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Formation of Lanthanide and Actinide Oxonium Ion Complexes with Crown Ethers from a Liquid Clathrate Medium
Hany Hassaballa1, Jonathan W. Steed, Peter C. Junk
1Department of Chemistry, Bedson Building, University of Newcastle upon Tyne, NE1 7RU, U.K.
Abstract:
Reaction of MCl(3).nH(2)O (M = La, Eu) with 18-crown-6 in HCl/toluene affords the crystalline oxonium complexes (H(9)O(4))[LaCl(2)(H(2)O)(18-crown-6)]Cl(2) (1) and (H(3)O)[EuCl(H(2)O)(2)(18-crown-6)]Cl(2) (2). In complex 1 the H(9)O(4)(+) cation is of the unusual linear chain type with O.O contacts of 2.560(9), 2.430(9), and 2.483(9) Å. The analogous reaction with YbCl(3).6H(2)O results in the isolation of the known species (H(5)O(2))[H(3)O.(18-crown-6)]Cl(2). Analogous reaction of YbCl(3).6H(2)O with 15-crown-5 gives [Yb(H(2)O)(8)]Cl(3).(15-crown-5) (5). Reaction of uranyl acetate with 15-crown-5 within a toluene/HCl mixture results in the formation of a yellow liquid clathrate layer from which crystals of (H(5)O(2))[UO(2)(H(2)O)(2)Cl(3)].2(15-crown-5) (6) are deposited. The H(5)O(2)(+) ion in this material exhibits a particularly short O.O separation of 2.371(8) Å. On standing, loss of HCl results in the transformation of 6 into a species of empirical formula [UO(2)(H(2)O)(3)Cl(2)].(15-crown-5) (7) which has been shown by X-ray crystallography to contain 16 unique uranium complexes, arranged in infinite hydrogen-bonded chains in the solid state. Crystal data for 1: monoclinic, P2(1)/c, a = 7.6950(2) Å, b = 21.2160(16) Å, c = 15.8650(10) Å, beta = 92.866(2) degrees, V = 2586.8(3) Å(3), Z = 4. 2: orthorhombic, Pbn2(1), a = 10.2267(6) Å, b = 14.7231(9) Å, c = 29.8565(18) Å, V = 4495.5(5) Å(3), Z = 4. 5: monoclinic, P2(1)/n, a = 9.1740(3) Å, b = 17.1900(3) Å, c = 15.2450(5) Å, beta = 92.643(2) degrees, V = 2401.60(12) Å(3), Z = 4. 6: orthorhombic, Pmcn, a = 12.1740(5) Å, b = 14.7740(7) Å, c = 18.4920(11) Å, V = 3325.9(3) Å(3), Z = 4. 7: trigonal, P3(2), a = 35.3500(2) Å, c = 21.3755(2) Å, V = 23 132.7(3) Å(3), Z = 48.