Department of Chemistry, University of New Hampshire, Durham, New Hampshire 03824, USA.
J Org Chem. 2011 Nov 18;76(22):9320-8. doi: 10.1021/jo201567d. Epub 2011 Oct 18.
The Diels-Alder reaction is not limited to 1,3-dienes. Many cycloadditions of enynes and a smaller number of examples with 1,3-diynes have been reported. These "dehydro"-Diels-Alder cycloadditions are one class of dehydropericyclic reactions which have long been used to generate strained cyclic allenes and other novel structures. CCSD(T)//M05-2X computational results are reported for the cycloadditions of vinylacetylene and butadiyne with ethylene and acetylene. Both concerted and stepwise diradical routes have been explored for each reaction, with location of relevant stationary points. Relative to 1,3-dienes, replacement of one double bond by a triple bond adds 6-6.5 kcal/mol to the activation barrier; a second triple bond adds 4.3-4.5 kcal/mol to the barrier. Product strain decreases the predicted exothermicity. In every case, a concerted reaction is favored energetically. The difference between concerted and stepwise reactions is 5.2-6.6 kcal/mol for enynes but diminishes to 0.5-2 kcal/mol for diynes. Experimental studies on intramolecular diyne + ene cycloadditions show two distinct reaction pathways, providing evidence for competing concerted and stepwise mechanisms. Diyne + yne cycloadditions connect with arynes and ethynyl-1,3-cyclobutadiene. This potential energy surface appears to be flat, with only a minute advantage for a concerted process; many diyne cycloadditions or aryne cycloreversions will proceed by a stepwise mechanism.
Diels-Alder 反应并不局限于 1,3-二烯。已经报道了许多烯炔和少数 1,3-二炔的环加成反应。这些“脱氢”-Diels-Alder 环加成反应是一类脱氢周环反应,长期以来一直用于生成应变环状丙二烯和其他新结构。报道了乙烯和乙炔与乙烯基乙炔和丁二炔的环加成的 CCSD(T)//M05-2X 计算结果。对于每个反应,都探索了协同和分步双自由基途径,并找到了相关稳定点的位置。与 1,3-二烯相比,用三键替代一个双键会使活化能垒增加 6-6.5 kcal/mol;第二个三键会使势垒增加 4.3-4.5 kcal/mol。产物应变降低了预测的放热性。在每种情况下,协同反应在能量上都更有利。对于烯炔,协同反应和分步反应之间的差异为 5.2-6.6 kcal/mol,但对于二炔,差异减小到 0.5-2 kcal/mol。关于分子内二炔+烯环加成的实验研究表明存在两种不同的反应途径,为竞争的协同和分步机制提供了证据。二炔+炔环加成与芳炔和乙炔基-1,3-环丁二烯相连。这个势能面似乎很平坦,协同过程只有微小的优势;许多二炔环加成或芳炔环反转将通过分步机制进行。