Klare Hendrik F T, Albers Lena, Süsse Lars, Keess Sebastian, Müller Thomas, Oestreich Martin
Institut für Chemie, Technische Universität Berlin, Strasse des 17 Juni 115, 10623 Berlin, Germany.
Institut für Chemie, Carl von Ossietzky Universität Oldenburg, Carl von Ossietzky-Strasse 9-11, 26129 Oldenburg, Germany.
Chem Rev. 2021 May 26;121(10):5889-5985. doi: 10.1021/acs.chemrev.0c00855. Epub 2021 Apr 16.
The history of silyl cations has all the makings of a drama but with a happy ending. Being considered reactive intermediates impossible to isolate in the condensed phase for decades, their actual characterization in solution and later in solid state did only fuel the discussion about their existence and initially created a lot of controversy. This perception has completely changed today, and silyl cations and their donor-stabilized congeners are now widely accepted compounds with promising use in synthetic chemistry. This review provides a comprehensive summary of the fundamental facts and principles of the chemistry of silyl cations, including reliable ways of their preparation as well as their physical and chemical properties. The striking features of silyl cations are their enormous electrophilicity and as such reactivity as super Lewis acids as well as fluorophilicity. Known applications rely on silyl cations as reactants, stoichiometric reagents, and promoters where the reaction success is based on their steady regeneration over the course of the reaction. Silyl cations can even be discrete catalysts, thereby opening the next chapter of their way into the toolbox of synthetic methodology.
硅正离子的历史充满了戏剧性,但却有一个圆满的结局。几十年来,它们一直被认为是在凝聚相中无法分离的活性中间体,而它们在溶液中以及后来在固态中的实际表征,只会引发关于它们存在的讨论,并最初引发了很多争议。如今,这种观念已经完全改变,硅正离子及其供体稳定的同类物现在是合成化学中具有广阔应用前景且被广泛接受的化合物。这篇综述全面总结了硅正离子化学的基本事实和原理,包括其可靠的制备方法以及物理和化学性质。硅正离子的显著特点是其极强的亲电性,因此作为超强路易斯酸具有很高的反应活性,同时还具有亲氟性。已知的应用依赖于硅正离子作为反应物、化学计量试剂和促进剂,反应的成功基于它们在反应过程中的稳定再生。硅正离子甚至可以是离散催化剂,从而开启了它们进入合成方法工具箱的新篇章。