4.1 Article

Interaction of 18-crown-6 with yttrium chloride: inner-sphere transformations of complexes under conditions of solid-state thermolysis

Journal

RUSSIAN CHEMICAL BULLETIN
Volume 61, Issue 11, Pages 2056-2064

Publisher

SPRINGER
DOI: 10.1007/s11172-012-0287-z

Keywords

yttrium; chloride; crown ether; thermal decomposition

Funding

  1. Russian Foundation for Basic Research [11-03-00644]
  2. Council on Grants at the President of the Russian Federation (Program for State Support of Leading Scientific Schools of the Russian Federation) [NSh-1670.2012.3]
  3. Ministry of Education and Science of the Russian Federation (Federal Contract) [GKP8437]
  4. Russian Academy of Sciences (Target Programs of the Division of Chemistry and Materials Science of the Russian Academy of Sciences)
  5. Russian Academy of Sciences (Presidium of the Russian Academy of Sciences)

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The reactions of [YCl2(H2O)(6)]Cl with 18-crown-6 in aliphatic alcohol solutions afford the complexes [Y(H2O)(3)(18-crown-6)]Cl-3 center dot 1.25H(2)O (1) and [Y(H2O)(8)]Cl-3 center dot(18-crown-6)center dot 4H(2)O (2), in which the inner coordination sphere of yttrium consists of nine and eight oxygen atoms, respectively. The inner-sphere transformations of complexes 1 and 2 under conditions of solid-state thermolysis were investigated. After the removal of coordinated water molecules from compound 1, the complex undergoes a structural transformation at temperatures above 180 A degrees C, resulting in that two chloride anions enter into the coordination sphere of yttrium. For compound 2, a double exothermic effect is observed in the temperature range of 160-300 A degrees C due to the formation of a certain new structural species containing chloride ions and 18-crown-6 in the inner coordination sphere.

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