4.7 Article

Allosteric Spin Crossover Induced by Ligand-Based Molecular Alloying

期刊

INORGANIC CHEMISTRY
卷 59, 期 17, 页码 12132-12142

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.0c01061

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资金

  1. QUANTERA [PCI2018-093106]
  2. Spanish MINECO [CTQ2015-68370-P, PGC2018-098630 B-100, MAT2017-86826-R]
  3. DOE Office of Science User Facility [DE-AC02-05CH11231]

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The spin crossover (SCO) phenomenon represents a source of inultistabilitc,r at the molecular level, and dilution into a nonactive host was originally key to understand its cooperative nature and the parameters goveining it in the solid state. Here, we devise a olecular alloying approach in which all components are SCO-active, but with significantly different characteristic temperatures. Thus, the molecular material [Fe(Mebpp)2] (C104)2 (2) has been doped with increasing amounts of the ligand Me2bpp (Mebpp and Me2bpp = 1 methyl- and bis-methyl-substituted bis-pyrazolylpyridine ligands), yielding molecular alloys with the formula;[Fe(Mebpp)2_2x(Me2bpp)_] (CI04)2 (4x; 0.05 < x < 0.5). The effect of the composition on >the SCO process is studied through single crystal X-ray diffi-action (SCXRD), inagnetometry, and differential scanning calorimetry (DSC). While the attenuation of intermolecular interactions is shown to have a strong effect on the SCO cooperativity, the spin conversion was found to occur at intermediate temperatures and in one sole step for all components of the alloys, thus unveiling an unprecedented allosteric SCO process. This effect provides in turn a means of tuning the SCO temperature within a range of 42 K.

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