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芳基并合喹喔啉二炔的合成、热反应性及计算研究:苯并环化反应热力学上扩展的苯环稠合效应。

Syntheses, thermal reactivities, and computational studies of aryl-fused quinoxalenediynes: effect of extended benzannelation on Bergman cyclization energetics.

机构信息

Department of Chemistry, California State University, Sacramento, Sacramento, California 95819, USA.

出版信息

J Org Chem. 2012 Nov 16;77(22):10329-39. doi: 10.1021/jo302009c. Epub 2012 Oct 31.

Abstract

A series of [b]-fused 6,7-diethynylquinoxaline derivatives have been synthesized through an imine condensation strategy to examine the effect of extended benzannelation on the thermal reactivity of enediynes. Absorption and emission spectra of the highly conjugated quinoxalenediynes were red-shifted approximately 100-200 nm relative to those of 1,2-diethynylbenzene. Strong exotherms indicative of enediyne cyclization were observed by differential scanning calorimetry, while solution cyclizations in the presence of 1,4-cyclohexadiene confirmed C(1)-C(6) Bergman cyclization. To provide further insight into Bergman cyclization energetics, computational studies were performed to compare changes in the cyclization enthalpy barrier, reaction enthalpy, and barrier of retro-Bergman ring-opening. Extension of benzannelation from 1,2-diethynylbenzene to either 2,3-diethynylnaphthalene or the 6,7-diethynylquinoxalines had a minimal effect on the cyclization barrier. In comparison, the enthalpies of cyclization were increased upon linearly extended benzannelation, which resulted in reduced barriers to retro-Bergman ring-opening. In addition, the orientation of extended benzannelation was found to have a significant effect on the cyclization endothermicity. In particular, 5,6-diethynylquinoxaline exhibited a 6.9 kcal/mol decrease in cyclization enthalpy compared to 6,7-diethynylquinoxaline due to increased aromatic stabilization energy in the respective angularly versus linearly fused azaacene cyclized products.

摘要

一系列通过亚胺缩合策略合成的[b] - 稠合 6,7-二乙炔基喹喔啉衍生物,用于研究扩展苯并环化对烯二炔热反应性的影响。高度共轭的喹喔啉二炔的吸收和发射光谱相对于 1,2-二乙炔基苯红移约 100-200nm。差示扫描量热法观察到强烈的放热峰,表明烯二炔环化,而在 1,4-环己二烯存在下的溶液环化证实了 C(1)-C(6) Bergman 环化。为了进一步深入了解 Bergman 环化的能量学,进行了计算研究以比较环化焓垒、反应焓和反 Bergman 开环的势垒变化。将苯并环化从 1,2-二乙炔基苯扩展到 2,3-二乙炔基萘或 6,7-二乙炔基喹喔啉,对环化垒的影响很小。相比之下,线性扩展苯并环化增加了环化的焓,从而降低了反 Bergman 开环的势垒。此外,扩展苯并环化的取向被发现对环化的吸热有重大影响。特别是,5,6-二乙炔基喹喔啉的环化焓降低了 6.9kcal/mol,与 6,7-二乙炔基喹喔啉相比,这是由于各自角状而非线性稠合的氮杂薁环化产物中的芳香稳定能增加所致。

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