A Dysprosium Metallocene Single‐Molecule Magnet Functioning at the Axial Limit
magneettiset ominaisuudet
Nanoscience Center
dysprosium
anisotropy
single-molecule magnets
organometalliyhdisteet
harvinaiset maametallit
cyclopentadienyl ligands
ta116
01 natural sciences
0104 chemical sciences
DOI:
10.1002/ange.201705426
Publication Date:
2017-06-06T15:27:41Z
AUTHORS (6)
ABSTRACT
AbstractAbstraction of a chloride ligand from the dysprosium metallocene [(Cpttt)2DyCl] (1Dy Cpttt=1,2,4‐tri(tert‐butyl)cyclopentadienide) by the triethylsilylium cation produces the first base‐free rare‐earth metallocenium cation [(Cpttt)2Dy]+ (2Dy) as a salt of the non‐coordinating [B(C6F5)4]− anion. Magnetic measurements reveal that [2Dy][B(C6F5)4] is an SMM with a record anisotropy barrier up to 1277 cm−1 (1837 K) in zero field and a record magnetic blocking temperature of 60 K, including hysteresis with coercivity. The exceptional magnetic axiality of 2Dy is further highlighted by computational studies, which reveal this system to be the first lanthanide SMM in which all low‐lying Kramers doublets correspond to a well‐defined MJ value, with no significant mixing even in the higher doublets.
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