首页> 外文期刊>The Journal of Organic Chemistry >Trisannulated Benzene Derivatives by Acid Catalyzed Aldol Cyclotrimerizations of Cyclic Ketones. Methodology Development and Mechanistic Insight
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Trisannulated Benzene Derivatives by Acid Catalyzed Aldol Cyclotrimerizations of Cyclic Ketones. Methodology Development and Mechanistic Insight

机译:环酮的酸催化醛醇三环化反应制得的三环化苯衍生物。方法论发展与机制洞察

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Several factors that contribute to the success of aldol Cyclotrimerizations have been clarified as part of an effort to shed light on the inner workings of this century old reaction. The use of 4,7-di-tert-butylacenaphthenone (11) as a mechanistic probe molecule has led to intriguing discoveries about temperature, solvent, and solubility effects. Solvents that are both polarizable and somewhat polar, e.g., o-dichlorobenzene (ODCB), work best for the aromatic ketones examined. Certain Bronsted acids were found to work better than Lewis acids as catalysts for the archetypal aldol cyclotrimerization of indanone (2) in aprotic solvents, and a strong dependence on the pK_a of the acid was observed. A standardized protocol, using p-toluenesulfonic acid monohydrate, is shown to work well in a number of test cases.
机译:为了阐明这一古老的反应的内在作用,已阐明了有助于醛醇三环化成功的几个因素。使用4,7-二叔丁基-啶酮(11)作为机理探针分子引起了有关温度,溶剂和溶解度影响的有趣发现。可极化且有点极性的溶剂,例如邻二氯苯(ODCB),对于所研究的芳族酮效果最佳。发现某些布朗斯台德酸在非质子溶剂中作为茚满酮(2)的原型羟醛环三聚反应的催化剂比路易斯酸更好,并且观察到对酸的pK_a的强烈依赖性。已显示使用对甲苯磺酸一水合物的标准化方案在许多测试案例中都能很好地工作。

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