Ribeiro Francisco W M, Omari Isaac, Scott McIndoe J, Correra Thiago C
Department of Chemistry, University of Victoria, P. O. Box 3065, Victoria, BC V8W 3V6, Canada.
Department of Fundamental Chemistry, Institute of Chemistry, University of São Paulo Av. Prof. Lineu Prestes, 748, Cidade Universitária, São Paulo, São, Paulo, 05508-000, Brazil.
Chemphyschem. 2024 Oct 1;25(19):e202400295. doi: 10.1002/cphc.202400295. Epub 2024 Jul 30.
The effect of acidic media on the formation of the 3,4-dihydro-2H-3-phenyl-1,3-benzoxazine Bz is evaluated, focusing on the differentiation of intermediates and products formed by the distinct pathways observed in the presence and absence of acid. The use of real-time mass spectrometry (PSI-ESI-MS) coupled to tandem mass spectrometry and infrared multiple photon dissociation (IRMPD) allowed the differentiation of the species observed during the synthesis of benzoxazines in these different conditions. The results suggest that formic acid promotes the formation of aniline and phenol condensation products (IC and IIC) by protecting the aniline amino group and enhancing the formaldehyde electrophilicity. The results also suggest that although the presence of acid allow a more efficient potential energy landscape to be accessed, the last cyclization step for the formation of benzoxazines cannot be mediated by the protonation route intermediate (ROP Bz). Overall, the conclusions presented here provide important information about the synthesis of benzoxazines under acidic conditions, allowing the development of optimal reaction conditions.
评估了酸性介质对3,4-二氢-2H-3-苯基-1,3-苯并恶嗪Bz形成的影响,重点是区分在有无酸的情况下通过不同途径形成的中间体和产物。使用与串联质谱和红外多光子解离(IRMPD)联用的实时质谱(PSI-ESI-MS)能够区分在这些不同条件下苯并恶嗪合成过程中观察到的物种。结果表明,甲酸通过保护苯胺氨基并增强甲醛亲电性促进苯胺和苯酚缩合产物(IC和IIC)的形成。结果还表明,尽管酸的存在允许进入更有效的势能面,但苯并恶嗪形成的最后环化步骤不能由质子化途径中间体(ROP Bz)介导。总体而言,此处给出的结论提供了有关酸性条件下苯并恶嗪合成的重要信息,有助于开发最佳反应条件。