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Synthesis, Characterization, and Solid State Dynamic Studies of a Hydrogen Bond-Hindered Steroidal Molecular Rotor with a Flexible Axis

机译:具有柔性轴的氢键阻碍甾体分子转子的合成,表征和固态动态研究

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摘要

A novel steroid molecular rotor was obtained in four steps from the naturally occurring spirostane sapogenin diosgenin. The structural and dynamic characterization was carried out by solution NMR, VT X-ray diffraction, solid state ~(13)C CPMAS, and solid state ~(2)H NMR experiments. They allowed the identification of a fast dynamic process with a frequency of 14 MHz at room temperature, featuring a barrier to rotation Ea = 7.87 kcal mol~(–1). The gathered experimental evidence indicated the presence of a hydrogen bond that becomes stronger as the temperature lowers. This interaction was characterized using theoretical calculations, based on topological analyses of the electronic density and energies. In addition, combining theoretical calculations with experimental measurements, it was possible to propose a partition to Ea (~8 kcal/mol) into three contributions, that are the cost of the intrinsic rotation (~2 kcal/mol), the hydrogen bond interaction (~2 kcal/mol), and the packing effects (~2–3 kcal/mol). The findings from the present work highlight the relevance of the individual components in the function of molecular machines in the solid state.
机译:从天然存在的螺旋烷素Diosinin中获得了一种新的类固醇分子转子。通过溶液NMR,VT X射线衍射,固态〜(13)C CPMA和固态〜(2)H NMR实验进行结构和动态表征。它们允许在室温下识别频率为14MHz的频率,具有旋转屏障EA = 7.87 kcal mol〜(-1)。所聚集的实验证据表明存在氢键,随着温度降低而变得更强。基于电子密度和能量的拓扑分析,使用理论计算表征该相互作用。此外,将理论计算与实验测量相结合,可以将分配给EA(〜8kcal / mol)分为三种贡献,即固有旋转(〜2kcal / mol),氢键相互作用的成本(〜2kcal / mol)和包装效果(〜2-3 kcal / mol)。本作工作的发现突出了各个组分在固态中分子机器的功能的相关性。

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  • 来源
    《The Journal of Organic Chemistry》 |2018年第7期|共12页
  • 作者单位

    Facultad de Química Universidad Nacional Autónoma de México Ciudad Universitaria 04510 Ciudad de México México;

    Instituto de Química Universidad Nacional Autónoma de México Circuito Exterior Ciudad Universitaria 04510 Ciudad de México México;

    Department of Chemistry and Biochemistry University of California Los Angeles California 90095 United States;

    Departamento de Química División de Ciencias Básicas e Ingeniería Universidad Autónoma Metropolitana-Iztapalapa Av. San Rafael Atlixco No.186 C.P.09340 Ciudad de México México;

    Instituto de Química Universidad Nacional Autónoma de México Circuito Exterior Ciudad Universitaria 04510 Ciudad de México México;

    Facultad de Química Universidad Nacional Autónoma de México Ciudad Universitaria 04510 Ciudad de México México;

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