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Single-Molecule Magnets DyM2 N@C80 and Dy2 MN@C80 (M=Sc, Lu): The Impact of Diamagnetic Metals on Dy3+ Magnetic Anisotropy, Dy???Dy Coupling, and Mixing of Molecular and Lattice Vibrations.


ABSTRACT: The substitution of scandium in fullerene single-molecule magnets (SMMs) DySc2 N@C80 and Dy2 ScN@C80 by lutetium has been studied to explore the influence of the diamagnetic metal on the SMM performance of dysprosium nitride clusterfullerenes. The use of lutetium led to an improved SMM performance of DyLu2 N@C80 , which shows a higher blocking temperature of magnetization (TB =9.5?K), longer relaxation times, and broader hysteresis than DySc2 N@C80 (TB =6.9?K). At the same time, Dy2 LuN@C80 was found to have a similar blocking temperature of magnetization to Dy2 ScN@C80 (TB =8?K), but substantially different interactions between the magnetic moments of the dysprosium ions in the Dy2 MN clusters. Surprisingly, although the intramolecular dipolar interactions in Dy2 LuN@C80 and Dy2 ScN@C80 are of similar strength, the exchange interactions in Dy2 LuN@C80 are close to zero. Analysis of the low-frequency molecular and lattice vibrations showed strong mixing of the lattice modes and endohedral cluster librations in k-space. This mixing simplifies the spin-lattice relaxation by conserving the momentum during the spin flip and helping to distribute the moment and energy further into the lattice.

SUBMITTER: Spree L 

PROVIDER: S-EPMC7065109 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Single-Molecule Magnets DyM<sub>2</sub> N@C<sub>80</sub> and Dy<sub>2</sub> MN@C<sub>80</sub> (M=Sc, Lu): The Impact of Diamagnetic Metals on Dy<sup>3+</sup> Magnetic Anisotropy, Dy⋅⋅⋅Dy Coupling, and Mixing of Molecular and Lattice Vibrations.

Spree Lukas L   Schlesier Christin C   Kostanyan Aram A   Westerström Rasmus R   Greber Thomas T   Büchner Bernd B   Avdoshenko Stanislav M SM   Popov Alexey A AA  

Chemistry (Weinheim an der Bergstrasse, Germany) 20200206 11


The substitution of scandium in fullerene single-molecule magnets (SMMs) DySc<sub>2</sub> N@C<sub>80</sub> and Dy<sub>2</sub> ScN@C<sub>80</sub> by lutetium has been studied to explore the influence of the diamagnetic metal on the SMM performance of dysprosium nitride clusterfullerenes. The use of lutetium led to an improved SMM performance of DyLu<sub>2</sub> N@C<sub>80</sub> , which shows a higher blocking temperature of magnetization (T<sub>B</sub> =9.5 K), longer relaxation times, and broade  ...[more]

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