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Dancing with Sulfur: Simple Preparation and Properties of ThiacaKx[n]thiophene Derivatives

机译:硫磺跳舞:简单的制备和硫蛋白衍生物的性能

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摘要

In general, cyclization is the most crucial step in the synthesis of macrocyclic compounds formed out of repeated units of a 7r-system. However, a particular combination of aromatic wall unit and appropriate angular linkage can efficiently give cyclic compounds such as calix[n]arene and its analogues. This straightforward method allows material chemists to supply these compounds on multi-gram scale. Nevertheless, a more resourceful strategy is also required, because this simple approach is less feasible outside of specific combinations. Recently, we have newly developed a straightforward one-pot synthetic approach using a palladium coupling for a series of thiacalix[n]thiophene, thiacalix[n]dithieno[3,2—b:2',3'-d]thiophene (thiacalix[n]DTT), and selenacalix[n]selenophenes, which are cyclic homologues of divalent chalcogen-bridged (S or Se) cyclic oligothiophene derivatives. A palladium—catalyzed reaction of (Bu3Sn)2S or (Bu3Sn)2Se with dibromothio-phene, dibromoselenophene, or diboromo—DTT derivatives led to effective cyclization in good yield. In the presence of appropriate substituents, this method seems to kinetically favor the formation of macrocycles. The molecular and physical properties, including X-ray analysis, absorption spectra and redox properties, of the resultant macrocycles were also described. Unlike conventional calixarenes, they possess electron-donating ability, exhibiting multielectron redox processes due to electron delocalization. Thiacalix[n]DTT derivatives (n = 4-6) acted as a cavitand for C_(60) molecules; the cyclic 4-mer formed a1:2 complex in the solid state, while the 5— and 6-mer formed 1:1 complexes in solution. Furthermore, thiacalix[4]tmophene and selenacalix[n]-selenophene having tert-butylphenyl groups exhibit gelling behavior in toluene, despite the absence of any hydrogen binding sites. Intermolecular chalcogen (S or Se) interactions facilitate the self-assemoly that results in this gel formation.
机译:一般来说,环合反应是合成由7r体系的重复单元形成的大环化合物的最关键步骤。然而,芳香壁单元和适当的角键的特定组合可以有效地得到环状化合物,例如杯[n]芳烃及其类似物。这种简单的方法使材料化学家能够以多克的规模提供这些化合物。尽管如此,还需要一个更灵活的策略,因为这种简单的方法在特定组合之外不太可行。最近,我们开发了一种简单的一锅法合成方法,使用钯偶联剂合成了一系列噻卡利[n]噻吩、噻卡利[n]二噻吩[3,2-b:2',3'-d]噻吩(噻卡利[n]DTT)和硒卡利[n]硒酚,它们是二价硫族桥联(S或Se)环低聚噻吩衍生物的环同系物。钯催化的(Bu3Sn)2S或(Bu3Sn)2Se与二溴噻吩、二溴硝基苯或二硼钼DTT衍生物的反应以良好的产率实现了有效的环化。在适当取代基的存在下,这种方法似乎在动力学上有利于大环的形成。还描述了合成大环的分子和物理性质,包括X射线分析、吸收光谱和氧化还原性质。与传统杯芳烃不同,它们具有给电子能力,由于电子离域作用,表现出多电子氧化还原过程。噻卡利[n]DTT衍生物(n=4-6)对C_60分子起到了开穴剂的作用;环状4-聚体在固态下形成a1:2络合物,而5-和6-聚体在溶液中形成1:1络合物。此外,尽管没有任何氢键结合位点,但具有叔丁基苯基的噻卡利[4]三苯基和硒卡利[n]-硒苯基在甲苯中表现出凝胶行为。分子间硫族元素(S或Se)的相互作用促进了导致凝胶形成的自组装。

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  • 来源
    《有機合成化学協会誌》 |2020年第11期|共10页
  • 作者

    Masashi Hasegawa;

  • 作者单位

    Department of Chemistry Graduate School of Science Kitasato University 1—15—1 Kitasato Sagamihara 252—O373 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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