Tietze Lutz F, Kinzel Tom, Wolfram Thomas
Institut für Organische und Biomolekulare Chemie, Georg-August-Universität Göttingen, Tammannstrasse 2, 37077 Göttingen, Germany.
Chemistry. 2009 Jun 15;15(25):6199-210. doi: 10.1002/chem.200900062.
Novel chiral auxiliaries for the stereoselective allylation of aliphatic methyl ketones with allyltrimethylsilane and their use in the synthesis of homoallylic ethers are described. In a multicomponent domino process catalyzed by trifluoromethanesulfonic acid, the allyl moiety and the auxiliary are transferred onto the substrate to yield tertiary homoallylic ethers. The most useful auxiliary for a general application turned out to be the trimethylsilyl ether of phenyl benzyl carbinol with an induced diastereoselectivity of 90:10 using ethyl methyl ketone and 94:6 using isopropyl methyl ketone as substrates. The transferred substituted benzyl moiety has good protecting properties in subsequent transformations and can easily be removed under reductive conditions to provide the corresponding homoallylic alcohol. The origin of the high selectivity could be elucidated by identifying the relevant transition states using quantum-chemical calculations. An excellent agreement between calculated and experimentally observed selectivities was obtained assuming an oxocarbenium ion as intermediate.
描述了用于脂肪族甲基酮与烯丙基三甲基硅烷进行立体选择性烯丙基化反应的新型手性助剂及其在合成高烯丙基醚中的应用。在三氟甲磺酸催化的多组分多米诺过程中,烯丙基部分和助剂转移到底物上,生成叔高烯丙基醚。事实证明,对于一般应用最有用的助剂是苯基亚苄基甲醇的三甲基硅基醚,以乙基甲基酮为底物时诱导的非对映选择性为90:10,以异丙基甲基酮为底物时为94:6。转移的取代苄基部分在后续转化中具有良好的保护性能,并且可以在还原条件下轻松除去,以提供相应的高烯丙基醇。通过使用量子化学计算确定相关过渡态,可以阐明高选择性的起源。假设以氧鎓离子为中间体,计算得到的选择性与实验观察到的选择性之间取得了极好的一致性。