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Hyper-Rayleigh Scattering as a New Chiroptical Method: Uncovering the Nonlinear Optical Activity of Aromatic Oligoamide Foldamers

机译:超瑞利散射作为一种新的按摩疗法:揭示芳香族低聚酰胺折叠剂的非线性光学活性。

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摘要

Molecular helices based on self-organized aromatic oligoamide foldamers have been designed and prepared in their two enantiomeric forms in order to probe their second-order nonlinear chiroptical properties in solution. The quinoline oligoamides were rationally functionalized by electron-donating and electron-withdrawing groups to afford a gradual increase of the electronic polarization of the helical architectures. Their hyper-Rayleigh scattering (HRS) responses in solution were accordingly assessed, using either linearly polarized or circularly polarized incident light. Both methods allowed us to observe nonlinear optical activity that was quantified, for the first time for molecular systems, through circular differential scattering intensity ratios. The hyper-Rayleigh optical activity study reveals important charge-transfer differences within the aromatic oligomers, depending on the helix handedness and on the extent of electronic polarization induced by the appended substituents. The origin of the enantiomeric difference is discussed considering both achiral and chiral contributions. Overall, using aromatic oligoamide foldamers as a chiral model, we demonstrate the capabilities of HRS as a complementary chiroptical method, ideally suited for the analysis of various chiral molecular and supramolecular systems in solution. The reliability and chiral discrimination sensitivity of the method can be further improved through dynamic measurements using standard polarization modulation and heterodyning techniques.
机译:为了研究溶液中的二阶非线性手性,已经设计和制备了基于自组织芳香族低聚酰胺折叠剂的分子螺旋。通过给电子和吸电子基团合理地官能化了喹啉低酰胺,以逐渐增加螺旋结构的电子极化。因此,使用线性偏振或圆偏振入射光评估其在溶液中的超瑞利散射(HRS)响应。两种方法都使我们能够观察到非线性光学活性,这是分子系统首次通过圆形微分散射强度比进行了量化。超瑞利光学活性研究表明,在芳香族低聚物中,重要的电荷转移差异取决于螺旋的旋向性和附加取代基引起的电子极化程度。考虑到非手性和手性的贡献,讨论了对映体差异的起源。总体而言,使用芳香族低酰胺折叠剂作为手性模型,我们证明了HRS作为互补手性方法的功能,非常适合分析溶液中的各种手性分子和超分子系统。通过使用标准偏振调制和外差技术进行动态测量,可以进一步提高该方法的可靠性和手性鉴别灵敏度。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第1期|257-263|共7页
  • 作者单位

    Institut des Sciences Moleculaires UMR 5255 CNRS Universite de Bordeaux 351 Cours de la Liberation F-33405 Talence Cedex France;

    Institut de Chimie et Biologie des Membranes et des Nano-objets UMR 5248 CNRS Universite de Bordeaux 2 rue Robert Escarpit F-33600 Pessac France;

    Institut Europeen de Chimie et Biologie UMS 3033 CNRS Universite de Bordeaux 2 rue Robert Escarpit F-33600 Pessac France;

  • 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
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  • 入库时间 2022-08-18 05:17:05

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