Kariapper F Safia, Bouda Maria, Wolf Christian
Department of Chemistry, Georgetown University, 37th & O Street, Washington, DC, 20057, USA.
Chemistry. 2025 Jun 23;31(35):e202500881. doi: 10.1002/chem.202500881. Epub 2025 May 19.
High-throughput asymmetric reaction development of an organocatalytic Michael addition is achieved by using a readily available isatin molecule as an amine protecting group, reagent for reactivity Umpolung, and as a chiroptical yield and enantioselectivity reporter. The use of UV and circular dichroism inductions allows on-the-fly, chromatography-free parallel screening of a hundred reaction conditions to identify a catalytic procedure that converts a primary amine to either enantiomer of an a-branched chiral product in excellent yields and ee's. The isatin is recyclable and can be quantitatively recovered if desired. This case study shows how chiroptical high-throughput screening with a multitasking reagent can increase method development speed and reduce cost and waste compared to traditional reaction optimization workflows by streamlining the analysis of small-scale reaction setups and eliminating time-consuming work-up protocols.
通过使用易于获得的异吲哚酮分子作为胺保护基团、反应性极性翻转试剂以及手性光学产率和对映选择性报告分子,实现了有机催化迈克尔加成反应的高通量不对称反应开发。利用紫外和圆二色性诱导,可对一百种反应条件进行即时、无需色谱的平行筛选,以确定一种催化方法,该方法能以优异的产率和对映体过量值将伯胺转化为α-支链手性产物的任意一种对映体。异吲哚酮可回收利用,如有需要可定量回收。本案例研究表明,与传统反应优化工作流程相比,使用多功能试剂进行手性光学高通量筛选如何通过简化小规模反应设置的分析并消除耗时的后处理方案来提高方法开发速度、降低成本和减少浪费。