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Equilibrium Isotope Effects on Noncovalent Interactions in a Supramolecular Host-Guest System

机译:平衡同位素对超分子宿主-客体系统中非共价相互作用的影响

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摘要

The self-assembled supramolecular complex [Ga_4L_6]~(12-) (1; L = 1,5-bis[2,3-dihydroxybenzamido]- naphthalene) can act as a molecular host in aqueous solution and bind cationic guest molecules to its highly charged exterior surface or within its hydrophobic interior cavity. The distinct internal cavity of host 1 modifies the physical properties and reactivity of bound guest molecules and can be used to catalyze a variety of chemical transformations. Noncovalent host-guest interactions in large part control guest binding, molecular recognition and the chemical reactivity of bound guests. Herein we examine equilibrium isotope effects (EIEs) on both exterior and interior guest binding to host 1 and use these effects to probe the details of noncovalent host-guest interactions. For both interior and exterior binding of a benzylphosphonium guest in aqueous solution, protiated guests are found to bind more strongly to host 1 (K_H/K_D > 1) and the preferred association of protiated guests is driven by enthalpy and opposed by entropy. Deuteration of guest methyl and benzyl C-H bonds results in a larger EIE than deuteration of guest aromatic C-H bonds. The observed EIEs can be well explained by considering changes in guest vibrational force constants and zero-point energies. DFT calculations further confirm the origins of these EIEs and suggest that changes in low-frequency guest C-H/D vibrational motions (bends, wags, etc.) are primarily responsible for the observed EIEs.
机译:自组装的超分子复合物[Ga_4L_6]〜(12-)(1; L = 1,5-双[2,3-二羟基苯甲酰胺基]-萘)可以在水溶液中充当分子主体并将阳离子客体分子与其结合高电荷的外表面或在其疏水性内腔内。宿主1的独特内部空腔可改变结合的客体分子的物理性质和反应性,并可用于催化多种化学转化。非共价宿主-客体相互作用在很大程度上控制了客体的结合,分子识别和结合客体的化学反应性。在本文中,我们研究了对外部和内部客体与宿主1的结合的平衡同位素效应(EIE),并使用这些效应来探究非共价宿主与客体相互作用的细节。对于水溶液中苄基guest客体的内部和外部结合,发现质子化的客体与宿主1的结合更牢固(K_H / K_D> 1),并且质子化的客体的优选缔合是由焓驱动的,而与熵相反。客体甲基和苄基C-H键的氘代产生的EIE大于客体芳族C-H键的氘代。通过考虑客体振动力常数和零点能量的变化可以很好地解释观测到的EIE。 DFT计算进一步证实了这些EIE的起源,并表明低频客体C-H / D振动运动(弯曲,摇摆等)的变化是观察到的EIE的主要原因。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第4期|p.2057-2066|共10页
  • 作者单位

    Department of Chemistry, University of California, Berkeley, Berkeley, California 94720-1460, United States,Chemical Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720-1460, United States;

    Department of Chemistry, University of California, Berkeley, Berkeley, California 94720-1460, United States,Chemical Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720-1460, United States;

    Department of Chemistry, University of California, Berkeley, Berkeley, California 94720-1460, United States,Chemical Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720-1460, 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);
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