A Complexation Study of Novel Triaza and Hexaaza Macrocycles for the Use of Analytical Reagents

  • Wakita, Hisanobu (Department of Chemistry, Faculty of Science, Fukuoka University) ;
  • Yamaguchi, Toshio (Department of Chemistry, Faculty of Science, Fukuoka University) ;
  • Matsuki, Yuuichi (Department of Chemistry, Faculty of Science, Fukuoka University) ;
  • Kurisaki, Tsutomu (Department of Chemistry, Faculty of Science, Fukuoka University)
  • Received : 1995.08.20
  • Published : 1995.12.25

Abstract

Novel macrocyclic ligands modified with pendant arms, N, N', N'', N''', N'''', N'''''-hexakis(2-aminoethyl)-1, 4, 7, 10, 13, 16-hexaazacyclootadecane [$L_3$, Fig.1] and 1, 4, 7-tris(3-(o-hydroxyphenyl)propyl)-1, 4, 7-triazacyclononane [$L_4$, Fig.1] have been synthesized, and the protonation of $L_3$ and $L_4$ and stability constants of $L_3$ with bivalent transition metal ions and rare earth metal ions were determined by a potentiometry. The obtained results show that the complex formation of $L_3$ depends on the metal ligand ratios, and the stability of the metal complexes does not depend on the sizes of the metal ions, but on the nature of the metal ions. The structures of the rare earth complexes for $L_4$ were characterized by an X-ray absorption spectrometry(XAFS).

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Acknowledgement

Grant : Synthesis and Solute Structure Analysis of Rare Earth Complexes of New Macrocyclic polyamines

Supported by : Ministry of Education