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密度泛函理论(DFT)为1,1-二芳基烷氧基自由基的O-新戊基重排中的逐步机理提供的证据。

DFT evidence for a stepwise mechanism in the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals.

作者信息

Bietti Massimo, Ercolani Gianfranco, Salamone Michela

机构信息

Dipartimento di Scienze e Tecnologie Chimiche, Università Tor Vergata, Via della Ricerca Scientifica, 00133 Roma, Italy.

出版信息

J Org Chem. 2007 Jun 8;72(12):4515-9. doi: 10.1021/jo070125n. Epub 2007 May 8.

Abstract

Hybrid DFT calculations of the potential energy surface (PES) relative to the O-neophyl rearrangement of a series of ring-substituted 1,1-diarylalkoxyl radicals have been carried out at the UB3LYP/6-31G(d) level of theory. On the basis of the computational data, the rearrangement can be described as a consecutive reaction of the type a <--/--> b --> c (see above graphic), and the steady-state approximation could be applied in all cases to the intermediate b. The first-order rearrangement rate constants [kobs = k1k2/(k-1 + k2)] were thus obtained from the computed activation free-energies and were compared with the experimental rate constants measured previously in MeCN solution by laser flash photolysis. An excellent agreement is observed along the two series, which strongly supports the hypothesis that the O-neophyl rearrangement of 1,1-diarylalkoxyl radicals proceeds through the formation of the reactive 1-oxaspiro [2,5]octadienyl radical intermediate. This is in contrast to previous hypotheses that involve either a long-lived intermediate or the absence of this intermediate along the reaction path. The calculated rearrangement free-energies decrease upon going from the methoxy-substituted radical (Delta G degrees = -16.4 kcal x mol-1) to the nitro-substituted one (Delta G degrees = -21.8 kcal x mol-1), which follows a trend that is similar to the one observed for the CAr-O bond dissociation enthalpies (BDEs) of ring-substituted anisoles. This evidence indicates that in the O-neophyl rearrangement the effect of ring substituents on the strength of the newly formed CAr-O bond plays an important role.

摘要

在UB3LYP/6 - 31G(d)理论水平上,对一系列环取代的1,1 - 二芳基烷氧基自由基相对于O - 新戊基重排的势能面(PES)进行了杂化密度泛函理论(Hybrid DFT)计算。基于计算数据,该重排可描述为a <--/--> b --> c类型的连续反应(见上图),并且在所有情况下稳态近似都可应用于中间体b。由此从计算得到的活化自由能获得了一级重排速率常数[kobs = k1k2/(k - 1 + k2)],并将其与先前在乙腈溶液中通过激光闪光光解测量的实验速率常数进行了比较。在这两个系列中观察到了极好的一致性,这有力地支持了以下假设:1,1 - 二芳基烷氧基自由基的O - 新戊基重排是通过形成反应性的1 - 氧杂螺[2,5]辛二烯基自由基中间体进行的。这与先前的假设形成对比,先前的假设涉及要么是长寿命中间体,要么是反应路径中不存在该中间体。从甲氧基取代的自由基(ΔG° = -16.4 kcal·mol⁻¹)到硝基取代的自由基(ΔG° = -21.8 kcal·mol⁻¹),计算得到的重排自由能降低,这遵循了与环取代苯甲醚的CAr - O键解离能(BDEs)所观察到的趋势相似的趋势。这一证据表明,在O - 新戊基重排中,环取代基对新形成的CAr - O键强度的影响起着重要作用。

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