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  6. Spin–phonon Couplings in Transition Metal Complexes with Slow Magnetic Relaxation
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Spin–phonon Couplings in Transition Metal Complexes with Slow Magnetic Relaxation

Source Publication
Nature Communications
Date Issued
July 3, 2018
Author(s)
Moseley, Duncan H.
Stavretis, Shelby E.
Thirunavukkuarasu, Komalavalli
Ozerov, Mykhaylo
Cheng, Yongqiang
Daemen, Luke L.
Ludwig, Jonathan
Lu, Zhengguang
Smirnov, Dmitry
Brown, Craig M.
Pandey, Anup
Ramirez-Cuesta, A. J.
Lamb, Adam C.
Atanasov, Mihail
Bill, Eckhard
Neese, Frank
Xue, Zi-Ling  
DOI
10.1038/s41467-018-04896-0
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/16207
Abstract

Spin–phonon coupling plays an important role in single-molecule magnets and molecular qubits. However, there have been few detailed studies of its nature. Here, we show for the first time distinct couplings of g phonons of CoII(acac)2(H2O)2 (acac = acetylacetonate) and its deuterated analogs with zero-field-split, excited magnetic/spin levels (Kramers doublet (KD)) of the S = 3/2 electronic ground state. The couplings are observed as avoided crossings in magnetic-field-dependent Raman spectra with coupling constants of 1–2 cm−1. Far-IR spectra reveal the magnetic-dipole-allowed, inter-KD transition, shifting to higher energy with increasing field. Density functional theory calculations are used to rationalize energies and symmetries of the phonons. A vibronic coupling model, supported by electronic structure calculations, is proposed to rationalize the behavior of the coupled Raman peaks. This work spectroscopically reveals and quantitates the spin–phonon couplings in typical transition metal complexes and sheds light on the origin of the spin–phonon entanglement.

Subjects

electronic structure ...

inorganic chemistry

magnetic materials

optical spectroscopy

Comments

This article was published openly thanks to the University of Tennessee Open Publishing Support Fund.


Licensed under a Creative Commons Attribution 4.0 International license.

Recommended Citation
Moseley, Duncan H., Shelby E. Stavretis, Komalavalli Thirunavukkuarasu, Mykhaylo Ozerov, Yongqiang Cheng, Luke L. Daemen, Jonathan Ludwig, Zhengguang Lu , Dmitry Smirnov, Craig M. Brown, Anup Pandey, A. J. Ramirez-Cuesta, Adam C. Lamb, Mihail Atanasov, Eckhard Bill, Frank Neese, and Zi-Ling Xue. “Spin–phonon Couplings in Transition Metal Complexes with Slow Magnetic Relaxation.” Nature Communications 9 (2018). https://doi.org/10.1038/s41467-018-04896-0.
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0-Supplementary_Information.pdf

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1-Description_of_Additional_Supplementary_Files.pdf

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