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Hydrogen Bonding Lowers Intrinsic Nucleophilicity Of Solvated Nucleophiles

机译:氢键降低溶剂化亲核试剂的固有亲核性

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摘要

The relationship between nucleophilicity and the structure/environment of the nucleophile is of fundamental importance in organic chemistry. In this work, we have measured nucleophilicities of a series of substituted alkoxides in the gas phase. The functional group substitutions affect the nucleophiles through ion-dipole, ion-induced dipole interactions and through hydrogen bonding whenever structurally possible. This set of alkoxides serves as an ideal model system for studying nucleophiles under microsolvation settings. Marcus theory was applied to analyze the results. Using Marcus theory, we separate nucleophilicity into two independent components, an intrinsic nucleophilicity and a thermodynamic driving force determined solely by the overall reaction exothermicity. It is found that the apparent nucleophilicities of the substituted alkoxides are always much lower than those of the unsubstituted ones. However, ion-dipole, ion-induced dipole interactions, by themselves, do not significantly affect the intrinsic nucleophilicity; the decrease in the apparent nucleophilicity results from a weaker thermodynamic driving force. On the other hand, hydrogen bonding not only stabilizes the nucleophile but also increases the intrinsic barrier height by 3 to ~4 kcal mol~(-1). In this regard, the hydrogen bond is not acting as a perturbation in the sense of an external dipole but more directly affects the electronic structure and reactivity of the nucleophilic alkoxide. This finding offers a deeper insight into the solvation effect on nucleophilicity, such as the remarkably lower reactivities in nucleophilic substitution reactions in protic solvents than in aprotic solvents.
机译:亲核性与亲核体的结构/环境之间的关系在有机化学中至关重要。在这项工作中,我们已经测量了气相中一系列取代的醇盐的亲核性。在结构上可能的情况下,官能团取代会通过离子偶极,离子诱导的偶极相互作用以及氢键影响亲核试剂。这组醇盐是在微溶剂化条件下研究亲核试剂的理想模型系统。应用Marcus理论分析结果。使用马库斯理论,我们将亲核性分为两个独立的部分,一个固有的亲核性和一个仅由整体反应放热确定的热力学驱动力。发现取代的醇盐的表观亲核性总是比未取代的醇盐的亲核性低得多。然而,离子-偶极,离子诱导的偶极相互作用本身并不会显着影响内在亲核性。表观亲核性的降低是由较弱的热力学驱动力引起的。另一方面,氢键不仅可以稳定亲核试剂,而且可以将本征势垒高度提高3至〜4 kcal mol〜(-1)。在这方面,氢键在外部偶极意义上不充当扰动,而是更直接地影响亲核醇盐的电子结构和反应性。这一发现为溶剂化对亲核性的影响提供了更深刻的见解,例如质子溶剂中亲核取代反应中的反应性显着低于非质子溶剂中。

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  • 来源
    《Journal of the American Chemical Society》 |2008年第45期|15038-15046|共9页
  • 作者

    Xin Chen; John I; Brauman;

  • 作者单位
  • 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 03:20:07

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