4.6 Article

The magnetic fingerprint of dithiazolyl-based molecule magnets

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 20, Issue 31, Pages 20406-20416

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8cp03173h

Keywords

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Funding

  1. Ministerio de Economia, Industria y Competitividad (MICINN), UE [MAT2014-54025-P, CTQ2017-87773-P/AEI/FEDER, CTQ2017-83566-P/AEI/FEDER]
  2. Catalan DURSI [2014SGR1422, 2017SGR348]
  3. COST Action [ECOST-Bio CM1305]
  4. European Union's Horizon 2020 research and innovation programme under the Marie Curie Skodowska-Curie grant [642294]
  5. [2017SGR629]

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Magnetic bistability in organic-radical based materials has attracted significant interest due to its potential application in electronic devices. The first-principles bottom-up study herein presented aims at elucidating the key factors behind the different magnetic response of the low and high temperature phases of four different switchable dithiazolyl (DTA)-based compounds. The drastic change in the magnetic response upon spin transition is always due to the changes in the J(AB) magnetic interactions between adjacent radicals along the -stacks of the crystal, which in turn are driven mostly by the changes in the interplanar distance and degree of lateral slippage, according to the interpretation of a series of magneto-structural correlation maps. Furthermore, specific geometrical dispositions have been recognized as a ferromagnetic fingerprint in such correlations. Our results thus show that an appropriate substitution of the chemical skeleton attached to the DTA ring could give rise to new organic materials with dominant ferromagnetic interactions.

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