Molecules (Jul 2024)

Chiral Star-Shaped [Co<sup>III</sup><sub>3</sub>Ln<sup>III</sup>] Clusters with Enantiopure Schiff Bases: Synthesis, Structure, and Magnetism

  • Liudi Ji,
  • Juntao Wang,
  • Zeyu Li,
  • Xiaoming Zhu,
  • Peng Hu

DOI
https://doi.org/10.3390/molecules29143304
Journal volume & issue
Vol. 29, no. 14
p. 3304

Abstract

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Two enantiomeric pairs of new 3d–4f heterometallic clusters have been synthesized from two enantiomer Schiff base derivatives: (R/S)-2-[(2-hydroxy-1-phenylethylimino)methyl] phenol (R-/S-H2L). The formulae of the series clusters are Co3Ln(R-L)6 (Ln = Dy (1R), Gd (2R)), Co3Ln (S-L)6 (Ln = Dy (1S), Gd (2S)), whose crystal structures and magnetic properties have been characterized. Structural analysis indicated that the above clusters crystallize in the chiral P213 group space. The central lanthanide ion has a coordination geometry of D3 surrounded by three [CoIII(L)2]– anions using six aliphatic oxygen atoms of L2− featuring a star-shaped [CoIII3LnIII] configuration. Magnetic measurements showed the presence of slow magnetic relaxation with an effective energy barrier of 22.33 K in the DyIII derivatives under a zero-dc field. Furthermore, the circular dichroism (CD) spectra of 1R and 1S confirmed their enantiomeric nature.

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