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Computational Comparison of Chemical and Isotopic Approaches to Control the Photoisomerization Dynamics of Light-Driven Molecular Motors

机译:化学和同位素方法控制光电分子电机光学传感动力学的计算比较

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摘要

Synthetic molecular motors driven by E/Z photoisomerization reactions are able to produce unidirectional rotary motion because of a structural asymmetry that makes one direction of rotation more probable than the other. In most such motors, this asymmetry is realized through the incorporation of a chemically asymmetric carbon atom. Here, we present molecular dynamics simulations based on multiconfigurational quantum chemistry to investigate whether the merits of this approach can be equaled by an alternative approach that instead exploits isotopic chirality. By first considering an N-methylpyrrolidine-cyclopentadiene motor design, it is shown that isotopically chiral variants of this design undergo faster photoisomerizations than a chemically chiral counterpart, while maintaining rotary photoisomerization quantum yields of similarly high magnitude. However, by subsequently considering a pyrrolinium-cyclopentene design, it is also found that the introduction of isotopic chirality does not provide any control of the directionality of the photoinduced rotations within this framework. Taken together, the results highlight both the potential usefulness of isotopic rather than chemical chirality for the design of light-driven molecular motors, and the need for further studies to establish the exact structural circumstances under which this asymmetry is best exploited.
机译:由E/Z光异构化反应驱动的合成分子马达能够产生单向旋转运动,因为结构不对称使得一个旋转方向比另一个旋转方向更可能。在大多数这样的马达中,这种不对称性是通过加入化学上不对称的碳原子来实现的。在这里,我们提出了基于多构型量子化学的分子动力学模拟,以研究这种方法的优点是否可以与另一种利用同位素手性的方法相媲美。首先考虑N-甲基吡咯烷-环戊二烯马达设计,结果表明,这种设计的同位素手性变体比化学手性对应物经历更快的光异构化,同时保持同样高的旋转光异构化量子产率。然而,通过随后考虑吡咯啉环戊烯设计,还发现引入同位素手性并不能在该框架内控制光诱导旋转的方向性。综上所述,这些结果强调了同位素而非化学手性对于光驱动分子马达设计的潜在实用性,以及进一步研究的必要性,以确定最佳利用这种不对称性的确切结构环境。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2021年第8期|共8页
  • 作者单位

    Univ Girona Fac Ciencies Inst Quim Computac &

    Catalisi ES-17003 Girona Spain;

    Linnaeus Univ Fac Hlth &

    Life Sci Dept Chem &

    Biomed Sci SE-45041 Kalmar Sweden;

    Linkoping Univ Div Theoret Chem IFM SE-58183 Linkoping Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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