Dalton Transactions, Volume 47, Issue 3, Pages 859-867 , 01/01/2018

Slow relaxation of magnetization in a bis-: Mer -tridentate octahedral Co(II) complex

Darunee Sertphon, Keith S. Murray, Wasinee Phonsri, Jesús Jover, Eliseo Ruiz, Shane G. Telfer, Adil Alkaş, Phimphaka Harding, David J. Harding

Abstract

Reaction of a rigid tridentate ligand o-[(1H-imidazol-2-yl)methylideneamino]phenol (2-H<inf>2</inf>imap) with Co(ClO<inf>4</inf>)<inf>2</inf> in the presence of NaN<inf>3</inf>, or Co(NO<inf>3</inf>)<inf>2</inf> without a base yields [Co<sup>II</sup>(2-Himap)<inf>2</inf>] 1 and [Co<sup>III</sup>(2-Himap)<inf>2</inf>]NO<inf>3</inf>·MeOH 2, respectively. Both complexes exhibit a mer-octahedral geometry with the cobalt centre being distorted along an octahedral-trigonal prismatic pathway. The packing in 1 and 2 is dominated by H-bonding forming 2D sheets and 1D chains, respectively. Detailed dc and ac magnetic studies indicate that 1 is a field-induced single-ion magnet (SIM) with D = 36.7 cm<sup>-1</sup> and E = 2.0 cm<sup>-1</sup>. Extensive ab initio calculations support these conclusions and suggest that relaxation of the magnetization occurs principally through direct quantum tunnelling in the ground state, with the Raman process dominant in an applied field. This contrasts with the recently reported series of mer-[Co(L)<inf>2</inf>] (L = monoanionic NNO donor ligand; Inorg. Chem., 2017, 56, 6056-6066) complexes where D is negative, as these compounds have a more ambiguous geometry, and highlights the importance of supramolecular interactions in subtly altering the coordination sphere thereby impacting the magnetic behaviour.

Document Type

Article

Source Type

Journal

ASJC Subject Area

Chemistry : Inorganic Chemistry

Funding Agency

Australian Research Council


Bibliography


Sertphon, D., Murray, K., Phonsri, W., Jover, J., Ruiz, E., Telfer, S., Alkaş, A., ... Harding, D. (2018). Slow relaxation of magnetization in a bis-: Mer -tridentate octahedral Co(II) complex. Dalton Transactions, 47(3) 859-867. doi:10.1039/c7dt04335j

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