4.6 Article

Chemical Control of Spin Propagation between Heterometallic Rings

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 17, Issue 50, Pages 14020-14030

Publisher

WILEY-BLACKWELL
DOI: 10.1002/chem.201101785

Keywords

chromium; EPR spectroscopy; heterometallic dimers; magnetic properties; metallacycles

Funding

  1. EPSRC (UK)
  2. STREP MolSpin-QIP
  3. ERC [226558]
  4. Office of Science, Office of Basic Energy Sciences, of the U.S. Department of Energy [DE-C02-05CH11231]
  5. Royal Society
  6. EPSRC [EP/H011714/1] Funding Source: UKRI
  7. Engineering and Physical Sciences Research Council [EP/H011714/1] Funding Source: researchfish

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We present a synthetic, structural, theoretical, and spectroscopic study of a family of heterometallic ring dimers which have the formula [{Cr(7)NiF(3)(Etglu)(O(2)CtBu)(15)}(2)(NLN)], in which Etglu is the pentadeprotonated form of the sugar N-ethyl-d-glucamine, and NLN is an aromatic bridging diimine ligand. By varying NLN we are able to adjust the strength of the interaction between rings with the aim of understanding how to tune our system to achieve weak magnetic communication between the spins, a prerequisite for quantum entanglement. Micro-SQUID and EPR data reveal that the magnetic coupling between rings is partly related to the through-bond distance between the spin centers, but also depends on spin-polarization mechanisms and torsion angles between aromatic rings. Density functional theory (DFT) calculations allow us to make predictions of how such chemically variable parameters could be used to tune very precisely the interaction in such systems. For possible applications in quantum information processing and molecular spintronics, such precise control is essential.

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