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Aluminium fluoride - the strongest solid Lewis acid: structure and reactivity

机译:氟化铝-最坚实的刘易斯酸:结构和反应性

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摘要

High surface aluminium fluoride, HS-AlF3, and aluminium chlorofluoride, ACF, (AlClxF3-x, x = 0.05...0.3) are amorphous solids with an extraordinary high Lewis acidity, which play an increasingly important role in heterogeneous catalysis. After a historic introduction, an overview of the different experimental and theoretical methods for understanding the nature of these catalysts is provided. Special attention is given to the theoretical modelling of the surface centres and the comparison with experimental results. A classification of these solid Lewis acids among well-known molecular Lewis acids is achieved using various methods. Several fascinating catalytic reactions involving C-H and C-F bond activation are presented in the second part of the review. This includes H/D exchange between alkanes (and not only arenes), hydroarylation even with deactivated aromatic compounds, activation of fluoromethanes due to hydrodefluorination, and finally, selective dehydrohalogenation reactions of hydrochlorofluoro-alkanes.
机译:高表面氟化铝,HS-AlF3,铝氯氟化物,ACF (AlClxF3-x x =0.05……0.3)与一个非晶态固体非凡的路易斯酸度高,发挥在异构的越来越重要的作用催化。不同的实验和概述理论方法对理解自然这些提供了催化剂。给出的理论建模表面中心和比较实验结果。坚实的路易斯酸中著名的分子路易斯酸是通过使用各种方法。涉及几个迷人的催化反应碳氢键和氟键激活了第二部分的审查。交流烷烃(不仅粗砂),hydroarylation即使释放芳香化合物、氟代甲烷的活化hydrodefluorination,最后,选择性脱卤化氢反应hydrochlorofluoro-alkanes .

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