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1887
Volume 36, Issue 1
  • ISSN: 0032-1400

Abstract

Platinum group organometallics have recently been the subject of intensive investigation designed to establish the basic characteristics of their decomposition, which results in the formation of metallic or metalcontaining coatings. This review has been compiled from a literature search and indicates some of the applications that are, or could be, of commercial significance.

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1992-01-01
2024-08-31
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References

  1. G. A. Razuvaev, B. G. Gribov, G. A. Domrachev, B. A. Solomatin, Metalloorganicheskie Soedineniya v Electronike”, Nauka, Moscow, 1972 [Google Scholar]
  2. Osazhdenie Plenok i Pokrytii Razlozheniem Metalloorganicheskich Soedinenii”, Nauka, Moscow, 1981 [Google Scholar]
  3. S. E. Livingstone, The Chemistry of Ruthenium, Rhodium, Palladium, Osmium, Iridium and Platinum”, Pergamon Press, Oxford, 1973 [Google Scholar]
  4. Cobalt, Nickel, Platinum Metals”, Nauka, Moscow, 1978 [Google Scholar]
  5. P. M. Maitlis, The Organic Chemistry of Palladium”, Acad. Press, New York, 1971 [Google Scholar]
  6. E. O. Fisher, H. Werner, German Appl. 1,132,423; 1962 [Google Scholar]
  7. J. F. Cordes, S. Schreiner, Z. Anorg. Allg. Chem., 1959, 290, 87 [Google Scholar]
  8. Z. Hue, M. F. Strouse, D. K. Shuh, C. B. Knobler, H. D. Kaesz, R. F. Hicks, R. S. Williams, J. Am. Chem. Soc., 1989, 111, 8779 [Google Scholar]
  9. G. Beni, Z. M. Schiavone, J. L. Shay, W. C. Dautremont-Smith, B. S. Schneider, Nature, 1979, 282, 231 [Google Scholar]
  10. N. A. Belozerskii, Karbonoly Metallov”, Metallurgia, Moscow, 1958 [Google Scholar]
  11. R. Psaro, A. Fusi, R. Ugo, J. M. Basset, A. K. Smith, F. Hugues, J. Mol. Catal, 1980, 7, (4), 511 [Google Scholar]
  12. E. H. Reerink, U.S. Patent 1,818, 909; 1931 [Google Scholar]
  13. R. G. Behrens, J. Less-Common Met., 1977, 56, 55 [Google Scholar]
  14. K. G. Ihrman, T. H. Coffield, U.S. Patent 3,077, 489; 1963 [Google Scholar]
  15. C. Potvin, Thesis Doct. Sei. Phys., Univ. Pierre et Marie Curie, 1975, 197 [Google Scholar]
  16. International Nickel, Dutch Appl. 76/5,022; 1976 [Google Scholar]
  17. J. N. Crosby, R. S. Hanley, U.S. Patent 4,250, 210; 1981 [Google Scholar]
  18. International Nickel, German Appl. 2,622, 181; 1976 [Google Scholar]
  19. D. E. Trent, B. Paris, H. H. Krause, Inorg. Chem., 1964, 3, 1057 [Google Scholar]
  20. Siemens, German Appl. 2,300, 481; 1974 [Google Scholar]
  21. Hughes Aircraft Corp.,British Patent 1,559, 593; 1980 [Google Scholar]
  22. J. Müller, D. Lohrberg, U.S. Patent 3,788, 968; 1974 [Google Scholar]
  23. O. Gorochov, H. Ezzaquia, World Appl. 86/5,824; 1987 [Google Scholar]
  24. Nippon Engelhard K.K., Japanese Appl. 62/207,868; 1988 [Google Scholar]
  25. Engelhard Minerals and Chemicals Corp., British Patent 1,277, 360; 1972 [Google Scholar]
  26. R. C. Langley, U.S. Patent 3,573, 970; 1970 [Google Scholar]
  27. P. D. Klimstra, U.S. Patent 3,424, 768; 1969 [Google Scholar]
  28. Union Carbide Corp., British Patent 1,114, 908; 1968 [Google Scholar]
  29. V. S. Khandkarova, Cobalt, Nickel, Platinum Metals”, Nauka, Moscow, 1978, 360 [Google Scholar]
  30. R. L Hemmen, L. B Spendlove, R. E. Sievers, J. Electrochem. Soc., 1965, 112, 1123 [Google Scholar]
  31. K. V. Kordesch, U.S. Patent 3,364, 074; 1968 [Google Scholar]
  32. I. K. Igumenov, Yu. V. Chumachenko, V. T. Isakova, S. V. Zamekov, Zh. Fiz. Khim., 1979, 53, 1612 [Google Scholar]
  33. V. E. Ivanov, E. P. Nechiporenko, V. M. Krivoruchko, V. S. Sagalovich, Kristallizat-siya Tugoplavkikh Metallov iz Gazovoi Fazy”, Atomizdat, Moscow, 1974 [Google Scholar]
  34. E. O. Fischer, U. Zahn, Chem. Ber., 1959,92, 1624 [Google Scholar]
  35. B. L. Show, N. S. Sheppard, Chem. Ind., 1961, 517 [Google Scholar]
  36. J. K. Beconsall, B. E. Job, S. O’Brien, J. Chem. Soc. A, 1967, 423 [Google Scholar]
  37. L. A. Kosareva, S. V. Larionov, Izv. Akad. Nauk SSSR, Ser. Khim., 1975, 1211 [Google Scholar]
  38. S. V. Larionov, Zh. Neorg. Khim., 1979, 24, 1446 [Google Scholar]
  39. S. V. Larionov, L. A. Kosareva, op. cit. (Ref. 38), 1986, 31, 2334
  40. S. V. Larionov, L. A. Patrina, S. N. Dolgoruk, E. G. Boguslavskii, I. Kovachik, V. B. Durasov, Izv. Akad. Nauk SSSR, Ser. Khim., 1988, 1137 [Google Scholar]
  41. V. I. Ovchazenko, L. A. Patrina, E. G. Boguslavskii, V. N. Ikirskii, V. B. Durasov, S. V. Larionov, Zh. Neorg. Khim., 1987, 32, 1129 [Google Scholar]
  42. T. Honjo, K. Nukui, Bull. Chem. Soc. Jpn., 1986, 59, 2645 [Google Scholar]
  43. A. Z. Rubezhov, Reaktsionnaya Sposobnost π-Allilnych i Monotsiklopentadienilnych Soedinenii Nikelya, Palladiya i Platiny”, Dissert., Moscow, INEOS U.S. Academy of Sciences, 1967 [Google Scholar]
  44. J. E. Gozum, D. M. Pollina, J. A. Jensen, G. S. Girolami, J. Am. Chem. Soc., 1988, 110, 2688 [Google Scholar]
  45. E. Feurer, H. Suhr, Thin Solid Films, 1988, 157, 81 [Google Scholar]
  46. G. A. Domrachev, G. B. Kazarinov, K. K. Fukin, Khimiya Elemento-Organicheskikh Soedinenii”, Gorkii Gos. Univ., 1977, 96 [Google Scholar]
  47. Osazhdenie iz Gazovoi Fazy”, Atomizdat, Moscow, 1970 [Google Scholar]
  48. A. J. Bird, British Patent 1,578, 123; 1980 [Google Scholar]
  49. A. Christ, R. Hüttel, Angew. Chem., 1963, 75, 921 [Google Scholar]
  50. G. B. Kazarinov, O. N. Valegzhaninova, G. A. Domrachev, G. A. Razuvaev, Metody Polucheniya i Analiza Vetshestv Osoboi Chistoty”, Nauka, Moscow, 1970 [Google Scholar]
  51. G. A. Domrachev, K. G. Shalnova, S. N. Titova, Zh. Obshch. Khim., 1975, 45, 319 [Google Scholar]
  52. G. B. Kazarinov, G. A. Domrachev, 1969, 39, 2155
  53. L. M. Zaitsev, A. P. Belov, M. N. Vargaptik, I. I. Moiseev, Zh. Neorg. Khim., 1967, 12, 396 [Google Scholar]
  54. V. A. Nedolinnyi, P. P. Semyannikov, V. M. Grankin, I. K. Igumenov, A. P. Bykov, Izv. Akad. Nauk SSSR, Ser. Khim., 1986, 45 [Google Scholar]
  55. T. A. Sladkova, G. A. Domrachev, K. G. Shalnova, Dokl. Akad. Nauk SSSR, 1972, 203, 848 [Google Scholar]
  56. E. N. Reirink, Z. Anorg. Allg. Chem., 1928, 174, 45 [Google Scholar]
  57. E. C. Marboe, U.S. Patent 2,430, 520; 1947 [Google Scholar]
  58. M. J. Rand, J. Electrochem. Soc., 1973, 120, 686 [Google Scholar]
  59. G. G. Petukhov, N. M. Uvazova, V. B. Polikazpov, Trudy po Khimii i Tekhnologii”, Gorky, 1973, N 2, 119 [Google Scholar]
  60. Inst. Chem. at Gorkovsky State Univ., Russian Patent 441,359; 1974; Bull. Izobr., 1974, N 32 [Google Scholar]
  61. N.M. Uvarova, V.B. Polikarpov, O.N. Druzhkov, T.K. Postnikova, β-Diketonaty Metallov”, Nauka, Moscow, 1978, 14 [Google Scholar]
  62. T. Kruck, Angew. Chem., Int. Ed. Engl., 1967, 6, 53 [Google Scholar]
  63. G. Wilke, B. Bogdanovic, P. Hardt, op. cit. (Ref. 62), 1966, 5, 151
  64. B.E. Mann, B.L. Shaw, J. Chem. Soc. A, 1971, 3536 [Google Scholar]
  65. A.P. Fritz, K.E. Schwarzhaus, J. Organomet. Chem., 1966, 5, 181 [Google Scholar]
  66. X.-J. Chen, H. D. Kaesz, Y. K. Kim, H.-J. Müller, R. S. Williams, Z. Xue, H. D. Kaesz, R. S. Williams, R. F. Hicks, J. I. Zink, X.-J. Chen, H.-J. Müller, Z. Xue, D. Xu, D.K. Shuh, Y.K. Kim, Appl. Phys. Lett., 1989, 55, 2760; New J. Chem., 1990, 14, 527 [Google Scholar]
  67. Shoei Chemical Industries, German Appl. 2, 532,254; 1976 [Google Scholar]
  68. AMP Inc., German Appl. 2, 532,792; 1976 [Google Scholar]
  69. Engelhard Minerals and Chemicals Corp.,British Patent 1, 277,360; 1972 [Google Scholar]
  70. BASF AG., French Patent 1, 435,663; 1966 [Google Scholar]
  71. Union Carbide Corp.,British Patent 1, 114,908; 1968 [Google Scholar]
  72. BASF AG., German Appl. 2, 451,217; 1976 [Google Scholar]
  73. J. Pelz, East German Patent 104 , 966; 1974 [Google Scholar]
  74. W. O. Haag, D. D. Whitehurst, U.S. Patent3, 622,367; 1971 [Google Scholar]
  75. U.S. Department of Energy,German Appl. 3, 018,976; 1980 [Google Scholar]
  76. G. Wilkinson, U.S. Patent 3, 088,961; 1963 [Google Scholar]
  77. E. O. Fischer, H. Werner, U.S. Patent 3, 159,658; 1964 [Google Scholar]
  78. E. O. Fischer, K. Fichtel, U.S. Patent 3, 268,565; 1966 [Google Scholar]
  79. G. Wilkinson, U.S. Patent 3, 452,068; 1969 [Google Scholar]
  80. G. Wilkinson, U.S. Patent 3, 459,780; 1969 [Google Scholar]
  81. Mobil Oil Corp.,British Patent1, 180,891; 1970 [Google Scholar]
  82. W. O. Haag, D. D. Whitehurst, US Patent 3, 635,761; 1972 [Google Scholar]
  83. Mobil Oil Corp.,French Patent1, 568,527; 1969 [Google Scholar]
  84. Mobil Oil Corp.,Dutch Appl. 68/7, 769; 1968 [Google Scholar]
  85. Mobil Oil Corp.,British Appl. 1, 299,413; 1972 [Google Scholar]
  86. B. Blanc, Comptes Rend., 1975, 281, 603 [Google Scholar]
  87. D. B. Smith, British Appl. 1, 456,844; 1977 [Google Scholar]
  88. M. Spohn, J. Strähl, W. Hiller, Z. Naturforsh.B, 1986, 41, 541 [Google Scholar]
  89. P. Khodadad, R. Ceolin, J. Therm. Anal, 1985, 30, 1141 [Google Scholar]
  90. Engelhard Corp.,German Appl.2, 018,104; 1970 [Google Scholar]
  91. Engelhard Corp.,Dutch. Appl. 70/5, 496; 1970 [Google Scholar]
  92. Shoei Chemical Industries Co. Ltd.,British Patent 1, 520,513; 1978 [Google Scholar]
  93. BASF AG.,British Patent 1, 303,865; 1973 [Google Scholar]
  94. Alps. Electric K. K.,Japanese Appl. 61/16, 977; 1987 [Google Scholar]
  95. P. H. Nguyen, European Appl. 266, 877; 1989 [Google Scholar]
  96. IBM Corp.,German Appl. 2, 555,257; 1976 [Google Scholar]
  97. C. R. Brummen, R. N. Shaak, D. M. Andrews, U.S. Patent 3, 937,857; 1976 [Google Scholar]
  98. G. Wunsch, P. Deigner, R. Falk, K. Mahler, W. Loeser, F. Domas, P. Felleisen, W. Steck, U.S. Patent 4, 128,672; 1978 [Google Scholar]
  99. Bayer AG.,German Appl. 3, 025,307; 1982 [Google Scholar]
  100. Bayer AG.,German Appl. 3, 117,247; 1982 [Google Scholar]
  101. H. Ebneth, H. Giesecke, G. D. Wolf, European Appl. 66, 073; 1982 [Google Scholar]
  102. G. D. Wolf, K. Sirinyan, U. Von Gizycki and, R. Merten, European Appl. 259, 754; 1988 [Google Scholar]
  103. Nitto Boseki K. K.,Japanese Appl. 61/186, 250; 1988 [Google Scholar]
  104. T. Kohama, Japanese Appl. 62/284, 082; 1988 [Google Scholar]
  105. Y. Matsumura, I. Nozue, T. Ukachi, U.S. Patent 4, 349,664; 1982 [Google Scholar]
  106. Y. Matsumura, I. Nozue, T. Ukachi, European Appl. 22, 271; 1981 [Google Scholar]
  107. I. Nozue, Y. Yumoto, Y. Matsumura, European Appl. 59, 646; 1982 [Google Scholar]
  108. Nisshin Spinning K. K.,Japanese Appl. 63/274, 778; 1989 [Google Scholar]
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