Coordination clusters containing 4f metal ions can show a number of remarkable magnetic behaviors beyond that of acting as Single Molecule Magnets (SMMs). This is a consequence of strong spin-orbit coupling effects which lead to unusually anisotropic spins for many of the 4f electron configurations. The dysprosium3+ ion is the most famous example of an ion with an oblate anisotropy ellipsoid and this leads to an Ising spin ground state, i.e. with the spin oriented along the z-axis and with tiny spin components in the xy plane. This, in turn, can lead to exotic spin systems such as the first identified molecular realization of a toroidal spin system in a molecule containing a Dy3 triangle which was produced and studied in our laboratory and became a molecule of interest with our longstanding collaborators [1-3]
Further such toroidal Dy3 triangles will be presented, including ones where the triangular arrangement is supported and/or induced by the presence of 3d transition metal ions.
In addition, two cyclic FeIII -DyIII systems will be described where a solenoidal toroidal moment can be disrupted into what is possibly a molecular realization of an anyon-based [4] arrangement of spin partners.
[1] J. Tang, I. Hewitt, N. T. Madhu, G. Chastanet, W. Wernsdorfer, C. E. Anson, C. Benelli, R. Sessoli, A. K. Powell, Angew. Chem. Int. Ed., 2006, 45, 1729.
[2] L. Chibotaru, A. Soncini, Angew. Chem Int. Ed., 2008, 45, 4126.
[3] J. Luzon, K. Bernot, I. J. Hewitt, C. E. Anson, A. K. Powell, R. Sessoli, Phys. Rev. Lett., 2008, 100, 247205.
[4] D. Castelvecchi, Nature, 2020, 583, 176.