4.5 Article

N,N′-Bis(3-methoxysalicylidene)propane-1,2-diamine mononuclear 4f and heterodinuclear Cu-4f complexes: Synthesis, crystal structure and electrochemical properties

Journal

INORGANICA CHIMICA ACTA
Volume 362, Issue 6, Pages 1761-1766

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.ica.2008.08.016

Keywords

Synthesis; Mononuclear 4f; Heterodinuclear Cu-4f; Salen-type; Electrochemistry

Funding

  1. National Natural Science Foundation of China [20572018, 20672032]
  2. Heilongjiang Province [1055HZ001, ZJG0504, JC200605, 1152GZD02, 11531284]
  3. Heilongjiang University

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Reactions of H2L [H2L = N,N'-bis(3-methoxysalicylidene)propane-1,2-diamine] and Ln(NO3)(3) center dot 6H(2)O give rise to two different mononuclear 4f complexes, namely, {[(H2L)La(NO3)(3)(MeOH)] center dot H2O}(n) (1) and [(H2L)Nd(NO3)(3)] (2). Further additions of Cu(Ac)(2) center dot H2O to the mononuclear 4f complexes yield expected heterodinuclear Cu-4f complexes [LCu(Me2CO)Ln(NO3)(3)] (3, Ln = Nd; 4, Ln = Eu; 5, Ln = Dy). Complex 1 is a unique 1D polymeric chain structure, and 2 is one of the few structurally characterized discrete hexadentate salen-type mononuclear 4f complexes. Complexes 3-5 are similar to their analogues. However, they are prepared by a reversed synthetic route in contrast to their isomorphic complexes. Electrochemical behavior of heterodinuclear Cu-4f complexes 3-5 has been examined by cyclic voltammetry in acetonitrile. The redox potential of heterodinuclear Cu-4f complexes 3-5 shows significant anodic shift comparing to that of mononuclear copper complex (LCu). A tendency of anodic shift was observed in a sequence of 3 < 4 < 5. This results from the modulating effect of coordination geometry around Cu(II) ion on redox potential. (C) 2008 Elsevier B. V. All rights reserved.

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