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Iron(II) complexes of tridentate indazolylpyridine ligands: enhanced spin-crossover hysteresis and ligand-based fluorescence.

机译:三齿吲唑基吡啶配体的铁(II)络合物:增强的自旋交叉滞后和基于配体的荧光。

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摘要

Reaction of 2,6-difluoropyridine with 2 equiv of indazole and NaH at room temperature affords a mixture of 2,6-bis(indazol-1-yl)pyridine (1-bip), 2-(indazol-1-yl)-6-(indazol-2-yl)pyridine (1,2-bip), and 2,6-bis(indazol-2-yl)pyridine (2-bip), which can be separated by solvent extraction. A two-step procedure using the same conditions also affords both 2-(indazol-1-yl)-6-(pyrazol-1-yl)pyridine (1-ipp) and 2-(indazol-2-yl)-6-(pyrazol-1-yl)pyridine (2-ipp). These are all annelated analogues of 2,6-di(pyrazol-1-yl)pyridine, an important ligand for spin-crossover complexes. Iron(II) complexes [Fe(1-bip)2](2+), [Fe(1,2-bip)2](2+), and [Fe(1-ipp)2](2+) are low-spin at room temperature, reflecting sterically imposed conformational rigidity of the 1-indazolyl ligands. In contrast, the 2-indazolyl complexes [Fe(2-bip)2](2+) and [Fe(2-ipp)2](2+) are high-spin in solution at room temperature, whereas salts of [Fe(2-bip)2](2+) exhibit thermal spin transitions in the solid state. Notably, [Fe(2-bip)2][BF4]2·2MeNO2 adopts a terpyridine embrace lattice structure and undergoes a spin transition near room temperature after annealing, resulting in thermal hysteresis that is wider than previously observed for this structure type (T1/2 = 266 K, ΔT = 16-20 K). This reflects enhanced mechanical coupling between the cations in the lattice through interdigitation of their ligand arms, which supports a previously proposed structure/function relationship for spin-crossover materials with this form of crystal packing. All of the compounds in this work exhibit blue fluorescence in solution under ambient conditions. In most cases, the ligand-based emission maxima are slightly red shifted upon complexation, but there is no detectable correlation between the emission maximum and the spin state of the iron centers.
机译:2,6-二氟吡啶与2当量的吲唑和NaH在室温下反应,得到2,6-双(吲唑-1-基)吡啶(1-bip),2-(吲哚-1-基)-吡啶的混合物6-(吲哚-2-基)吡啶(1,2-bip)和2,6-双(吲哚-2-基)吡啶(2-bip),可通过溶剂萃取分离。在相同条件下进行两步操作,也可以得到2-(吲唑-1-基)-6-(吡唑-1-基)吡啶(1-ipp)和2-(吲唑-2-基)-6- (吡唑-1-基)吡啶(2-ipp)。这些都是2,6-二(吡唑-1-基)吡啶的退火类似物,2,6-二(吡唑-1-基)吡啶是自旋交联复合物的重要配体。铁(II)络合物[Fe(1-bip)2](2 +),[Fe(1,2-bip)2](2+)和[Fe(1-ipp)2](2+)是在室温下低旋转,反映了1-吲唑基配体的空间构象刚度。相反,在室温下,2-吲唑基络合物[Fe(2-bip)2](2+)和[Fe(2-ipp)2](2+)在溶液中呈高纺丝,而[Fe]的盐(2-bip)2](2+)在固态下表现出热自旋转变。值得注意的是,[Fe(2-bip)2] [BF4] 2·2MeNO2采用三联吡啶拥抱晶格结构,并且在退火后在室温附近经历自旋转变,从而导致比以前观察到的热迟滞还要宽(T1 / 2 = 266 K,ΔT= 16-20 K)。这反映出通过其配体臂的叉指化,晶格中的阳离子之间增强了机械偶联,这支持了先前提出的具有这种晶体堆积形式的自旋交联材料的结构/功能关系。在环境条件下,这项工作中的所有化合物在溶液中均显示蓝色荧光。在大多数情况下,基于配体的发射最大值在络合时会发生轻微的红移,但是在发射最大值与铁中心的自旋态之间没有可检测的相关性。

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