| Literature DB >> 33852170 |
Thaddäus Thorwart1, Daniel Roth1, Lutz Greb2.
Abstract
Given its earth abundance, silicon is ideal for constructing Lewis acids of use in catalysis or materials science. Neutral silanes were limited to moderate Lewis acidity, until halogenated catecholato ligands provoked a significant boost. However, catalytic applications of bis(perhalocatecholato)silanes were suffering from very poor solubility and unknown deactivation pathways. Herewith, the novel per(trifluoromethyl)catechol, H2cat CF3 , and adducts of its silicon complex Si(catCF3 )2 (1) are described. According to the computed fluoride ion affinity, 1 ranks among the strongest neutral Lewis acids currently accessible in the condensed phase. The improved robustness and affinity of 1 enable deoxygenations of aldehydes, ketones, amides, or phosphine oxides, and a carbonyl-olefin metathesis. All those transformations have never been catalyzed by a neutral silane. Attempts to obtain donor-free 1 attest to the extreme Lewis acidity by stabilizing adducts with even the weakest donors, such as benzophenone or hexaethyl disiloxane.Entities:
Keywords: Catechol; Deoxygenation; Lewis superacids; Silicon; adducts with weak Lewis donors
Year: 2021 PMID: 33852170 DOI: 10.1002/chem.202101138
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236