首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Spin switching in tris(8-aminoquinoline)iron(II) (BPh4)(2): quantitative guest-losing dependent spin crossover properties and single-crystal-to-single-crystal transformation
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Spin switching in tris(8-aminoquinoline)iron(II) (BPh4)(2): quantitative guest-losing dependent spin crossover properties and single-crystal-to-single-crystal transformation

机译:TRIS(8-氨基喹啉)铁(II)(BPH4)(2)(2)(2)中的旋转切换:定量宾客失去的旋转交叉特性和单晶对单晶变换

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摘要

As a derivative of 2-picolylamine, which contains rich protons favouring hydrogen bond formation to assemble a variety of valuable spin crossover (SCO) compounds, 8-aminoquinoline (aqin) will be a good candidate for constructing new mononuclear bistable state compounds. With the guidance of this view, two solvated compounds [Fe(aqin)(3)](BPh4)(2)center dot(2)(CH3CN) (1 center dot 2CH(3)CN) and [Fe(aqin)(3)](BPh4)(2)center dot 1.5(CH3COCH3) (2 center dot 1.5CH(3)COCH(3)) were synthesized. The structural characterization and magnetic studies demonstrate that this strategy has been successful. Single-crystal diffraction reveals that both the mononuclear compounds have facial (fac-)-configuration cations, which form hydrogen bonds using -NH2 groups with solvent molecules (acetonitrile or acetone). Subsequent magnetic measurement shows the highly sensitive solvent-dependent occurrence of a spin transition above room temperature for both compounds. Interestingly, for compound 1 center dot 2CH3CN, in the successively repeated heating and cooling process, by monitoring the loss of solvent molecules by TGA, the shifting of the spin transition curve is found to be linearly dependent on the fraction of the residual solvent content. Additionally, the desolvated sample can re-solvate with CH3CN and recover the magnetic response reproducibly. Furthermore, after losing the acetonitrile molecules, the single-crystal-to-single-crystal transformation occurred to give 1.
机译:作为2-吡喃基胺的衍生物,其含有富有的质子,有利于氢键形成组装各种有价值的旋转交叉(SCO)化合物,8-氨基喹啉(Aqin)将是构建新的单核双稳态化合物的良好候选者。随着该视图的指导,两个溶剂化合物[Fe(Aqin)(3)](BPH4)(2)中心点(2)(CH 3CN)(1中心点2CH(3)CN)和[Fe(Aqin)( 3)](BPH4)(2)中央点1.5(CH3COCH3)(2中心点1.5CH(3)Coch(3))被合成。结构表征和磁性研究表明,这种策略已经成功。单晶衍射表明,单核化合物两者都具有面部(FAC - ) - 配置阳离子,其使用溶剂分子(乙腈或丙酮)使用-NH2基团形成氢键。随后的磁性测量显示出高度敏感的溶剂依赖性出现旋转过渡到两种化合物的室温。有趣的是,对于化合物1中心点2CH3CN,在连续的反复加热和冷却过程中,通过监测TGA的溶剂分子损失,发现旋转过渡曲线的移位是线性取决于残留溶剂含量的级分。另外,去溶剂化样品可以用CH3CN重新溶剂化物并再现磁性响应可重复。此外,在失去乙腈分子后,发生单晶致单晶转变,得到1。

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