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Title

Assisted Self‐Assembly to Target Heterometallic Mn‐Nd and Mn‐Sm SMMs: Synthesis and Magnetic Characterisation of [Mn<sub>7</sub>Ln<sub>3</sub>(O)<sub>4</sub>(OH)<sub>4</sub>(mdea)<sub>3</sub>(piv)<sub>9</sub>(NO<sub>3</sub>)<sub>3</sub>] (Ln=Nd, Sm, Eu, Gd)**

Authors

Kaemmerer, Hagen; Mereacre, Valeriu; Ako, Ayuk M.; Mameri, Samir; Anson, Christopher E.; Clérac, Rodolphe; Powell, Annie K.

Abstract

In an assisted self‐assembly approach starting from the [Mn6O2(piv)10(4‐Me‐py)2(pivH)2] cluster a family of Mn−Ln compounds (Ln=Pr−Yb) was synthesised. The reaction of [Mn6O2(piv)10(4‐Me‐py)2(pivH)2] (1) with N‐methyldiethanolamine (mdeaH2) and Ln(NO3)3 ⋅ 6H2O in MeCN generally yields two main structure types: for Ln=Tb−Yb a previously reported Mn5Ln4 motif is obtained, whereas for Ln=Pr−Eu a series of Mn7Ln3 clusters is obtained. Within this series the GdIII analogue represents a special case because it shows both structural types as well as a third Mn2Ln2 inverse butterfly motif. Variation in reaction conditions allows access to different structure types across the whole series. This prompts further studies into the reaction mechanism of this cluster assisted self‐assembly approach. For the Mn7Ln3 analogues reported here variable‐temperature magnetic susceptibility measurements suggest that antiferromagnetic interactions between the spin carriers are dominant. Compounds incorporating Ln=NdIII(2), SmIII(3) and GdIII (5) display SMM behaviour. The slow relaxation of the magnetisation for these compounds was confirmed by ac measurements above 1.8 K.

Subjects

MAGNETIC measurements; MAGNETIC susceptibility; SINGLE molecule magnets; RARE earth metals; MAGNETIZATION; YTTERBIUM; BUTTERFLIES; TERBIUM

Publication

Chemistry - A European Journal, 2021, Vol 27, Issue 61, p15095

ISSN

0947-6539

Publication type

Academic Journal

DOI

10.1002/chem.202102912

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