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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Solvation effects on the valence tautomeric transition of a cobalt complex in the solid state
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Solvation effects on the valence tautomeric transition of a cobalt complex in the solid state

机译:溶剂化对固态固态钴配合物价互变异构的影响

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A detailed investigation of a valence tautomeric (VT) transition for the new complex [Co~(III)(3,5-DBCat)(3,5-DBSQ)(py)_2]/[Co ~(II)(3,5-DBSQ)_2(py)_2] (1) is reported, where 3,5-DBCatH_2 is 3,5-di-tert-butyl-catechol, 3,5-DBSQH is 3,5-di-tert-butyl-semiquinone and py is pyridine. Complex 1 exists as a mixture of the two valence tautomers, with the relative proportion of each depending on the external conditions. Three differently solvated forms of the complex have been synthesized and variable temperature structural and magnetic investigations of one of these, 1·0.5py, reveals that this compound undergoes a thermally-induced VT transition from the [Co~(III)(3,5-DBCat)(3,5-DBSQ) (py)_2] tautomer at temperatures below 150 K to a 1:1 mixture of the two tautomers at temperatures above 300 K. The VT transition may also be photo-induced at 9 K, affording a similar mixture of the two tautomers. In both cases the incomplete transition is attributed to the presence of π-π stacking interactions between the pyridine molecules of solvation and one of the two crystallographically independent complex molecules, which inhibits the expansion of this molecule that would accompany a VT transition. Studies on alternatively solvated forms 1·2MeCN and 1·1.67hexane also suggest a significant dependence of the VT transition on solvation-induced packing effects and/or intermolecular interactions.
机译:详细研究了新复合物[Co〜(III)(3,5-DBCat)(3,5-DBSQ)(py)_2] / [Co〜(II)(3,报告了5-DBSQ)_2(py)_2](1),其中3,5-DBCatH_2是3,5-二叔丁基-邻苯二酚,3,5-DBSQH是3,5-二叔丁基-半醌和py是吡啶。复合物1以两种价互变异构体的混合物形式存在,每种互变异构体的相对比例取决于外部条件。合成了三种不同的溶剂化形式的复合物,对其中一种进行了可变温度结构和磁性研究,结果为1·0.5py,表明该化合物从[Co〜(III)(3,5) -DBCat)(3,5-DBSQ)(py)_2]互变异构体在150 K以下的温度下与两种互变异构体1:1的混合物在300 K以上的温度下发生。VT跃迁也可能在9 K下被光诱导,得到两种互变异构体的类似混合物。在这两种情况下,不完全的过渡都归因于溶剂化吡啶分子与两个晶体学上独立的复合分子之一之间存在π-π堆积相互作用,这抑制了该分子伴随VT过渡的膨胀。另一种溶剂化形式1·2MeCN和1·1.67己烷的研究也表明,VT转变对溶剂化诱导的堆积效应和/或分子间相互作用的显着依赖性。

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