Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin53703, United States.
Drug Product Development, GlaxoSmithKline, Upper Providence, Pennsylvania19426, United States.
J Org Chem. 2022 Sep 2;87(17):11776-11782. doi: 10.1021/acs.joc.2c01479. Epub 2022 Aug 15.
A multitude of techniques are available to obtain a useful understanding of photocatalytic mechanisms. The combination of LED illumination with nuclear magnetic resonance spectroscopy (LED-NMR) provides a rapid, convenient means to directly monitor a photocatalytic reaction in situ. Herein, we describe a study of the mechanism of an enantioselective intermolecular [2 + 2] photocycloaddition catalyzed by a chiral Ir photocatalyst using LED-NMR. The data-rich output of this experiment is suitable for same-excess and variable time normalization analyses (VTNA). Together, these identified an unexpected change in mechanism between reactions conducted at ambient and cryogenic temperatures. At -78 °C, the kinetic data are consistent with the triplet rebound mechanism we previously proposed for this reaction, involving sensitization of maleimide and rapid reaction with a hydrogen-bound quinoline within the solvent cage. At room temperature, the cycloaddition instead proceeds through intracomplex energy transfer to the hydrogen-bound quinolone. These results highlight the potential sensitivity of photocatalytic reaction mechanisms to the precise reaction conditions and the further utility of LED-NMR as a fast, data-rich tool for their interrogation that compares favorably to conventional ex situ kinetic analyses.
有许多技术可用于深入了解光催化机制。将 LED 光照与核磁共振波谱(LED-NMR)相结合,为直接原位监测光催化反应提供了一种快速、便捷的方法。在此,我们描述了使用 LED-NMR 研究手性 Ir 光催化剂催化的对映选择性分子间[2+2]光环加成反应的机理。该实验的数据丰富,适合等过量和可变时间归一化分析(VTNA)。这些分析共同确定了在环境温度和低温下进行的反应之间机制的意外变化。在-78°C 下,动力学数据与我们之前提出的该反应的三重态回弹机制一致,涉及马来酰亚胺的敏化作用和溶剂笼内氢键喹啉的快速反应。在室温下,环加成则通过内络合物能量转移到氢键喹啉进行。这些结果突出了光催化反应机制对精确反应条件的潜在敏感性,以及 LED-NMR 作为快速、数据丰富的工具用于其探究的进一步实用性,与传统的非原位动力学分析相比具有优势。