4.8 Article

Spin State Chemistry: Modulation of Ligand pK(a) by Spin State Switching in a [2x2] Iron(II) Grid-Type Complex

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 140, Issue 26, Pages 8218-8227

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.8b03735

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Funding

  1. ERC [SUPRADAPT 290585]
  2. University of Strasbourg
  3. University of Bordeaux
  4. Region Nouvelle Aquitaine
  5. CNRS
  6. GdR MCM-2: Magnetisme et Commutation Moleculaires
  7. MOLSPIN COST action [CA15128]
  8. LabEx-Chemistry of Complex Systems [ANR-10-LABX-0026CSC]

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The iron(II) [2X2] grid complex Fe-8H has been synthesized and characterized. It undergoes spin-crossover (SCO) upon deprotonation of the hydrazine-based terpyridine-like ligand. The deprotonation patterns have been determined by X-ray crystallography and H-1 NMR spectroscopy and discussed in relation to the spin state of the iron(II) centers, which influences greatly the pK(a) of the ligand. The synthesis of the magnetically silent zinc(II) analogue is also reported, and its (de)protonation behavior has been characterized to serve as a reference for the study of the Fe-II grid complexes. DFT computations have also been performed in order to investigate how the successive deprotonation of the bridging ligands affects the SCO behavior within the grid.

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