Axial dysprosium cyclopentadienyl-amide single-molecule magnets with hysteresis up to 92 kelvin

Abstract Molecules showing magnetic memory effects at high temperatures could be used in high-density data storage devices. A magnetic hysteresis temperature ( T H ) of 100 K has been achieved for a near-linear dysprosium bis(amide)-alkene single-molecule magnet (SMM), and a bent dysprosium cyclopentadienyl-amide SMM has shown T H = 73 K. However, both these complexes exhibit fast magnetic relaxation at lower temperatures compared to dysprosium bis(cyclopentadienyl) SMMs. Here we report the synthesis of two highly axial dysprosium cyclopentadienyl-amide SMMs, [Dy{N(Si i Pr 3 ) 2 }(Cp R )][Al{OC(CF 3 ) 3 } 4 ] ( 1-Dy , Cp R = Cp ttt , C 5 H 2 t Bu 3 −1,2,4; 2-Dy , Cp R = Cpʹʹʹ, C 5 H 2 (SiMe 3 ) 3 −1,2,4). We find T H = 91 K for 1-Dy and 92 K for 2-Dy ; ab initio calculations on 1-Dy show that magnetic relaxation is controlled by a combination of short dysprosium-ligand distances, a near-linear N–Dy–Cpʹʹʹ centroid angle, and constrained vibrational modes. Together, this work demonstrates that dysprosium SMMs with large T H values can be achieved with a judicious combination of π-aromatic and σ-donor ligands.

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Publication Details

Journal
Nature Communications
Published
2026-08-26
DOI
https://doi.org/10.1038/s41467-026-77104-z
Citations
1
Primary Topic
Magnetism in coordination complexes
Type
article
Field-Weighted Citation Impact
1.37

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article

Axial dysprosium cyclopentadienyl-amide single-molecule magnets with hysteresis up to 92 kelvin

William Blackmore, Jack Emerson‐King, Benjamin E. Atkinson, David P. Mills et al.
1 citations
Nature Communications
Magnetism in coordination complexes
1.37
article

Axial dysprosium cyclopentadienyl-amide single-molecule magnets with hysteresis up to 92 kelvin

William Blackmore, Jack Emerson‐King, Benjamin E. Atkinson, David P. Mills, Nicholas F. Chilton, Sophie C. Corner, David Paul Mills, Jacinta Rees, Jack Baldwin
article en
1 citations

Abstract

Abstract Molecules showing magnetic memory effects at high temperatures could be used in high-density data storage devices. A magnetic hysteresis temperature ( T H ) of 100 K has been achieved for a near-linear dysprosium bis(amide)-alkene single-molecule magnet (SMM), and a bent dysprosium cyclopentadienyl-amide SMM has shown T H = 73 K. However, both these complexes exhibit fast magnetic relaxation at lower temperatures compared to dysprosium bis(cyclopentadienyl) SMMs. Here we report the synthesis of two highly axial dysprosium cyclopentadienyl-amide SMMs, [Dy{N(Si i Pr 3 ) 2 }(Cp R )][Al{OC(CF 3 ) 3 } 4 ] ( 1-Dy , Cp R = Cp ttt , C 5 H 2 t Bu 3 −1,2,4; 2-Dy , Cp R = Cpʹʹʹ, C 5 H 2 (SiMe 3 ) 3 −1,2,4). We find T H = 91 K for 1-Dy and 92 K for 2-Dy ; ab initio calculations on 1-Dy show that magnetic relaxation is controlled by a combination of short dysprosium-ligand distances, a near-linear N–Dy–Cpʹʹʹ centroid angle, and constrained vibrational modes. Together, this work demonstrates that dysprosium SMMs with large T H values can be achieved with a judicious combination of π-aromatic and σ-donor ligands.

Nature Communications
Australian National University (AU), University of Manchester (GB)
Leverhulme Trust, Engineering and Physical Sciences Research Council
Openalex Percentile: Top 14%
Magnetism in coordination complexes
1.37
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