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Muon-Nitrogen Quadrupolar Level Crossing Resonance in a Charge Transfer Salt

Berlie, Adam; Pratt, Francis L.; Huddart, Benjamin M.; Lancaster, Tom; Cottrell, Stephen P.

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Authors

Adam Berlie

Francis L. Pratt

Stephen P. Cottrell



Abstract

Although muons are primarily regarded as a local spin probe, they can also access the charge state of an atom or molecule via quadrupolar level crossing resonance (QLCR) spectroscopy. We use Li+TCNQ– (TCNQ = 7,7,8,8-tetracyanoquinodimethane), a simple charge transfer salt, to test the potential of this technique in molecular systems by studying the interaction of a positive muon with the TCNQ nitrogen atoms. We show that both a positive muon and muonium are able to add to the nitrogen, leading to a singlet spin state for the addition molecule. This produces a characteristic three line QLCR spectrum, with the observed line positions and intensities determined by the principal values and orientation of the electric field gradient tensor at the nitrogen. Ab initio calculation of this field gradient and the resulting QLCR spectrum give good agreement with the experiment. A nonresonant background contribution to the relaxation rate also provides evidence for spin excitations rapidly diffusing along the TCNQ chains. These reflect mobile unpaired electrons introduced by muonium addition. It is thus shown that a single set of muon measurements can be sensitive to both spin and charge degrees of freedom in the same molecular material.

Citation

Berlie, A., Pratt, F. L., Huddart, B. M., Lancaster, T., & Cottrell, S. P. (2022). Muon-Nitrogen Quadrupolar Level Crossing Resonance in a Charge Transfer Salt. Journal of Physical Chemistry C, 126(17), 7529-7534. https://doi.org/10.1021/acs.jpcc.2c00617

Journal Article Type Article
Acceptance Date Apr 4, 2022
Online Publication Date Apr 26, 2022
Publication Date May 5, 2022
Deposit Date Jun 15, 2022
Publicly Available Date Jun 30, 2022
Journal Journal of Physical Chemistry C
Print ISSN 1932-7447
Electronic ISSN 1932-7455
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 126
Issue 17
Pages 7529-7534
DOI https://doi.org/10.1021/acs.jpcc.2c00617

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