Issue 15, 2015

Stereochemistry for engineering spin crossover: structures and magnetic properties of a homochiral vs. racemic [Fe(N3O2)(CN)2] complex

Abstract

The Schiff-base condensation of the R,R-(+)-diamine (2a) with 2,6-diacetyl pyridine in the presence of FeII affords the macrocyclic complex [Fe(dpN3O2)(CN)2] (3a) (dp = diphenyl) with ligand centred chirality comprising of a 1 : 1 mixture of LS 6- and HS 7-coordinate FeII centres. Variable temperature magnetic susceptibility and Mössbauer studies reveal that (3a) undergoes an incomplete thermal SCO transition with a T1/2 = 250 K as well as a LIESST effect. In contrast its racemic counterpart (3c) comprises of mostly LS FeII and exhibits no LIESST properties.

Graphical abstract: Stereochemistry for engineering spin crossover: structures and magnetic properties of a homochiral vs. racemic [Fe(N3O2)(CN)2] complex

Supplementary files

Article information

Article type
Communication
Submitted
26 Jan 2015
Accepted
13 Mar 2015
First published
13 Mar 2015

Dalton Trans., 2015,44, 6711-6714

Stereochemistry for engineering spin crossover: structures and magnetic properties of a homochiral vs. racemic [Fe(N3O2)(CN)2] complex

Q. Wang, S. Venneri, N. Zarrabi, H. Wang, C. Desplanches, J. Létard, T. Seda and M. Pilkington, Dalton Trans., 2015, 44, 6711 DOI: 10.1039/C5DT00357A

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