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首页> 外文期刊>Angewandte Chemie >Spin-Crossover Properties of an Iron(II) Coordination Nanohoop
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Spin-Crossover Properties of an Iron(II) Coordination Nanohoop

机译:铁(II)配位纳米的旋转交叉特性

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Addition of the bipyridyl-embedded cycloparaphenylene nanohoop bipy[9]CPP to [Fe{H2B(pyz)(2)}] (pyz=pyrazolyl) produces the distorted octahedral complex [Fe(bipy[9]CPP){H2B(pyz)(2)}(2)] (1). The molecular structure of 1 shows that the nanohoop ligand contains a non-planar bipy unit. Magnetic susceptibility measurements indicate spin-crossover (SCO) behaviour with a T-1/2 of 130 K, lower than that of 160 K observed with the related compound [Fe(bipy){H2B(pyz)(2)}(2)] (2), which contains a conventional bipy ligand. A computational study of 1 and 2 reveals that the curvature of the nanohoop leads to the different SCO properties, suggesting that the SCO behaviour of iron(II) can be tuned by varying the size and diameter of the nanohoop.
机译:在[Fe{H2B(pyz)(2)}](pyz=吡唑基)中加入联吡啶嵌入的环对苯撑纳米环联吡啶[9]CPP,生成扭曲的八面体配合物[Fe(bipy[9]CPP){H2B(pyz)(2)}(2)](1)。1的分子结构表明纳米环配体包含一个非平面的bipy单元。磁化率测量表明,自旋交叉(SCO)行为的T-1/2为130 K,低于相关化合物[Fe(bipy){H2B(pyz)(2)}(2)](2)观察到的160 K,该化合物含有传统的bipy配体。对1和2的计算研究表明,纳米环的曲率导致不同的SCO性质,这表明铁(II)的SCO行为可以通过改变纳米环的大小和直径来调节。

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