Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. Here we demonstrate this principle in the context of CoII-based single-ion magnets. Using multi-frequency EPR, susceptibility and magnetization measurements we found that these complexes show some of the highest zero field splittings reported for five-coordinate CoII complexes to date. The predictable coordination behaviour of the interlocked ligands allowed the magnetic properties of their CoII complexes to be evaluated computationally a priori and our combined experimental and theoretical approach enabled us to rationalize the observed trends. The predictable magnetic behaviour of the rotaxane CoII complexes demonstrates that interlocked li...
The key characteristic of single-molecule magnets (SMMs) is the anisotropy-induced blocking barrier,...
Synthesis and characterization of structure and magnetic properties of the quasi octahedral complex ...
Single-molecule magnet (SMM) properties of transition-metal complexes coordinated to lacunary polyox...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Early work by Sauvage revealed that mechanical bonding alters the stability and redox properties of ...
The pursuit of single-molecule magnets (SMMs) with better performance urges new molecular design tha...
Chapter 1 of this dissertation provides an introduction to the field of single-molecule magnetism th...
International audienceUnderstanding the factors that control the magnitude and symmetry of magnetic ...
Low-coordinate metallic ions have been well recognized for constructing good-performance single ion ...
The achieved results of the two here described sub-projects of heterometallic and heterovalent cobal...
The already reported monomeric complex Co(SDZ)2bpy (1) and the new ternary complex Co(SDZ)2(6MQ)2 (2...
Single-ion magnets (SIMs) are potential building blocks of novel quantum computing devices. Unique m...
A tetranuclear cubane-type complex [Co4(ntfa)4(CH3O)4(CH3OH)4] (1) with a {Co4O4} core, and a mononu...
The key characteristic of single-molecule magnets (SMMs) is the anisotropy-induced blocking barrier,...
Synthesis and characterization of structure and magnetic properties of the quasi octahedral complex ...
Single-molecule magnet (SMM) properties of transition-metal complexes coordinated to lacunary polyox...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Mechanically chelating ligands have untapped potential for the engineering of metal ion properties. ...
Early work by Sauvage revealed that mechanical bonding alters the stability and redox properties of ...
The pursuit of single-molecule magnets (SMMs) with better performance urges new molecular design tha...
Chapter 1 of this dissertation provides an introduction to the field of single-molecule magnetism th...
International audienceUnderstanding the factors that control the magnitude and symmetry of magnetic ...
Low-coordinate metallic ions have been well recognized for constructing good-performance single ion ...
The achieved results of the two here described sub-projects of heterometallic and heterovalent cobal...
The already reported monomeric complex Co(SDZ)2bpy (1) and the new ternary complex Co(SDZ)2(6MQ)2 (2...
Single-ion magnets (SIMs) are potential building blocks of novel quantum computing devices. Unique m...
A tetranuclear cubane-type complex [Co4(ntfa)4(CH3O)4(CH3OH)4] (1) with a {Co4O4} core, and a mononu...
The key characteristic of single-molecule magnets (SMMs) is the anisotropy-induced blocking barrier,...
Synthesis and characterization of structure and magnetic properties of the quasi octahedral complex ...
Single-molecule magnet (SMM) properties of transition-metal complexes coordinated to lacunary polyox...