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亲电试剂亲合力:芳香取代反应的反应性度量。

Electrophile affinity: a reactivity measure for aromatic substitution.

机构信息

Department of Chemistry, University of Sofia, Sofia 1164, Bulgaria.

出版信息

J Am Chem Soc. 2009 Oct 21;131(41):14722-7. doi: 10.1021/ja902194y.

Abstract

The reactivity and regioselectivity of the electrophilic chlorination, nitration, and alkylation of benzene derivatives were rationalized by comparing literature data for the partial rate factors (ln f) for these S(E)Ar processes with theoretical reactivity parameters. The Electrophile Affinity (Ealpha), a new quantity, is introduced to characterize reactivity and positional selectivity. Ealpha is evaluated theoretically by the energy change associated with formation of an arenium ion by attachment of a model electrophile to the aromatic ring. The dependence between Ealpha and ln f values for chlorination for 11 substitutions of benzene and methyl benzenes had a high correlation coefficient (r = 0.992). Quite satisfactory correlations between Ealpha values and partial rate factors also were obtained for the nitration of substituted benzenes (r = 0.971 for 12 processes) and benzylation of benzene and halobenzenes (r = 0.973 for 13 processes). These results provide clear evidence for the usefulness of the electrophile affinity in quantifying reactivity and regiochemistry. Satisfactory relationships (r >0.97) also were found between EPN (electrostatic potential at nuclei) values, which reflect the variations of electron density at the different arene ring positions, and the experimental partial rate factors (ln f) for the chlorination and nitration reactions, but not for the benzylation. This disaccord is attributed to strong steric influences on the reaction rates for substitutions involving the bulky benzyl moiety.

摘要

通过比较文献中这些 S(E)Ar 过程的部分速率因子(ln f)与理论反应性参数,对苯衍生物的亲电氯化、硝化和烷基化的反应性和区域选择性进行了合理化。引入了一个新的量,亲电亲和能(Ealpha),用于描述反应性和位置选择性。通过将模型亲电试剂附着到芳环上来形成翁离子的能量变化,从理论上评估 Ealpha。11 个苯和甲基苯取代基的氯化反应的 Ealpha 和 ln f 值之间具有很高的相关系数(r = 0.992)。对于取代苯的硝化(r = 0.971,涉及 12 个过程)和苯和卤代苯的苄基化(r = 0.973,涉及 13 个过程),也得到了相当满意的 Ealpha 值和部分速率因子之间的相关性。这些结果为定量反应性和区域化学提供了亲电亲和能的有用性的明确证据。在反映不同芳烃环位置电子密度变化的静电势(EPN)值与氯化和硝化反应的实验部分速率因子(ln f)之间也发现了令人满意的关系(r>0.97),但对于苄基化反应则不然。这种不一致归因于涉及大体积苄基部分的取代反应速率的强烈空间影响。

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