Pritchard Ruth, Barrett Simon A, Kilner Colin A, Halcrow Malcolm A
School of Chemistry, University of Leeds, Woodhouse Lane, Leeds, UK.
Dalton Trans. 2008 Jun 28(24):3159-68. doi: 10.1039/b801892h. Epub 2008 Apr 24.
We report the syntheses of six new salts of the iron(III) complexes of four hexadentate Schiff bases of the saltrien-type derived from 1,8-diamino-3,6-diazaoctane and 2 equiv. of the appropriate salicylaldehyde derivative. Three of these new compounds undergo gradual spin-transitions centred between 155-204 K in the solid state, that proceed to 35-50% completeness. One of the other compounds remains high-spin on cooling, another is low-spin, while the last undergoes spin-crossover centred above room temperature. This spin-state variability is typical of solid compounds of this type. As an aid to understanding this behaviour, the crystal structures and magnetochemistry of the known spin-crossover salts [Fe(saltrien)]PF6, [Fe(saltrien)]ClO4 and [Fe(saltrien)]BPh4 have also been reexamined. The structural chemistry of all three salts was found to differ significantly from what has been previously reported. Correlation of the crystal structures and magnetic behaviour of the compounds in this and previous work suggests that the disposition of the two ligand phenoxy groups plays an important role in determining whether high-spin [Fe(saltrien)]+ complexes can undergo thermal spin-transitions.
我们报道了由1,8 - 二氨基 - 3,6 - 二氮杂辛烷与2当量的适当水杨醛衍生物衍生得到的四种盐三烯型六齿席夫碱的铁(III)配合物的六种新盐的合成。这些新化合物中的三种在固态下于155 - 204 K之间经历逐渐的自旋转变,转变程度达到35 - 50%。其他化合物中的一种在冷却时保持高自旋,另一种是低自旋,而最后一种在室温以上发生自旋交叉。这种自旋态的变化是这类固体化合物的典型特征。为了有助于理解这种行为,还重新研究了已知的自旋交叉盐[Fe(saltrien)]PF6、[Fe(saltrien)]ClO4和[Fe(saltrien)]BPh4的晶体结构和磁化学。发现这三种盐的结构化学与先前报道的有显著差异。这项工作以及先前工作中化合物的晶体结构与磁行为的相关性表明,两个配体苯氧基的排列在决定高自旋[Fe(saltrien)] +配合物是否能发生热自旋转变方面起着重要作用。