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3,5-吡啶炔——一种杂环间苯炔衍生物。

3,5-Pyridyne--a heterocyclic meta-benzyne derivative.

作者信息

Winkler Michael, Cakir Bayram, Sander Wolfram

机构信息

Lehrstuhl für Organische Chemie II der Ruhr-Universität Bochum, Universitätsstrasse 150, 44780 Bochum, Germany.

出版信息

J Am Chem Soc. 2004 May 19;126(19):6135-49. doi: 10.1021/ja039142u.

Abstract

3,5-Pyridyne (3) has been generated by flash vacuum pyrolysis of 3,5-diiodopyridine (20) and 3,5-dinitropyridine (21) and characterized by IR spectroscopy in cryogenic argon matrices. The aryne can clearly be distinguished from other side products by its photolability at 254 nm, inducing a rapid ring-opening presumably to (Z)-1-aza-hex-3-ene-1,5-diyne. As byproducts of the pyrolysis, HCN and butadiyne were identified, together with traces of acetylene, cyanoacetylene, (E)-1-aza-hex-3-ene-1,5-diyne, and the 3-iodo-5-pyridyl radical (from 20). Several pathways for rearrangements and fragmentations of 3 and of the parent meta-benzyne (1) have been explored computationally by density functional theory and ab initio quantum chemical methods. The lowest energy decomposition pathway of biradicals 1 and 3 is a ring-opening process accompanied by hydrogen migration, leading to (Z)-hex-3-ene-1,5-diyne [(Z)-10] and (Z)-3-aza-hex-3-ene-1,5-diyne [(Z)-24], respectively. Both reactions require activation energies of 45-50 kcal mol(-1). Mechanisms leading from (Z)-24 or directly from 3 to the experimentally observed byproducts are discussed. Upon replacement of the C(5)H moiety by N in meta-benzyne, high-level calculations predict a modest shortening of the interradical distance by 5-7 pm and a reduction of the singlet-triplet energy splitting by 3 kcal mol(-1), in good agreement with isodesmic equations, according to which the singlet ground state of 3 is destabilized relative to 1 by 3-4 kcal mol(-1). In contrast to 3,5-borabenzyne (2), which is found to be doubly aromatic, nucleus-independent chemical shifts of 3 are almost identical to that of pyridine, indicating the absence of paramagnetic ring current effects that may be associated with "in-plane antiaromaticity". As compared with 1, the overall perturbation caused by the nitrogen atom in 3 is weak, and four electron, three center interaction is of minor importance in this molecule.

摘要

3,5 - 吡啶炔(3)通过3,5 - 二碘吡啶(20)和3,5 - 二硝基吡啶(21)的快速真空热解生成,并在低温氩气基质中通过红外光谱进行表征。该芳炔在254 nm处具有光解性,可明显与其他副产物区分开来,光解会引发快速开环,可能生成(Z)-1 - 氮杂 - 己 - 3 - 烯 - 1,5 - 二炔。作为热解的副产物,鉴定出了HCN和丁二炔,以及痕量的乙炔、氰基乙炔、(E)-1 - 氮杂 - 己 - 3 - 烯 - 1,5 - 二炔和3 - 碘 - 5 - 吡啶基自由基(来自20)。通过密度泛函理论和从头算量子化学方法,对3和母体间 - 苯炔(1)的重排和碎片化的几种途径进行了计算探索。双自由基1和3的最低能量分解途径是一个伴随氢迁移的开环过程,分别生成(Z)-己 - 3 - 烯 - 1,5 - 二炔[(Z)-10]和(Z)-3 - 氮杂 - 己 - 3 - 烯 - 1,5 - 二炔[(Z)-24]。这两个反应都需要45 - 50 kcal mol⁻¹的活化能。讨论了从(Z)-24或直接从3到实验观察到的副产物的反应机理。在间 - 苯炔中用N取代C(5)H部分后,高水平计算预测自由基间距离适度缩短5 - 7 pm,单重态 - 三重态能量分裂降低3 kcal mol⁻¹,这与等键方程很好地吻合,根据该方程,3的单重态基态相对于1不稳定3 - 4 kcal mol⁻¹。与被发现具有双重芳香性的3,5 - 硼苯炔(2)不同,3的核独立化学位移与吡啶几乎相同,表明不存在可能与“面内反芳香性”相关的顺磁环电流效应。与1相比,3中氮原子引起的整体扰动较弱,并且四电子三中心相互作用在该分子中不太重要。

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