Tschernuth Florian S, Thorwart Thaddäus, Greb Lutz, Hanusch Franziska, Inoue Shigeyoshi
Department of Chemistry, WACKER-Institute of Silicon Chemistry and Catalysis Research Center, Technische Universität München, Lichtenbergstraße 4, 85748, Garching, Germany.
Anorganisch-Chemisches Institut, Universität Heidelberg, Im Neuenheimer Feld 270, 69120, Heidelberg, Germany.
Angew Chem Int Ed Engl. 2021 Dec 1;60(49):25799-25803. doi: 10.1002/anie.202110980. Epub 2021 Nov 5.
Despite the earth abundance and easy availability of silicon, only few examples of isolable neutral silicon centered Lewis superacids are precedent in the literature. To approach the general drawbacks of limited solubility and unselective deactivation pathways, we introduce a Lewis superacid, based on perfluorinated pinacol substituents. The compound is easily synthesized on a gram-scale as the corresponding acetonitrile mono-adduct 1⋅(MeCN) and was fully characterized, including single crystal X-ray diffraction analysis (SC-XRD) and state-of-the-art computations. Lewis acidity investigations by the Gutmann-Beckett method and fluoride abstraction experiments indicate a Lewis superacidic nature. The challenging Si-F bond activation of Et SiF is realized and promising catalytic properties are demonstrated, consolidating the potential applicability of silicon centered Lewis acids in synthetic catalysis.
尽管硅在地球上储量丰富且易于获取,但文献中仅有少数可分离的中性硅中心路易斯超强酸的实例。为解决溶解性有限和失活途径无选择性等普遍缺点,我们引入了一种基于全氟频哪醇取代基的路易斯超强酸。该化合物作为相应的乙腈单加合物1⋅(MeCN) 易于克级规模合成,并通过单晶X射线衍射分析(SC-XRD)和先进计算等手段进行了全面表征。通过古特曼-贝克特方法进行的路易斯酸度研究和氟化物夺取实验表明其具有路易斯超强酸性。实现了对Et SiF具有挑战性的Si-F键活化,并展示出有前景的催化性能,巩固了硅中心路易斯酸在合成催化中的潜在适用性。