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Transition Metal Single-Molecule Magnets: A {Mn31} Nanosized Cluster with a Large Energy Barrier of ∼60 K and Magnetic Hysteresis at ∼5 K.

Parisa AbbasiKevan QuinnDimitris I AlexandropoulosMarko DamjanovićWolfgang WernsdorferAlbert EscuerJulia MayansMelanie PilkingtonTheocharis C Stamatatos
Published in: Journal of the American Chemical Society (2017)
The first {Mn31} cluster (1) has been prepared from carboxylate ions and the chelating/bridging ligand α-methyl-2-pyridine-methanol. Compound 1 possesses a unique nanosized structural topology with one of the largest energy barriers reported to-date for high-nuclearity 3d-metal clusters. Single-crystal magnetic hysteresis studies reveal the presence of hysteresis loops below 5 K, one of the highest temperatures below which molecular hysteresis has been observed for 3d-based SMMs.
Keyphrases
  • transition metal
  • single molecule
  • molecularly imprinted
  • atomic force microscopy
  • living cells
  • genome wide
  • room temperature
  • single cell
  • metal organic framework
  • carbon dioxide