WACKER-Chair of Macromolecular Chemistry, §WACKER-Institute of Silicon Chemistry, ⊥Catalysis Research Center, Technische Universität München , Lichtenbergstraße 4, 85748 Garching bei München, Germany.
J Am Chem Soc. 2017 Nov 29;139(47):17193-17198. doi: 10.1021/jacs.7b10634. Epub 2017 Nov 16.
A long-term dream comes true: An acyclic, neutrally charged silanone at last! Here, we report on the first examples of isolable acyclic, neutral, three-coordinate silanones 2 with indefinite stability as solids and lifetimes in solution of up to 2 days. The electronic properties of the Si═O bond were investigated via DFT calculations and revealed the π-donating N-heterocyclic imino (NHI) and σ-donating silyl groups as key factors for their enhanced stability. Besides initial reactivity studies of 2 toward CO and methanol, different isomerization pathways depending on the silyl substitution pattern were found. For 2a (R = TMS), a 1,3-silyl shift gave an intermediary disilene, which was trapped as unique NHC-disilene adduct 6. For the more stable silanone 2b (R = t-Bu), a selective transformation to the first reported room temperature stable, acyclic, two-coordinate N,O-silylene 7 exhibiting a fascinating siloxy ligand was observed. Both compounds were fully characterized experimentally and their bonding features were analyzed by theoretical calculations.
终于有了一个无环的、中性的硅酮!在这里,我们报告了首例可分离的无环、中性、三配位硅酮 2 的实例,它们作为固体具有不定的稳定性,在溶液中的寿命长达 2 天。通过 DFT 计算研究了 Si═O 键的电子性质,结果表明,作为关键因素的 N-杂环亚氨基 (NHI) 和给电子的硅基增强了其稳定性。除了 2 对 CO 和甲醇的初始反应性研究外,还发现了不同的异构化途径,这取决于硅取代模式。对于 2a(R = TMS),1,3-硅迁移给出了一个独特的二硅烯中间体,它被捕获为独特的 NHC-二硅烯加合物 6。对于更稳定的硅酮 2b(R = t-Bu),观察到选择性转化为第一个报道的在室温下稳定的、无环的、两配位的 N,O-硅烯 7,其表现出令人着迷的硅氧基配体。这两种化合物都通过实验进行了充分的表征,并通过理论计算分析了它们的键合特征。