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Periodic trends and hidden dynamics of magnetic properties in three series of triazacyclononane lanthanide complexes

Periodic trends and hidden dynamics of magnetic properties in three series of triazacyclononane lanthanide complexes
Periodic trends and hidden dynamics of magnetic properties in three series of triazacyclononane lanthanide complexes
In three structurally related series of nine-coordinate lanthanide(III) complexes (Ln = Tb, Dy, Ho, Er, Tm and Yb) based on triazacyclononane, solution NMR studies and DFT/CASSCF calculations have provided key information on the magnetic susceptibility anisotropy. Both experimental and computational approaches have revealed a poor correlation to Bleaney's theory of magnetic anisotropy. CASSCF calculations suggested that the magnetic susceptibility is very sensitive to small geometric variations within the first coordination sphere, whereas DFT analyses indicate that it is the thermal accessibility of low energy vibrational modes that may lead to distortion. Parallel NMRD and EPR studies on the three Gd(III) complexes revealed good correspondence in estimating the electronic relaxation time. The Gd(III) tris-pyridinecarboxylate complex possesses a very long electronic relaxation time making it a promising starting point for responsive gadolinium EPR probe design.
0300-9246
Suturina, Elizaveta
24dd007d-949a-4852-99d1-ea42b00103ef
Mason, Kevin
b44d68df-9067-4812-a742-ff17df162f4b
Botta, Mauro
0a3ea8ea-46ad-4ff0-825c-e2347e59917d
Carniato, Fabio
1518f346-ca2d-400a-a20c-313ea2a46ce2
Kuprov, Ilya
bb07f28a-5038-4524-8146-e3fc8344c065
Chilton, Nicholas F.
850941d1-c8bf-40fd-abaa-6a5467a0e549
McInnes, Eric J.L.
bba4b839-d79c-4561-b6e7-c002cc251ff4
Vonci, Michele
d51e76b9-8190-49a3-8cc6-4fa1229aa329
Parker, David
31bfb567-907a-4490-af57-411089ae0e73
Suturina, Elizaveta
24dd007d-949a-4852-99d1-ea42b00103ef
Mason, Kevin
b44d68df-9067-4812-a742-ff17df162f4b
Botta, Mauro
0a3ea8ea-46ad-4ff0-825c-e2347e59917d
Carniato, Fabio
1518f346-ca2d-400a-a20c-313ea2a46ce2
Kuprov, Ilya
bb07f28a-5038-4524-8146-e3fc8344c065
Chilton, Nicholas F.
850941d1-c8bf-40fd-abaa-6a5467a0e549
McInnes, Eric J.L.
bba4b839-d79c-4561-b6e7-c002cc251ff4
Vonci, Michele
d51e76b9-8190-49a3-8cc6-4fa1229aa329
Parker, David
31bfb567-907a-4490-af57-411089ae0e73

Suturina, Elizaveta, Mason, Kevin, Botta, Mauro, Carniato, Fabio, Kuprov, Ilya, Chilton, Nicholas F., McInnes, Eric J.L., Vonci, Michele and Parker, David (2019) Periodic trends and hidden dynamics of magnetic properties in three series of triazacyclononane lanthanide complexes. Dalton Transactions. (doi:10.1039/C9DT01069F).

Record type: Article

Abstract

In three structurally related series of nine-coordinate lanthanide(III) complexes (Ln = Tb, Dy, Ho, Er, Tm and Yb) based on triazacyclononane, solution NMR studies and DFT/CASSCF calculations have provided key information on the magnetic susceptibility anisotropy. Both experimental and computational approaches have revealed a poor correlation to Bleaney's theory of magnetic anisotropy. CASSCF calculations suggested that the magnetic susceptibility is very sensitive to small geometric variations within the first coordination sphere, whereas DFT analyses indicate that it is the thermal accessibility of low energy vibrational modes that may lead to distortion. Parallel NMRD and EPR studies on the three Gd(III) complexes revealed good correspondence in estimating the electronic relaxation time. The Gd(III) tris-pyridinecarboxylate complex possesses a very long electronic relaxation time making it a promising starting point for responsive gadolinium EPR probe design.

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Accepted/In Press date: 15 May 2019
e-pub ahead of print date: 15 May 2019

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Local EPrints ID: 431400
URI: http://eprints.soton.ac.uk/id/eprint/431400
ISSN: 0300-9246
PURE UUID: ac892c95-b05c-4597-8c8a-82a6d8f701d9
ORCID for Ilya Kuprov: ORCID iD orcid.org/0000-0003-0430-2682

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Date deposited: 31 May 2019 16:30
Last modified: 16 Mar 2024 07:53

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Contributors

Author: Elizaveta Suturina
Author: Kevin Mason
Author: Mauro Botta
Author: Fabio Carniato
Author: Ilya Kuprov ORCID iD
Author: Nicholas F. Chilton
Author: Eric J.L. McInnes
Author: Michele Vonci
Author: David Parker

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