Centre for Synthesis and Chemical Biology, School of Chemistry and Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.
J Org Chem. 2012 Oct 19;77(20):9304-12. doi: 10.1021/jo301972w. Epub 2012 Oct 4.
The tetraarylazadipyrromethene chromophore class has gained increasing attention in the past decade for a diverse set of scientific interests and applications. The most direct synthetic route available for their generation is heating of 4-nitro-1,3-diarylbutan-1-ones with an ammonium source in an alcohol solvent. Despite the practical simplicity, the reaction pathway(s) for these conversions are lengthy and unclear. To gain insight into the steps involved, (15)N labeling experiments with MS and NMR analysis were utilized for conversion of 4-nitro-1,3-diphenylbutan-1-one 1 into tetraphenylazadipyrromethene 2 with (15)NH(4)OAc. To permit examination of later stages of the reaction sequence to 2, the (15)N-labeled potential intermediate 3,5-diphenyl-1H-pyrrol-2-amine 10 was synthesized. A study of the dimerization pathway utilizing (15)N-labeled 10 revealed an unprecedented nitrogen rearrangement in the final stages of the pathway involving a ring-opening/closing of a pyrrole ring. Utilizing (15)N labeling experiments we have shown that 2,4-diphenylpyrrole 8 can also react under the reaction conditions with 3,5-diphenyl-2H-pyrrol-2-imine 7 (from oxidation of 10) to produce 2. Overall in the conversion of 1 into 2, two related pathways are ongoing concurrently; the first involves a dimerization of 3,5-diphenyl-2H-pyrrol-2-imine 7, and the other a reaction of 7 with 2,4-diphenylpyrrole 8.
四芳基偶氮二吡咯甲川染料类在过去十年中因其在各种科学兴趣和应用中的重要性而受到越来越多的关注。它们最直接的合成途径是在醇溶剂中加热 4-硝基-1,3-二芳基丁烷-1-酮与铵源。尽管这种方法具有实际的简单性,但这些转化的反应途径(s)冗长且不清楚。为了深入了解所涉及的步骤,利用 MS 和 NMR 分析对 4-硝基-1,3-二苯基丁烷-1-酮 1 进行了 (15)N 标记实验,并用 (15)NH(4)OAc 将其转化为四芳基偶氮二吡咯甲川染料 2。为了能够检查反应序列中 2 后期的阶段,合成了 (15)N 标记的潜在中间体 3,5-二苯基-1H-吡咯-2-胺 10。利用 (15)N 标记的 10 研究二聚途径揭示了在途径的最后阶段涉及吡咯环的开环/闭环的前所未有的氮重排。利用 (15)N 标记实验,我们已经表明 2,4-二苯基吡咯 8 也可以在反应条件下与 3,5-二苯基-2H-吡咯-2-亚胺 7(由 10 氧化产生)反应生成 2。总的来说,在从 1 到 2 的转化过程中,有两个相关的途径同时进行;第一个涉及 3,5-二苯基-2H-吡咯-2-亚胺 7 的二聚反应,另一个涉及 7 与 2,4-二苯基吡咯 8 的反应。