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Flexibility Coexists with Shape-Persistence in Cyanostar Macrocycles

机译:Cyanostar大环中的灵活性与形状持久性并存

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摘要

Shape-persistent macrocycles are attractive functional targets for synthesis, molecular recognition, and hierarchical self-assembly. Such macrocycles are noncollapsible and geometrically well-defined, and they are traditionally characterized by having repeat units and low conformational flexibility. Here, we find it necessary to refine these ideas in the face of highly flexible yet shape-persistent macrocycles. A molecule is shape-persistent if it has a small change in shape when perturbed by external stimuli (e.g., heat, light, and redox chemistry). In support of this idea, we provide the first examination of the relationships between a macrocycle's shape persistence, its conformational space, and the resulting functions. We do this with a star-shaped macrocycle called cyanostar that is flexible as well as being shape-persistent. We employed molecular dynamics (MD), density functional theory (DFT), and NMR experiments. Considering a thermal bath as a stimulus, we found a single macrocycle has 332 accessible conformers with olefins undergoing rapid interconversion by up-down and in-out motions on short time scales (0.2 ns). These many interconverting conformations classify single cyanostars as flexible. To determine and confirm that cyanostars are shape-persistent, we show that they have a high 87% shape similarity across these conformations. To further test the idea, we use the binding of diglyme to the single macrocycle as guest-induced stimulation. This guest has almost no effect on the conformational space. However, formation of a 2:1 sandwich complex involving two macrocycles enhances rigidity and dramatically shifts the conformer distribution toward perfect bowls. Overall, the present study expands the scope of shape-persistent macrocycles to include flexible macrocycles if, and only if, their conformers have similar shapes.
机译:形状持久的大环化合物是合成,分子识别和分层自组装的有吸引力的功能目标。这样的大环是不可折叠的并且在几何上是明确定义的,并且传统上它们的特征在于具有重复单元和低构象灵活性。在这里,我们发现有必要面对高度灵活但形状持久的宏周期来完善这些想法。如果分子在受到外部刺激(例如,热,光和氧化还原化学反应)扰动后形状变化不大,则它是形状持久的。为了支持该想法,我们对宏周期的形状持久性,其构象空间以及生成的函数之间的关系进行了首次检查。我们使用一个称为cyanostar的星形大环来做到这一点,它既灵活又具有形状持久性。我们采用了分子动力学(MD),密度泛函理论(DFT)和NMR实验。将热浴视为刺激,我们发现单个大环具有332个可访问的构象异构体,其中烯烃在短时间内(0.2 ns)通过上下运动进行快速的相互转化。这些许多相互转换的构型将单个氰基星形分类为柔性的。为了确定并确认氰基星具有形状持久性,我们证明了它们在这些构象之间具有很高的87%形状相似性。为了进一步验证该想法,我们使用了二甘醇二甲醚与单个大环的结合作为来宾诱导的刺激。该来宾几乎对构象空间没有影响。但是,由两个大环组成的2:1三明治复合物的形成增强了刚性,并使构象异构体的分布朝着理想的碗状方向显着转移。总体而言,本研究扩大了形状持久性大环的范围,以包括(且仅当)其构象异构体具有相似形状时才包括柔性大环。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第14期|4843-4851|共9页
  • 作者单位

    Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States;

    Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, Illinois 61801, United States;

    Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, Illinois 61801, United States;

    Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States;

    Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States;

    Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, 405 North Mathews Avenue, Urbana, Illinois 61801, United States ,Department of Physics, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801, United States;

    Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States;

  • 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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  • 入库时间 2022-08-18 03:08:47

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