Two symmetry dysprosium() single-molecule magnets with effective energy barriers over 600 K
Two mononuclear Dy III single-molecule magnets (SMMs) with C 2v coordination symmetry were synthesized. Both of them have strong uniaxial magnetic anisotropy with high effective energy barriers for magnetization reversal over 600 K and hysteresis loops opened up to 8 K, and they are by far the best...
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Published in | Inorganic chemistry frontiers Vol. 8; no. 9; pp. 2349 - 2355 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Published |
04.05.2021
|
Online Access | Get full text |
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Summary: | Two mononuclear Dy
III
single-molecule magnets (SMMs) with
C
2v
coordination symmetry were synthesized. Both of them have strong uniaxial magnetic anisotropy with high effective energy barriers for magnetization reversal over 600 K and hysteresis loops opened up to 8 K, and they are by far the best lanthanide SMMs with a
C
2v
symmetry coordination environment.
Ab initio
calculations reveal that the crystal field around the Dy
III
ion is the key factor determining the magnetization dynamics of the SMMs. The multidentate ligand controls the orientation of the main magnetic axes which are both nearly parallel to the phenoxide Dy-O bonds and perpendicular to the equatorial plane with relatively weak coordination by the four nitrogen atoms and one Cl
−
or Br
−
anion. The variation of the terminal Cl
−
or Br
−
anion slightly influences the magnetization dynamics. This work provides the fundamentals to govern the SMM behavior of lanthanide complexes with a relatively low coordination symmetry of the lanthanide center.
Two high-performance
C
2v
symmetry dysprosium(
iii
) single-molecule magnets were synthesized. The mechanism of magnetization dynamics was studied in detail. |
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Bibliography: | 1 For ESI and crystallographic data in CIF or other electronic format see DOI 2055351 2 2055350 and ( Electronic supplementary information (ESI) available: Additional structural figures, PXRD data, TGA results, additional magnetic data, and crystallographic tables. CCDC Jiangsu 10.1039/d1qi00145k |
ISSN: | 2052-1553 |
DOI: | 10.1039/d1qi00145k |