volume 548 issue 7668 pages 439-442

Molecular magnetic hysteresis at 60 kelvin in dysprosocenium

Conrad A P Goodwin 1
Fabrizio Ortu 1
Daniel Reta 1
Nicholas F Chilton 1
David P Mills 1
Publication typeJournal Article
Publication date2017-08-22
scimago Q1
wos Q1
SJR18.288
CiteScore78.1
Impact factor48.5
ISSN00280836, 14764687
PubMed ID:  28836589
Multidisciplinary
Abstract
Magnetic hysteresis is observed in a dysprosocenium complex at temperatures of up to 60 kelvin, the origin of which is the localized metal–ligand vibrational modes unique to dysprosocenium. The discovery of molecules that exhibit magnetic bistability raised hopes for the use of such molecular systems as tiny building blocks for magnetic data storage. Despite a quarter of a century of research, however, the temperatures at which these molecules display their desirable magnetic properties remain frustratingly low. Conrad Goodwin et al. report the synthesis and characterization of a molecular dysprosocenium complex that shows magnetic bistability up to 60 kelvin—tantalizingly close to liquid nitrogen temperatures, the point at which applications would start to become a realistic possibility. Lanthanides have been investigated extensively for potential applications in quantum information processing and high-density data storage at the molecular and atomic scale. Experimental achievements include reading and manipulating single nuclear spins1,2, exploiting atomic clock transitions for robust qubits3 and, most recently, magnetic data storage in single atoms4,5. Single-molecule magnets exhibit magnetic hysteresis of molecular origin6—a magnetic memory effect and a prerequisite of data storage—and so far lanthanide examples have exhibited this phenomenon at the highest temperatures. However, in the nearly 25 years since the discovery of single-molecule magnets7, hysteresis temperatures have increased from 4 kelvin to only about 14 kelvin8,9,10 using a consistent magnetic field sweep rate of about 20 oersted per second, although higher temperatures have been achieved by using very fast sweep rates11,12 (for example, 30 kelvin with 200 oersted per second)12. Here we report a hexa-tert-butyldysprosocenium complex—[Dy(Cpttt)2][B(C6F5)4], with Cpttt = {C5H2tBu3-1,2,4} and tBu = C(CH3)3—which exhibits magnetic hysteresis at temperatures of up to 60 kelvin at a sweep rate of 22 oersted per second. We observe a clear change in the relaxation dynamics at this temperature, which persists in magnetically diluted samples, suggesting that the origin of the hysteresis is the localized metal–ligand vibrational modes that are unique to dysprosocenium. Ab initio calculations of spin dynamics demonstrate that magnetic relaxation at high temperatures is due to local molecular vibrations. These results indicate that, with judicious molecular design, magnetic data storage in single molecules at temperatures above liquid nitrogen should be possible.
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GOST Copy
Goodwin C. A. P. et al. Molecular magnetic hysteresis at 60 kelvin in dysprosocenium // Nature. 2017. Vol. 548. No. 7668. pp. 439-442.
GOST all authors (up to 50) Copy
Goodwin C. A. P., Ortu F., Reta D., Chilton N. F., Mills D. P. Molecular magnetic hysteresis at 60 kelvin in dysprosocenium // Nature. 2017. Vol. 548. No. 7668. pp. 439-442.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1038/nature23447
UR - https://doi.org/10.1038/nature23447
TI - Molecular magnetic hysteresis at 60 kelvin in dysprosocenium
T2 - Nature
AU - Goodwin, Conrad A P
AU - Ortu, Fabrizio
AU - Reta, Daniel
AU - Chilton, Nicholas F
AU - Mills, David P
PY - 2017
DA - 2017/08/22
PB - Springer Nature
SP - 439-442
IS - 7668
VL - 548
PMID - 28836589
SN - 0028-0836
SN - 1476-4687
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2017_Goodwin,
author = {Conrad A P Goodwin and Fabrizio Ortu and Daniel Reta and Nicholas F Chilton and David P Mills},
title = {Molecular magnetic hysteresis at 60 kelvin in dysprosocenium},
journal = {Nature},
year = {2017},
volume = {548},
publisher = {Springer Nature},
month = {aug},
url = {https://doi.org/10.1038/nature23447},
number = {7668},
pages = {439--442},
doi = {10.1038/nature23447}
}
MLA
Cite this
MLA Copy
Goodwin, Conrad A. P., et al. “Molecular magnetic hysteresis at 60 kelvin in dysprosocenium.” Nature, vol. 548, no. 7668, Aug. 2017, pp. 439-442. https://doi.org/10.1038/nature23447.