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首页> 外文期刊>Chemistry: A European journal >Remarkably selective recognition of iodobenzene derivatives by a macrocyclic bis-Pt~(II) metallohost
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Remarkably selective recognition of iodobenzene derivatives by a macrocyclic bis-Pt~(II) metallohost

机译:大环双-Pt〜(II)金属离子显着选择性识别碘苯衍生物

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摘要

We designed and synthesized self-assembled bis-Pt~(II) dimer 1?4 BF_4 with quino[8,7-b][1,10]phenanthroline as an extended π-face contact area, which acts as the first artificial receptor with high affinity toward iodinated aromatic compounds significantly based on noncovalent iodine ? aromatic-plane interactions in a "side-on" fashion. Despite their structural similarity to a previously reported metallohost 2~(4+) that bears 2,2′:6′,2′′-terpyridine units, a dramatic change in selectivity toward substituted benzene derivatives was observed for 1~(4+). ~1H NMR spectroscopic titration revealed a high affinity of 1~(4+) towards haloarenes, with exceptionally large association constants for 2-iodophenol (K_a=16 000 M~(-1)) and 1,2-diiodobenzene (K_a=21 000 M~(-1)), which are 93- and 140-fold higher, respectively, than the values obtained for 2~(4+). In addition, 1~(4+) showed a remarkably high affinity and selectivity toward 2,6-diiodophenol (K_a=35 000 M~(-1)), which is an important substructure of the thyroid hormone T_4. X-ray crystallography and theoretical calculations strongly suggest that "side-on" iodine ? aromatic-plane interactions and π-π stacking contribute to the strong 1,2-diiodobenzene and 2,6-diiodophenol binding. The results obtained here give unique and valuable insight into the nature of halogen atom interactions in their "side-on" region with an electropositive aromatic plane, which may provide useful guidance for designing artificial receptors for iodinated biomolecules.
机译:我们设计并合成了自组装的bis-Pt〜(II)二聚体1?4 BF_4,喹啉[8,7-b] [1,10]菲咯啉作为扩展的π面接触区域,它是第一个人工受体以非共价碘为基础,对碘化芳族化合物具有高亲和力芳香族平面相互作用的“侧面”方式。尽管它们与先前报道的带有2,2':6',2''-吡啶吡啶单元的金属主体2〜(4+)具有结构相似性,但观察到1〜(4+)对取代苯衍生物的选择性发生了巨大变化。 。 〜1H NMR光谱滴定显示1〜(4+)对卤代芳烃具有高亲和力,对2-碘苯酚(K_a = 16000 M〜(-1))和1,2-二碘苯(K_a = 21)具有极大的缔合常数000 M〜(-1)),分别比2〜(4+)获得的值高93倍和140倍。此外,1〜(4+)对2,6-二碘苯酚(K_a = 35000 M〜(-1))具有很高的亲和力和选择性,这是甲状腺激素T_4的重要子结构。 X射线晶体学和理论计算强烈表明,“边对边”碘芳香族平面相互作用和π-π堆积有助于强力的1,2-二碘苯和2,6-二碘苯酚结合。此处获得的结果为卤原子在其“侧向”区域与正电性芳香族平面相互作用的性质提供了独特而宝贵的见解,这可为设计碘化生物分子的人工受体提供有用的指导。

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