Kappe C. Oliver, Padwa Albert
Department of Chemistry, Emory University, Atlanta, Georgia 30322.
J Org Chem. 1996 Sep 6;61(18):6166-6174. doi: 10.1021/jo9607929.
The alpha-thiocarbocation generated from the Pummerer reaction of an o-heteroaroyl-substituted sulfoxide is intercepted by the adjacent keto group to produce an alpha-thio-substituted heteroaromatic isobenzofuran. In the presence of a suitable dienophile, the reactive o-xylylene undergoes a Diels-Alder cycloaddition followed by an acid-catalyzed ring-opening and aromatization to give heteroaromatic naphthalene derivatives. This one-pot procedure occurs smoothly with electron-deficient dienophiles. The tandem Pummerer cyclization-cycloaddition sequence also occurs intramolecularly using unactivated alkenyl tethers of variable length. With acetylenic dienophiles, the primary cycloadducts undergo in situ ring-opening to produce hydroxynaphthalene derivatives. In the absence of a dienophile, it was possible to prepare 4-(ethylthio)-6-phenylthieno[2,3-c]furan and 1-ethyl-4-(phenylsulfonyl)-4H-furo[3,4-b]indole. Various synthetic approaches were used for the preparation of the requisite thiophene- and indole-derived sulfoxide precursors. The facility of the tandem Pummerer-Diels-Alder reaction was very dependent on the experimental conditions used to promote the reaction. The best results were achieved by employing a mixture of acetic anhydride and toluene which contained a catalytic quantity of p-toluenesulfonic acid. The presence of the acid effectively drives the reaction in the desired direction by preventing formation of the acetoxy sulfide, which corresponds to the normal Pummerer product.
由邻位杂芳酰基取代的亚砜经普默勒反应生成的α-硫代碳正离子被相邻的酮基捕获,生成α-硫代取代的杂芳族异苯并呋喃。在合适的亲双烯体存在下,活性邻二甲苯撑发生狄尔斯-阿尔德环加成反应,随后经酸催化开环和芳构化反应,得到杂芳族萘衍生物。该一锅法反应在缺电子亲双烯体存在下顺利进行。普默勒环化-环加成串联反应也可通过使用不同长度的未活化烯基连接链在分子内发生。对于炔属亲双烯体,初级环加成产物会原位开环生成羟基萘衍生物。在没有亲双烯体的情况下,可以制备4-(乙硫基)-6-苯基噻吩并[2,3-c]呋喃和1-乙基-4-(苯磺酰基)-4H-呋喃并[3,4-b]吲哚。采用了各种合成方法来制备所需的噻吩和吲哚衍生的亚砜前体。普默勒-狄尔斯-阿尔德串联反应的难易程度非常依赖于用于促进反应的实验条件。使用含有催化量对甲苯磺酸的乙酸酐和甲苯的混合物可获得最佳结果。酸的存在通过防止对应于正常普默勒产物的乙酰氧基硫化物的形成,有效地将反应驱动到所需方向。