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Weak Exchange Interactions in Multispin Systems: EPR Studies of Metalloporphyrins Decorated with {Cr7Ni} Rings.


ABSTRACT: Both metalloporphyrins and heterometallic {Cr7Ni} rings are of significant research interest due to their proposed roles in quantum information processing devices. In this study, we present a series of complexes in which [Cr7NiF3(Etglu)(O2CtBu)15] (N-EtgluH5 = N-ethyl-d-glucamine) heterometallic rings are coordinated to metalloporphyrin linkers: the symmetric [M(TPyP)] for M = Cu2+, VO2+, and H2TPyP = 5,10,15,20-tetra(4-pyridyl)porphyrin; and the asymmetric [{VO}(TrPPyP)] for H2(TrPPyP) = 5,10,15-(triphenyl)-20-(4-pyridyl)porphyrin. The magnetic interactions present in these complexes are unraveled using the continuous wave (CW) electron paramagnetic resonance (EPR) technique. The nature of the coupling between the {Cr7Ni} rings and the central metalloporphyrin is assessed by numerical simulations of CW EPR spectra and determined to be on the order of 0.01 cm-1, larger than the dipolar ones and suitable for individual spin addressability in multiqubit architectures.

SUBMITTER: Santanni F 

PROVIDER: S-EPMC11337161 | biostudies-literature | 2024 Jun

REPOSITORIES: biostudies-literature

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Weak Exchange Interactions in Multispin Systems: EPR Studies of Metalloporphyrins Decorated with {Cr<sub>7</sub>Ni} Rings.

Santanni Fabio F   Little Edmund E   Lockyer Selena J SJ   Whitehead George F S GFS   McInnes Eric J L EJL   Timco Grigore A GA   Bowen Alice M AM   Sessoli Roberta R   Winpenny Richard E P REP  

Inorganic chemistry 20240628 33


Both metalloporphyrins and heterometallic {Cr<sub>7</sub>Ni} rings are of significant research interest due to their proposed roles in quantum information processing devices. In this study, we present a series of complexes in which [Cr<sub>7</sub>NiF<sub>3</sub>(Etglu)(O<sub>2</sub>C<i><sup>t</sup></i>Bu)<sub>15</sub>] (<i>N</i>-EtgluH<sub>5</sub> = <i>N</i>-ethyl-d<i>-</i>glucamine) heterometallic rings are coordinated to metalloporphyrin linkers: the symmetric [M(TPyP)] for M = Cu<sup>2+</sup>  ...[more]

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