NEW APPROACHES TO SYNTHESIS OF HETEROPOLYNUCLEAR COMPLEXES

Authors

  • V. Skopenko, DSc (Chemistry) Taras Shevchenko National University of Kyiv image/svg+xml
  • V. Kokozay, DSc (Chemistry) Taras Shevchenko National University of Kyiv image/svg+xml

Keywords:

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Abstract

The idea of direct synthesis of coordination compounds — the use of elemental metals or their oxides as starting materials — has been developed into the “salt route,” “ammonium salt route,” “direct template synthesis,” and “direct permanganate” methods to synthesize heteropolynuclear complexes of transition metals. The advantages of this approach in obtaining heteropolynuclear complexes are shown by taking complexes of transition metals with aminoalcohol ligands, ethylenediamine, and their derivatives as examples. The results of the X-ray crystal structure analysis of the most interesting complexes are presented. The perspectives of the development of the direct synthesis methods for preparation of heteropolynuclear complexes are discussed.

References

1. Кокозей В. М., Шевченко Д. В., Прима О. В., Петрусенко С. Р. Пат. № 51007 А, МПК C01G 1/00 (Україна). Спосіб прямого темплатного синтезу гетерометалевих комплексів. — Опубл. 15.11.02. — Бюл. № 11.

2. Прямой синтез координационных соединений / Под ред. В. В. Скопенко. — Киев: Вентури, 1997.

3. Buvaylo E. A., Kokozay V. N., Vassilyeva O. Yu. et al. // Chem. Commun. — 2005. — P. 4976–4978.

4. Gerbeleu N. V., Arion V. B., Burgess J. Template Synthesis of Macrocyclic Compounds. — Weinheim: Wiley-VCH, 1999.

5. House D. A., Curtis N. F. // J. Am. Chem. Soc. — 1964. — Vol. 86. — P. 1331.

6. Kahn O. Molecular Magnetism. — N. Y.: VCH Publishers, 1993.

7. Kaim W., Schwederski B. Bioinorganic Chemistry: Inorganic Elements in the Chemistry of Life. — Chichester: John Wiley & Sons, 1995.

8. Kovbasyuk L. A., Vassilyeva O. Yu., Kokozay V. N. et al. // J. Chem. Soc., Dalton Trans. — 1998. — P. 2735.

9. Makhankova V. G., Vassilyeva O. Yu., Kokozay V. N. et al. // New J. Chem. — 2001. — Vol. 25. — P. 685.

10. Makhankova V. G., Vassilyeva O. Yu., Kokozay V. N. et al. // J. Chem. Soc., Dalton Trans. — 2002. — P. 4253.

11. Nesterova O. V., Lipetskaya A. V., Petrusenko S. R. et al. // Polyhedron. — 2005. — Vol. 24. — P. 1425–1434.

12. Nesterova O. V., Petrusenko S. R., Kokozay V. N. et al. // Inorg. Chim. Acta. — 2005. — Vol. 358. — P. 2725–2738.

13. Pryma O. V., Petrusenko S. R., Kokozay V. N. et al. // Inorg. Chem. Commun. — 2003. — Vol. 6. — P. 896.

14. Pryma O. V., Petrusenko S. R., Kokozay V. N. et al. // Z. Naturforsch., B. — 2003. — Vol. 58. — P. 1117.

15. Pryma O. V., Petrusenko S. R., Kokozay V. N., Skelton B. W. // Inorg. Chem. Commun. — 2000. — Vol. 3. — P. 450.

16. Pryma O. V., Petrusenko S. R., Kokozay V. N. et al. // Eur. J. Inorg. Chem. — 2003. — P. 1426.

17. Shevchenko D. V., Petrusenko S. R., Kokozay V. N. et al. // Inorg. Chem. Commun. — 2005. — Vol. 8. — P. 665–668.

18. Shevchenko D. V., Petrusenko S. R., Kokozay V. N. et al. // Inorg. Chim. Acta. — 2005. — Vol. 358. — P. 3889–3904.

19. Vassilyeva O. Yu., Kokozay V. N., Zhukova N. I., Kovbasyuk L. A. // Polyhedron. — 1997. — Vol. 16. — P. 263.

20. Vassilyeva O. Yu., Kovbasyuk L. A., Kokozay V. N., Linert W. // Z. Kristallograf. NCS. — 1998. — Vol. 213. — P. 437.

21. Vinogradova E. A., Vassilyeva O. Yu., Kokozay V. N. et al. // New J. Chem. — 2001. — Vol. 25. — P. 949.

22. Vinogradova E. A., Vassilyeva O. Yu., Kokozay V. N. et al. // J. Chem. Soc., Dalton Trans. — 2002. — P. 4248–4252.

23. Zanello P., Tamburini S., Vigato P. A., Mazzocchin G. A. // Coord. Chem. Rev. — 1987. — Vol. 77. — P. 165–273.

Published

2007-07-14

How to Cite

NEW APPROACHES TO SYNTHESIS OF HETEROPOLYNUCLEAR COMPLEXES. (2007). Bulletin of the Taras Shevchenko National University of Kyiv. Chemistry, 44(1), 27-34. https://chemistry.bulletin.knu.ua/article/view/8349

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