Hodson Nicholas J, Takano Shotaro, Fanourakis Alexander, Phipps Robert J
Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
J Am Chem Soc. 2024 Aug 14;146(32):22629-22641. doi: 10.1021/jacs.4c07117. Epub 2024 Jul 31.
This work describes highly enantioselective nitrene transfer to hydrocinnamyl alcohols (benzylic C-H amination) and allylic alcohols (aziridination) using ion-paired Rh (II,II) complexes based on anionic variants of Du Bois' esp ligand that are associated with cinchona alkaloid-derived chiral cations. Directed by a substrate hydroxyl group, our previous work with these complexes had not been able to achieve high enantioselectivity on these most useful short-chain compounds, and we overcame this challenge through a combination of catalyst design and modified conditions. A hypothesis that modulation of the linker between the anionic sulfonate group and the central arene spacer might provide a better fit for shorter chain length substrates led to the development of a new biaryl-containing scaffold, which has allowed a broad scope for both substrate classes to be realized for the first time. Furthermore, we describe a systematic structural "knockout" study on the cinchona alkaloid-derived chiral cation to elucidate which features are crucial for high enantioinduction. synthesis of modified scaffolds led to the surprising finding that for high ee the quinoline nitrogen of the alkaloid is crucial, although its location within the heterocycle could be varied, even leading to a superior catalyst. The free hydroxyl is also crucial and should possess the naturally occurring diastereomeric configuration of the alkaloid. These findings underline the privileged nature of the cinchona alkaloid scaffold and provide insight into how these cations might be used in other catalysis contexts.
本工作描述了使用基于杜博伊斯esp配体阴离子变体的离子对铑(II,II)配合物,将氮宾高度对映选择性转移至氢化肉桂醇(苄基C-H胺化)和烯丙醇(氮杂环丙烷化),这些配体与金鸡纳生物碱衍生的手性阳离子相关。在底物羟基的导向下,我们之前使用这些配合物的工作未能在这些最有用的短链化合物上实现高对映选择性,而我们通过催化剂设计和改进条件的组合克服了这一挑战。一种假设认为,调节阴离子磺酸酯基团与中心芳烃间隔基之间的连接基可能更适合较短链长的底物,这导致了一种新的含联芳基支架的开发,首次实现了这两类底物的广泛应用范围。此外,我们描述了对金鸡纳生物碱衍生的手性阳离子进行的系统结构“敲除”研究,以阐明哪些特征对高对映诱导至关重要。修饰支架的合成导致了一个惊人的发现,即对于高对映体过量而言,生物碱的喹啉氮至关重要,尽管其在杂环中的位置可以变化,甚至能得到一种更优的催化剂。游离羟基也很关键,且应具有生物碱天然存在的非对映异构构型。这些发现强调了金鸡纳生物碱支架的特殊性质,并为这些阳离子如何用于其他催化环境提供了见解。