Max-Planck Institut für Polymerforschung , Ackermannweg 10, 55128 Mainz, Germany.
Laboratory for Chemistry of Novel Materials, University of Mons , Place du Parc 20, B-7000 Mons, Belgium.
J Am Chem Soc. 2016 Mar 2;138(8):2602-8. doi: 10.1021/jacs.5b10399. Epub 2016 Feb 22.
Cyclodehydrogenation is a versatile reaction that has enabled the syntheses of numerous polycyclic aromatic hydrocarbons (PAHs). We now describe a unique Scholl reaction of 6,7,13,14-tetraarylbenzo[k]tetraphene, which "unexpectedly" forms five-membered rings accompanying highly selective 1,2-shift of aryl groups. The geometric and optoelectronic nature of the resulting bistetracene analogue with five-membered rings is comprehensively investigated by single-crystal X-ray, NMR, UV-vis absorption, and cyclic voltammetry analyses. Furthermore, a possible mechanism is proposed to account for the selective five-membered-ring formation with the rearrangement of the aryl groups, which can be rationalized by density functional theory (DFT) calculations. The theoretical results suggest that the formation of the bistetracene analogue with five-membered rings is kinetically controlled while an "expected" product with six-membered rings is thermodynamically more favored. These experimental and theoretical results provide further insights into the still controversial mechanism of the Scholl reaction as well as open up an unprecedented entry to extend the variety of PAHs by programing otherwise unpredictable rearrangements during the Scholl reaction.
环脱氢反应是一种用途广泛的反应,能够用于合成多种多环芳烃(PAHs)。我们现在描述了一种独特的 Scholl 反应,涉及 6,7,13,14-四芳基苯并[k]四苯,它“出人意料”地形成了伴随高度选择性 1,2-芳基迁移的五元环。通过单晶 X 射线、NMR、紫外-可见吸收和循环伏安法分析,全面研究了具有五元环的双并四苯类似物的几何和光电性质。此外,提出了一个可能的机制来解释具有芳基重排的五元环选择性形成,这可以通过密度泛函理论(DFT)计算来合理化。理论结果表明,五元环双并四苯类似物的形成受动力学控制,而六元环的“预期”产物在热力学上更有利。这些实验和理论结果进一步深入了解了仍有争议的 Scholl 反应机制,并为通过在 Scholl 反应期间编程否则不可预测的重排来扩展 PAHs 的种类开辟了前所未有的途径。