FRC Kazan Scientific Center, Arbuzov Institute of Organic and Physical Chemistry, Russian Academy of Science, Arbuzova Str., 8, 420088 Kazan, Russia.
Kazan National Research Technological University, Karl Marx Str., 68, 420015 Kazan, Russia.
Int J Mol Sci. 2024 Jun 7;25(12):6327. doi: 10.3390/ijms25126327.
The electrophilic activation of various substrates via double or even triple protonation in superacidic media enables reactions with extremely weak nucleophiles. Despite the significant progress in this area, the utility of organophosphorus compounds as superelectrophiles still remains limited. Additionally, the most common superacids require a special care due to their high toxicity, exceptional corrosiveness and moisture sensitivity. Herein, we report the first successful application of the "Brønsted acid assisted Brønsted acid" concept for the superelectrophilic activation of 2-hydroxybenzo[][1,2]oxaphosphinine 2-oxides (phosphacoumarins). The pivotal role is attributed to the tendency of the phosphoryl moiety to form hydrogen-bonded complexes, which enables the formation of dicationic species and increases the electrophilicity of the phosphacoumarin. This unmasks the reactivity of phosphacoumarins towards non-activated aromatics, while requiring only relatively non-benign trifluoroacetic acid as the reaction medium.
在超强酸介质中通过双重甚至三重质子化来实现各种底物的亲电活化,使得能够与极其弱的亲核试剂发生反应。尽管在这一领域取得了重大进展,但有机磷化合物作为超强亲电试剂的应用仍然有限。此外,由于高毒性、非凡的腐蚀性和对水分的敏感性,最常见的超强酸需要特别注意。在此,我们报告了“布朗斯特酸辅助布朗斯特酸”概念在 2-羟基苯并[][1,2]氧杂磷杂环庚烷 2-氧化物(膦香豆素)的超强亲电活化中的首次成功应用。这一概念的关键作用归因于磷酰基部分形成氢键配合物的趋势,这使得形成二阳离子物种并增加了膦香豆素的亲电性。这揭示了膦香豆素对非活化芳族化合物的反应性,而仅需要相对非良性的三氟乙酸作为反应介质。