Department of Chemistry, Marquette University, P.O. Box 1881, Milwaukee, Wisconsin 53201-1881, USA.
J Org Chem. 2010 Jul 16;75(14):4748-60. doi: 10.1021/jo100611k.
DDQ/H(+) system readily oxidizes a variety of electron donors with oxidation potential as high as approximately 1.7 V to the corresponding cation radicals. A re-examination of the controversial arenium-ion versus cation-radical mechanisms for Scholl reaction using DDQ/H(+) together with commonly utilized FeCl(3) as oxidants led us to demonstrate that the reaction proceeds largely via a cation-radical mechanism. The critical experimental evidence in support of a cation-radical pathway for the Scholl reaction includes the following: (i) There is no reaction in Scholl precursors in a mixture of dichloromethane and various acids (10% v/v). (ii) The necessity to use powerful oxidants such as ferric chloride (FeCl(3)) or DDQ/H(+) for Scholl reactions is inconsistent with the arenium-ion mechanism in light of the fact that aromatization of the dihydro intermediates (formed via arenium-ion mechanism) can be easily accomplished with rather weak oxidants such as iodine or air. (iii) Various Scholl precursors with oxidation potentials <or=1.7 V vs SCE undergo ready oxidative C-C bond formation with DDQ/H(+) as oxidant, whereas Scholl precursors with oxidation potentials greater than >1.7 V vs SCE do not react. (iv) Finally, the feasibility of the dicationic intermediate, formed by loss of two electrons, has been demonstrated by its generation from a tetraphenylene derivative using DDQ/H(+) as an oxidant.
DDQ/H(+) 体系可以将氧化还原电位高达约 1.7V 的各种电子给体迅速氧化为相应的正离子自由基。使用 DDQ/H(+) 以及常用的三氯化铁作为氧化剂,重新考察了 Scholl 反应中存在争议的翁离子与正离子自由基机理,结果表明该反应主要通过正离子自由基机理进行。支持 Scholl 反应通过正离子自由基途径进行的关键实验证据包括:(i)在二氯甲烷和各种酸(10%v/v)的混合物中,Scholl 前体没有反应。(ii)使用三氯化铁(FeCl(3))或 DDQ/H(+) 等强氧化剂进行 Scholl 反应与翁离子机理不一致,因为通过翁离子机理形成的二氢中间体的芳构化可以很容易地用较弱的氧化剂如碘或空气完成。(iii)各种氧化还原电位<或=1.7V vs SCE 的 Scholl 前体可以与 DDQ/H(+) 作为氧化剂迅速进行 C-C 键形成氧化反应,而氧化还原电位大于>1.7V vs SCE 的 Scholl 前体则不反应。(iv)最后,通过使用 DDQ/H(+) 作为氧化剂从四苯并衍生物中生成二阳离子中间体,证明了其生成的可行性。