The High-Temperature Soft Ferromagnetic Molecular Materials Based on [W(CN)(bpy)] System.

Molecules

M. Smoluchowski Institute of Physics, Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, 30-001 Kraków, Poland.

Published: July 2022

AI Article Synopsis

  • The synthesis of molecular ferromagnetic materials, particularly using cyanido ligands, has gained traction in coordination chemistry over the past 30 years.
  • A method has been developed to convert cyanido complexes into soft ferromagnetic materials with a high Curie temperature (above 150 °C), suitable for various applications.
  • The research highlights the creation of ferromagnetic compounds from zinc and cadmium hexacyanido salts, along with a patented synthesis method that produces over 80 different high-temperature ferromagnetic compounds.

Article Abstract

The synthesis of molecular materials with magnetic properties, in particular ferromagnetic properties, has been the subject of interest in coordination chemistry for decades. In the last three decades, research has accelerated, as it has emerged that creating bridging systems based on cyanido ligands is a good and relatively simple way to create complex polymer structures exhibiting magnetic properties. Based on many years of personal experience in the field of the synthesis of polycyanido systems, supported by comprehensive structural analysis, a simple method of transforming cyanido complexes into soft ferromagnetic materials with a Curie temperature (T) higher than the thermal decomposition temperature, usually above 150 °C has been developed. Two soft ferromagnetic materials based on zinc and cadmium hexacyanido salts in the system with [W(CN)(bpy)] anions are presented. The crystal structures (X-ray single crystal as well as XRD) of the precursors and the properties of the ferromagnetic materials are discussed. Most importantly, a patented method of synthesizing this type of material, based on which we obtain more than 80 soft, high-temperature ferromagnetic compounds, which proves the wide spectrum of this method, is also presented.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9315671PMC
http://dx.doi.org/10.3390/molecules27144525DOI Listing

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