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使用相似性模型计算化学反应性的加和规则:亲电离去性和亲核离去性的计算与解释

Additivity rules using similarity models for chemical reactivity: calculation and interpretation of electrofugality and nucleofugality.

作者信息

Bentley T William

机构信息

Department of Chemistry, University of Wales, Swansea, Singleton Park, Swansea SA2 8PP, Wales, UK.

出版信息

Chemistry. 2006 Aug 25;12(25):6514-20. doi: 10.1002/chem.200600517.

Abstract

A recently proposed, multi-parameter correlation: log k (25 degrees C)=s(f) (Ef + Nf), where Ef is electrofugality and Nf is nucleofugality, for the substituent and solvent effects on the rate constants for solvolyses of benzhydryl and substituted benzhydryl substrates, is re-evaluated. A new formula (Ef=log k (RCl/EtOH/25 degrees C) -1.87), where RCl/EtOH refers to ethanolysis of chlorides, reproduces published values of Ef satisfactorily, avoids multi-parameter optimisations and provides additional values of Ef. From the formula for Ef, it is shown that the term (sfxEf) is compatible with the Hammett-Brown (rho+sigma+) equation for substituent effects. However, the previously published values of N(f) do not accurately account for solvent and leaving group effects (e.g. nucleofuge Cl or X), even for benzhydryl solvolyses; alternatively, if the more exact, two-parameter term, (sfxNf) is used, calculated effects are less accurate. A new formula (Nf=6.14 + log k(BX/any solvent/25 degrees C)), where BX refers to solvolysis of the parent benzhydryl as electrofuge, defines improved Nf values for benzhydryl substrates. The new formulae for Ef and Nf are consistent with an assumption that sf=1.00(,) and so improved correlations for benzhydryl substrates can be obtained from the additive formula: log k(RX/any solvent/25 degrees C)=(Ef + Nf). Possible extensions of this approach are also discussed.

摘要

最近提出的一个多参数关联式

log k(25℃)=s(f)(Ef + Nf),其中Ef是电负性,Nf是亲核性,用于描述取代基和溶剂对二苯甲基及取代二苯甲基底物溶剂解反应速率常数的影响,现对其进行重新评估。一个新的公式(Ef=log k(RCl/EtOH/25℃) - 1.87),其中RCl/EtOH指氯化物的乙醇解反应,能令人满意地重现已发表的Ef值,避免了多参数优化,并提供了额外的Ef值。从Ef的公式可以看出,项(sfxEf)与描述取代基效应的哈米特 - 布朗(rho+sigma+)方程是兼容的。然而,之前发表的N(f)值即使对于二苯甲基溶剂解反应,也不能准确地解释溶剂和离去基团的影响(例如亲核体Cl或X);或者,如果使用更精确的双参数项(sfxNf),计算出的效应就不太准确。一个新的公式(Nf=6.14 + log k(BX/任何溶剂/25℃)),其中BX指母体二苯甲基作为电负性基团的溶剂解反应,定义了二苯甲基底物改进后的Nf值。Ef和Nf的新公式与sf = 1.00的假设一致,因此可以从加和公式log k(RX/任何溶剂/25℃)=(Ef + Nf)得到二苯甲基底物改进后的关联式。本文还讨论了该方法可能的扩展。

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