Toda Yasunori, Korenaga Toshinobu, Obayashi Ren, Kikuchi Jun, Terada Masahiro
Department of Chemistry, Graduate School of Science, Tohoku University Aoba-ku Sendai 980-8578 Japan
Department of Chemistry and Biological Sciences, Faculty of Science and Engineering, Iwate University Morioka 020-8551 Japan.
Chem Sci. 2021 Jun 29;12(30):10306-10312. doi: 10.1039/d1sc02122b. eCollection 2021 Aug 4.
The dynamic parallel kinetic resolution (DPKR) of an α-ferrocenyl cation intermediate under the influence of a chiral conjugate base of a chiral phosphoric acid catalyst has been demonstrated in an S1 type substitution reaction of a racemic ferrocenyl derivative with a nitrogen nucleophile. The present method provides efficient access to a ferrocenylethylamine derivative in a highly enantioselective manner, which is potentially useful as a key precursor of chiral ligands for metal catalysis. The mechanism of the present intriguing resolution system was elucidated by control experiments using the enantio-pure precursor of relevant α-ferrocenyl cation intermediates and the hydroamination of vinylferrocene. Further theoretical studies enabled the elucidation of the origin of the stereochemical outcome as well as the efficient DPKR. The present DPKR, which opens a new frontier for kinetic resolution, involves the racemization process through the formation of vinylferrocene and the chemo-divergent parallel kinetic resolution of the enantiomeric α-ferrocenyl cations generated by the protonation/deprotonation sequence of vinylferrocene.
在手性磷酸催化剂的手性共轭碱影响下,外消旋二茂铁基衍生物与氮亲核试剂发生S1型取代反应,实现了α-二茂铁基阳离子中间体的动态平行动力学拆分(DPKR)。本方法以高对映选择性的方式高效合成二茂铁乙胺衍生物,该衍生物可能是金属催化手性配体的关键前体。通过使用相关α-二茂铁基阳离子中间体的对映纯前体和乙烯基二茂铁的氢胺化反应进行对照实验,阐明了本有趣拆分体系的机理。进一步的理论研究有助于阐明立体化学结果的起源以及高效的DPKR。本DPKR为动力学拆分开辟了新的领域,它涉及通过形成乙烯基二茂铁的外消旋化过程以及乙烯基二茂铁质子化/去质子化序列产生的对映体α-二茂铁基阳离子的化学发散平行动力学拆分。