Kaper Tobias, Frye Connor W, Tonks Ian A
Department of Chemistry, University of Minnesota-Twin Cities, 207 Pleasant Street SE, Minneapolis, Minnesota 55455, United States.
Organometallics. 2023 Jul 10;42(13):1459-1464. doi: 10.1021/acs.organomet.3c00195. Epub 2023 Jun 23.
There is significant interest in developing chemo- and regioselective intermolecular multicomponent syntheses of -heterocycles, which are common motifs in pharmaceuticals and natural products. Herein, we examine the potential of allenes to serve as selective coupling partners in a Ti-catalyzed [2+2+1] pyrrole synthesis reaction, which typically involves a [2+2] cycloaddition with an unsaturated substrate followed by a 1,2-insertion with a second unsaturated substrate. 1,2-cyclononadiene acts as a regioselective insertion coupling partner to afford 2,3-annulated pyrroles through reaction with alkynes and azobenzene. Additionally, propadiene was found undergo both [2+2] cycloaddition and insertion in a highly regioselective manner, yielding exclusively -phenyl-2,5-dimethylpyrrole. In contrast the [2+2+1] reaction of propyne, a propadiene isomer, results in an unselective regioisomeric mixture. This difference highlights how allenes can provide complementary (or better) selectivity compared to alkynes in multicomponent synthesis.
开发化学选择性和区域选择性分子间多组分合成杂环化合物具有重大意义,杂环是药物和天然产物中的常见结构单元。在此,我们研究了丙二烯在钛催化的[2+2+1]吡咯合成反应中作为选择性偶联伙伴的潜力,该反应通常涉及与不饱和底物的[2+2]环加成,随后与第二个不饱和底物进行1,2-插入反应。1,2-环壬二烯作为区域选择性插入偶联伙伴,通过与炔烃和偶氮苯反应生成2,3-稠合吡咯。此外,发现丙二烯以高度区域选择性的方式进行[2+2]环加成和插入反应,仅生成α-苯基-2,5-二甲基吡咯。相比之下,丙二烯异构体丙炔的[2+2+1]反应会产生非选择性的区域异构体混合物。这种差异突出了在多组分合成中,与炔烃相比,丙二烯如何能够提供互补(或更好)的选择性。