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内部亲核反应中的应变能释放与内在势垒

Strain energy release and intrinsic barriers in internal nucleophilic reactions.

作者信息

Wolk Joel L, Rozental Esther, Basch Harold, Hoz Shmaryahu

机构信息

Department of Chemistry, Bar-Ilan University, Ramat-Gan, Israel 52900.

出版信息

J Org Chem. 2006 May 12;71(10):3876-9. doi: 10.1021/jo060215c.

Abstract

This paper reports computational data for the energetics of internal attacks, both in ring-opening reactions (eq 3) where strain energy is released and in model, strain-free systems (eq 4). A comparison is drawn with the corresponding bimolecular processes. The exothermicity of three-membered ring-opening reactions is significantly larger than that of the four-membered ring systems. However, using the Marcus equation, it is shown that the higher reactivity of the three-membered rings is intrinsic to the system and does not stem only from a higher thermodynamic driving force. The intrinsic barriers for the strain-free reactions are shown to be dominated by the position of the nucleophilic and nucleofugic atoms in the periodic table, as in the bimolecular SN2 reactions, although a pi rather than a sigma bond is formed in these reactions.

摘要

本文报道了关于分子内进攻能量学的计算数据,这些数据既涉及开环反应(式3),其中释放了应变能,也涉及模型无应变体系(式4)。文中将其与相应的双分子过程进行了比较。三元环开环反应的放热性明显大于四元环体系。然而,使用马库斯方程表明,三元环较高的反应活性是该体系所固有的,并非仅源于更高的热力学驱动力。结果表明,无应变反应的固有能垒如同双分子SN2反应一样,由周期表中亲核原子和亲核离去原子的位置主导,尽管在这些反应中形成的是π键而非σ键。

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