Wiesner Tanja, Heurix Madeleine, Fischer Roland C, Torvisco Ana, Haas Michael
Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, 8010 Graz, Austria.
ACS Omega. 2022 Oct 13;7(42):38025-38036. doi: 10.1021/acsomega.2c05258. eCollection 2022 Oct 25.
In this study, a variety of α,ω-bisacylpolysilanes were synthesized via two synthetic protocols. The first method for obtaining these compounds is based on the substitution reaction of bromine either on silica gel or by the use of silver salts. Surprisingly, instead of the expected bromine substitution product PhC(O)(SiMe)C(O)Ph , we found the formation of the diastereomer PhC(O)(SiMe)CBrPhOCBrPh(SiMe)C(O)Ph indicating a more complex reaction cascade. On the other hand, the phenylated compound yielded the expected bromine substitution product PhC(O)(SiPh)C(O)Ph . For the second protocol, we utilized the Corey-Seebach approach to isolate other representatives of this compound class. We found that the substituents at the α-silicon atoms influence the selectivity of the dethioketalization. While the ethylated and phenylated disilanes , yield the expected bisacyldisilanes ,, the methylated disilane undergoes a BF-induced Si-Si bond breakage followed by an intermolecular sila-aldol reaction. This hitherto unknown sila-aldol reaction results in the formation of the enantiomer PhC(O)SiMeC(OMe)PhSiMeF in excellent yields. All isolated compounds were analyzed by a combination of NMR spectroscopy, ultraviolet-visible (UV-vis) spectroscopy, single-crystal X-ray crystallography, and mass spectrometry. Furthermore, the photochemical pathways of two representative examples (,) were examined.
在本研究中,通过两种合成方案合成了多种α,ω-双酰基聚硅烷。获得这些化合物的第一种方法是基于溴在硅胶上的取代反应或使用银盐。令人惊讶的是,我们没有得到预期的溴取代产物PhC(O)(SiMe)C(O)Ph,而是发现了非对映异构体PhC(O)(SiMe)CBrPhOCBrPh(SiMe)C(O)Ph的形成,这表明反应级联更为复杂。另一方面,苯基化化合物得到了预期的溴取代产物PhC(O)(SiPh)C(O)Ph。对于第二种方案,我们采用科里-西巴赫方法来分离该化合物类别的其他代表物。我们发现α-硅原子上的取代基会影响脱硫缩酮化的选择性。虽然乙基化和苯基化的二硅烷 生成了预期的双酰基二硅烷 ,但甲基化的二硅烷 在BF的作用下发生Si-Si键断裂,随后发生分子间硅羟醛反应。这种迄今未知的硅羟醛反应以优异的产率生成对映体PhC(O)SiMeC(OMe)PhSiMeF。所有分离出的化合物都通过核磁共振光谱、紫外可见(UV-vis)光谱、单晶X射线晶体学和质谱联用进行了分析。此外,还研究了两个代表性实例( )的光化学途径。