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Defined Merocyanine Dye Stacks from a Dimer up to an Octamer by Spacer-Encoded Self-Assembly Approach

机译:通过间隔编码的自组装方法将定义的Merocyyanine染料从二聚体上的二聚体堆叠起来

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摘要

A series of well-defined chromophore stacks is obtained upon self-assembly of merocyanine and bis(merocyanine) dyes in nonpolar solvents. Careful design of the spacer moieties linking the dipolar chromophores within the bis(merocyanine) dyes allows one to direct the dipole-dipole interaction driven aggregation into stacks of desired size from dimer up to octamer. The spacer-encoded self assembly process was investigated by UV/vis absorption spectroscopy showing an increase of the hypsochromic shift with increasing stack size. The structure of the largest aggregate comprising eight chromophores was analyzed by 1D and 2D nuclear magnetic resonance spectroscopic studies revealing a perfectly interdigitated centrosymmetric organization of the dipolar dyes and concomitant annihilation of the ground state dipole moment is observed in the UV/vis absorption spectra. This unprecedented series of dye stacks from dimer to octamer enabled a systematic study of the optical absorption properties in dependence of the stack size disclosing that the absorption features can be rationalized by molecular exciton theory. Our results show that the noncovalent synthesis approach based on dipolar aggregation is suitable for the design of well-defined dye aggregates of specific size, allowing in-depth studies to manifest structure property relationships.
机译:在非极性溶剂中的Merocyanine和BIS(Merocyanine)染料的自组装时获得一系列明确的发色团堆。仔细设计与双极色团内的双极色团内(Merocyanine)染料中的间隔部分允许将偶极子 - 偶极子相互作用从二聚体直接引导到所需尺寸的堆叠中,从二聚体上达到八寡。通过UV / Vis吸收光谱研究了间隔编码的自组装过程,显示出增加堆叠尺寸的低温变化的增加。通过1D和2D核磁共振光谱研究分析包含八种发色团的最大骨料的结构,揭示了在UV / Vis吸收光谱中观察到偶极染料的完全交叉的离心机组织,并且在UV / Vis吸收光谱中观察到地态偶极力矩的伴随湮灭。该前所未有的一系列染料叠层从二聚体到八铬er,使得堆叠尺寸公开的堆叠尺寸可以通过分子激子理论来合理化吸收特征的系统研究。我们的研究结果表明,基于偶极聚集的非共价合成方法适用于设计特定尺寸明确的染料聚集体,允许深入研究表现出明显的结构性质关系。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第18期|7428-7438|共11页
  • 作者单位

    Univ Wurzburg Inst Organ Chem D-97074 Wurzburg Germany;

    Univ Wurzburg Inst Organ Chem D-97074 Wurzburg Germany;

    Univ Wurzburg Ctr Nanosyst Chem Theodor Boveri Weg D-97074 Wurzburg Germany;

    Univ Wurzburg Inst Organ Chem D-97074 Wurzburg Germany;

    Univ Wurzburg Inst Organ Chem D-97074 Wurzburg Germany|Univ Wurzburg Ctr Nanosyst Chem Theodor Boveri Weg D-97074 Wurzburg Germany;

  • 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);
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  • 正文语种 eng
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