G. Thorpe, Tetrahedron Lett., No. 31, 3921 (1971).

  156. D. Doddrell, K. G. Lewis, C. E. Mulquiney, W. Adcock, W. Kitching, and M. Bullpitt, Aust. J. Chem.,27, 417 (1974).

    Google Scholar 

  157. L. Lunazzi, M. Tiecco, C. A. Boiceili, and F. Taddei, J. Mol. Spectrosc.,35, 190 (1970).

    Google Scholar 

  158. A. D. Coxen and K. A. McLauchlan, Mol. Phys.,7, 11 (1963).

    Google Scholar 

  159. P. W. Jennings, S. K. Reedler, J. C. Hurley, C. N. Caughlan, and G. D. Smith, J. Org. Chem.,39, 3392 (1974).

    Google Scholar 

  160. Y. Miura, T. Onodzuka, and H. Shibaki, Chemotherapy (Tokyo),7, 415 (1959).

    Google Scholar 

  161. M. Shiuken, Nippon Yakurigaku Zasshi,54, 658 (1958).

    Google Scholar 

  162. Y. Tanaka, I. Iwai, Y. Yura, and K. Tomita, Chem. Pharm. Bull. Tokyo,8, 252 (1960).

    Google Scholar 

  163. H. Sumi, Y. Tanaka, and Y. Kondo, Takamine Kenkyusho Nempo,10, 240 (1958). Chem. Abs.,55, 4861b (1961).

    Google Scholar 

  164. K. Tanaka, J. Biochem. (Tokyo),50, 102 (1961); Chem. Abs.,56, 47746b (1962).

    Google Scholar 

  165. H. Sumi and K. Nakamura, Takamine Kenkyusho Nempo,10, 247 (1958). Chem. Abs.,55, 4861c (1961),

    Google Scholar 

Download references

Authors

Additional information

Latvian Institute of Organic Synthesis, Riga LV-1006. Translated from Khimiya Geterotsiklicheskikh Soedinenii. No. 4, pp. 474–495, April, 1995. Original article submitted March 3, 1995.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Lukevits, É., Pudova, O.A. Furan derivatives of group II elements (review). Chem Heterocycl Compd 31, 412–431 (1995). https://doi.org/10.1007/BF01177013

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01177013

Keywords

Navigation