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New [3+3] Schiff-base macrocycles and their complexes.

机译:新的[3 + 3]基于Schiff的宏周期及其复合体。

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摘要

A series of conjugated [3+3] Schiff-base macrocycles containing both a central crown ether-like pocket and three tetradentate N2O 2 binding sites were prepared and investigated. The formation mechanism was investigated through the synthesis and study of macrocycle fragments. Further understanding of the macrocycle conformations and dynamics was obtained through computational studies.; A monoreduced macrocycle where one of the six imines has been reduced was obtained as a by-product of macrocycle formation. Reactivity studies and deuterium labeling investigations revealed that the selective reducing agent is likely a benzimidazoline. This intermediate is generated in situ during the formation of the non-reduced macrocycle and with macrocycle reduction is converted to a stable benzimidazole unit.; Upon addition of small cations, the conjugated Schiff-base macrocycles assemble into tubular structures. Spectroscopic and mass spectrometric studies have shown that the cations bind to the crown ether-like centre of the macrocycle and induce aggregation to form structures composed of alternating cations and macrocycles.; With the addition of seven equivalents of Zn2+ or Cd 2+ to these fully conjugated macrocycles surprising heptametallic complexes were obtained. Here, the trimetallated macrocycle is first formed (with metal ions bound to the three N2O2 pockets) and then this templates the formation of a [M4O]6+ cluster that caps the cone-shaped macrocycle. NMR studies indicated that these zinc complexes dimerize under certain solvent conditions forming capsule-like structures resembling cavitands used in host-guest chemistry.; Variations of these [3+3] Schiff-base macrocycles were prepared by modifying the substituents of the diformyl diol unit. In this way naphthalene-based macrocycles were prepared. Studies on a series of related model compounds revealed that the keto-enamine isomer is stabilized in these macrocycles rather than the enol-imine isomer as observed in the analogous phenyl-based macrocycles.
机译:制备并研究了一系列同时包含中央冠状醚样口袋和三个四齿N2O 2结合位点的共轭[3 + 3] Schiff碱大环。通过合成和研究大环片段研究了形成机理。通过计算研究获得了对大环构象和动力学的进一步理解。作为大环形成的副产物,获得了其中六个亚胺之一被还原的单还原大环。反应性研究和氘标记研究表明,选择性还原剂可能是苯并咪唑啉。该中间体是在未还原的大环化合物形成过程中原位生成的,并随着大环化合物的还原而转化为稳定的苯并咪唑单元。加入小阳离子后,共轭席夫碱大环组装成管状结构。光谱和质谱研究表明,阳离子与大环的冠状醚样中心结合并诱导聚集形成由交替的阳离子和大环组成的结构。通过向这些完全共轭的大环化合物添加7当量的Zn2 +或Cd 2+,可以获得令人惊讶的七金属配合物。在这里,首先形成三金属化的大环(金属离子结合到三个N2O2袋上),然后以此模板形成[M4O] 6+团簇,该团簇覆盖了锥形大环。 NMR研究表明,这些锌络合物在某些溶剂条件下二聚,形成类似于胶囊-结构的胶囊状结构,该结构类似于客体化学中使用的空泡。这些[3 + 3]席夫碱大环的变体是通过修饰二甲酰基二醇单元的取代基制备的。以这种方式制备了基于萘的大环化合物。对一系列相关模型化合物的研究表明,在类似的基于苯基的大环化合物中,酮-烯胺异构体在这些大环化合物中是稳定的,而不是在烯醇-亚胺异构体中稳定的。

著录项

  • 作者

    Gallant, Amanda Jane.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 218 p.
  • 总页数 218
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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