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Pauli Paramagnetism of Stable Analogues of Pernigraniline Salt Featuring Ladder-Type Constitution

机译:具有梯形结构的肾上腺素盐稳定类似物的保利顺磁性

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摘要

Polyaniline derivatives represent one of the most widely used classes of conductive polymers. The fundamentally important electronic properties of pernigraniline salts, the fully oxidized and acid-doped derivatives of polyanilines, however, are still not well-understood due to their poor stability and configurational uncertainty. To address these issues and to synthetically access stable analogues of pernigraniline salts, ladder-type constitution was imparted into a series of model oligomer analogues with rigid backbones constituted by up to 27 fused rings. The syntheses were achieved through iterative cross-coupling reactions followed by cyclization and oxidation. In contrast to their unstable non-ladder-type counterparts, these ladder-type pernigraniline-like molecules all adopt a well-defined all-trans configuration and demonstrate an excellent chemical stability after protonation, rendering it possible to reveal the intrinsic electronic and magnetic properties of molecules resembling pernigraniline. Protonated salts of these oligomers feature a significant diradicaloid open-shell resonance contribution. A dominant temperature-independent Pauli paramagnetism was observed in the solid state, an indication of the deloalization nature of the polarons in ladder-type analogues of pernigraniline salt.
机译:聚苯胺衍生物代表了最广泛使用的导电聚合物类别之一。肾上腺素盐的根本重要的电子性能,即聚苯胺的完全氧化和酸掺杂的衍生物,由于其较差的稳定性和构型的不确定性仍未被很好地理解。为了解决这些问题并合成邻苯胺肾上腺素盐的稳定类似物,梯形结构被赋予了一系列模型寡聚物类似物,其刚性骨架由多达27个稠环构成。通过反复的交叉偶联反应,然后环化和氧化,实现了合成。与它们的不稳定的非阶梯型对应物相比,这些阶梯型的多年生肾上腺素样分子均采用定义明确的全反式构型,并在质子化后表现出出色的化学稳定性,从而有可能揭示内在的电子和磁性类似肾上腺素的分子。这些低聚物的质子化盐具有显着的双自由基类开壳共振贡献。在固态中观察到显着的温度无关的保利顺磁性,这表明紫肾上腺素盐的阶梯型类似物中极化子的脱藻性质。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第1期|641-648|共8页
  • 作者单位

    Department of Chemistry Texas A&M University College Station Texas 77843-3255 United States;

    Shenzhen Key Laboratory of Polymer Science and Technology College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China;

    Department of Chemistry Texas A&M University at Qatar P.O. Box 23874 Doha Qatar;

  • 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
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