Künzler Sandra, Rathjen Saskia, Rüger Katherina, Würdemann Marie S, Wernke Marcel, Tholen Patrik, Girschik Corinna, Schmidtmann Marc, Landais Yannick, Müller Thomas
Institut für Chemie, Carl von Ossietzky Universität Oldenburg, Carl von Ossietzky-Str. 9-11, 26129, Oldenburg, Germany, European Union.
Institute of Molecular Sciences (ISM), University of Bordeaux, CNRS, UMR-5255, 351 Cours de la libération, 33400, Talence, France, European Union.
Chemistry. 2020 Dec 9;26(69):16441-16449. doi: 10.1002/chem.202002977. Epub 2020 Oct 27.
Cyclic silylated chalconium borates 13[B(C F ) ] and 14[B(C F ) ] with peri-acenaphthyl and peri-naphthyl skeletons were synthesized from unsymmetrically substituted silanes 3, 4, 6, 7, 9 and 10 using the standard Corey protocol (Chalcogen Ch=O, S, Se, Te). The configuration at the chalcogen atom is trigonal pyramidal for Ch=S, Se, Te, leading to the formation of cis- and trans-isomers in the case of phenylmethylsilyl cations. With the bulkier tert-butyl group at silicon, the configuration at the chalcogen atoms is predetermined to give almost exclusively the trans-configurated cyclic silylchalconium ions. The barriers for the inversion of the configuration at the sulfur atoms of sulfonium ions 13 c and 14 a are substantial (72-74 kJ mol ) as shown by variable temperature NMR spectroscopy. The neighboring group effect of the thiophenyl substituent is sufficiently strong to preserve chiral information at the silicon atom at low temperatures.
具有苊基和萘基骨架的环状甲硅烷基化硼酸盐13[B(CF)]和14[B(CF)],是使用标准的科里方法(硫族元素Ch=O、S、Se、Te),由不对称取代的硅烷3、4、6、7、9和10合成的。对于Ch=S、Se、Te,硫族原子处的构型为三角锥形,在苯甲基甲硅烷基阳离子的情况下会形成顺式和反式异构体。由于硅上有体积更大的叔丁基,硫族原子处的构型预先确定几乎只生成反式构型的环状甲硅烷基鎓离子。如变温核磁共振光谱所示,锍离子13 c和14 a中硫原子处构型翻转的势垒很大(72 - 74 kJ mol)。硫苯基取代基的邻基效应足够强,能够在低温下保留硅原子处的手性信息。