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Fulvalene as a platform for the synthesis of a dimetallic dysprosocenium single-molecule magnet. | LitMetric

Fulvalene as a platform for the synthesis of a dimetallic dysprosocenium single-molecule magnet.

Chem Sci

Department of Chemistry , School of Life Sciences , University of Sussex, Brighton , BN1 9QR , UK . Email:

Published: June 2020

The dinucleating fulvalenyl ligand [1,1',3,3'-(C BuH)] (Fv) was used to synthesize the dimetallic dysprosocenium cation [{Dy(η-Cp*)}(μ-BH)(η:η-Fv)] () as the salt of [B(CF)] (Cp* = CMe). Compound [][B(CF)] was obtained using a method in which the double half-sandwich complex [{Dy(BH)(THF)}(Fv)] () was reacted with KCp* to give the double metallocene [{Dy(Cp*)(μ-BH)}(Fv)] (), followed by removal of a bridging borohydride ligand upon addition of [(EtSi)(μ-H)][B(CF)]. The dimetallic fulvalenyl complexes give rise to single-molecule magnet (SMM) behaviour in zero applied field, with the effective energy barriers of 154(15) cm, 252(4) cm and 384(18) cm, respectively, revealing a significant improvement in performance across the series. The magnetic properties are interpreted with the aid of calculations, which show substantial increases in the axiality of the crystal field from to to as a consequence of the increasingly dominant role of the Fv and Cp* ligands, with the barrier height and hysteresis properties being attenuated by the equatorial borohydride ligands. The experimental and theoretical results described in this study furnish a blueprint for the design and synthesis of poly-cationic dysprosocenium SMMs with properties that may surpass those of benchmark systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7422961PMC
http://dx.doi.org/10.1039/d0sc02033hDOI Listing

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