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Highly Twisted Helical Polyacetylene with Morphology Free From the Bundle of Fibrils Synthesized in Chiral Nematic Liquid Crystal Reaction Field

机译:高度扭曲的螺旋聚乙炔,其形态没有手性向列液晶反应场中合成的原纤维束

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摘要

We synthesized novel axially chiral binaphthyl derivatives with highly twisting powers by substituting phenylcyclohexyl (PCH) mesogenic moieties into 2,2' positions or 2,2',6,6' positions of binaphthyl rings. The di- and tetrasubstituted binaphthyl derivatives, abbreviated as D-1 and D-2, respectively, were adopted as chiral dopants to induce chiral nematic liquid crystals (N~*-LCs) available for synthesis of helical polyacetylene. The helical twisting power (β_M) of D-2 was 449 μm~(-1), which was ca. 2.6 times larger than that of D-1 (171 μm~(-1)). We prepared two kinds of induced N~*-LCs with 5 μm and 270 nm in helical pitch by adding the chiral dopants D-1 and D-2 into the host N-LCs, respectively. The helical polyacetylene synthesized in the N~*-LC containing D-2 exhibited highly screwed fibrils, but not a bundle of fibrils. This result is in quite contrast to the usual fibril morphology, where the screwed fibrils are gathered to form the bundle of fibrils, as observed in the helical polyacetylene synthesized in the N~*-LC containing a chiral dopant with moderate helical twisting power, such as D-1. It is of keen interest that the helical pitch (270 nm) of the N~*-LC including D-2 is much smaller than the diameter (ca. 1 μm) of the bundle of fibrils, which should depress the formation of the bundle of fibrils. The morphology free from the bundle of fibrils might enable us to evaluate more precisely intrinsic electromagnetic properties of a single screwed fibril of helical polyacetylene.
机译:我们通过将苯基环己基(PCH)介晶基团取代成双萘环的2,2'位置或2,2',6,6'位置,合成了具有高度加捻能力的新型轴向手性联萘衍生物。分别缩写为D-1和D-2的二取代和四取代的联萘衍生物用作手性掺杂剂,以诱导可用于合成螺旋聚乙炔的手性向列液晶(N〜* -LC)。 D-2的螺旋扭曲力(β_M)为449μm〜(-1),约为是D-1(171μm〜(-1))的2.6倍。通过将手性掺杂剂D-1和D-2分别添加到宿主N-LC中,我们制备了两种螺距分别为5μm和270 nm的N〜* -LC。在含有D-2的N〜* -LC中合成的螺旋聚乙炔表现出高度螺合的原纤维,但没有一束原纤维。该结果与通常的原纤维形态形成对比,在通常的原纤维形态中,聚集了螺旋原纤维以形成原纤维束,如在含有具有适度螺旋扭曲力的手性掺杂剂的N〜* -LC中合成的螺旋聚乙炔中所观察到的,例如如D-1。令人关注的是,包括D-2的N〜* -LC的螺旋节距(270 nm)远小于原纤维束的直径(约1μm),这会抑制束的形成原纤维。不含原纤维束的形态可能使我们能够更精确地评​​估螺旋聚乙炔单螺杆原纤维的固有电磁性能。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2007年第27期|p.8519-8527|共9页
  • 作者单位

    Department of Polymer Chemistry, Kyoto University, Katsura, Kyoto 615-8510, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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