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April 29, 2026Crystal Growth & Design0 citations

Assembling Five-Coordinated Cobalt(II) Dimers in a Cyanide Framework with nia Topology and Slow Magnetic Relaxation

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FXFangxue XuASAkshay Pratap SinghASAo-Na Sun

Key Points

  • This study explores the assembly of cobalt(II) dimers in a unique cyanide-bridged framework.
  • Microwave-assisted reaction to synthesize cobalt dimers with a cyanide framework.
  • Structural analysis through magnetic susceptibility measurements and theoretical calculations.
  • Evaluation of slow magnetic relaxation mechanisms in the synthesized compound.
  • Identified cobalt(II) dimers with significant magnetic anisotropy.
  • Established a ground state configuration of S = 3 due to ferromagnetic interactions.
  • Demonstrated slow magnetic relaxation through direct mechanisms in the cobalt framework.

Abstract

The microwave-assisted reaction of a simple cobalt salt and diamagnetic hexacyanidocobaltate(III) produces an unprecedented cyanide-bridged 3D framework featuring pentacoordinate binuclear Co(II) secondary building units. Structural analysis shows that the Co2+ ions, in a distorted trigonal bipyramidal geometry, are bridged by two O2–/O atoms and connected by CoIII(CN)63– anions, forming a unique nia topology. DC magnetic susceptibility and theoretical calculations indicate strong ferromagnetic interactions between the Co2+ ions, resulting in an S = 3 ground state with significant easy-axis magnetic anisotropy. The ac magnetic susceptibility indicates the compound exhibits field-induced slow magnetic relaxation happening through Raman and direct magnetic relaxation, establishing the compound as the first cyanide-bridged Co(II) single-molecule magnet (SMM) framework with a nia topology.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69f154a4879cb923c4944d35https://doi.org/10.1021/acs.cgd.6c00262
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