Deufel Fritz, van Gemmeren Manuel
Otto-Diels-Institut für Organische Chemie, Christian-Albrechts-Universität zu Kiel, Otto-Hahn-Platz 4, 24118 Kiel, Germany.
J Chem Educ. 2024 Jul 16;101(8):3410-3417. doi: 10.1021/acs.jchemed.4c00270. eCollection 2024 Aug 13.
Isotopic labeling is an important tool in medicinal research, metabolomics, and for understanding reaction mechanisms. In this context, transition metal-catalyzed C-H activation has emerged as a key technology for deuterium incorporation via hydrogen isotope exchange. A detailed and easy-to-implement experimental procedure for a nondirected arene deuteration has been developed that exclusively uses commercial equipment and chemicals. The protocol is ideally suited for students and other prospective applicants who are not experts in catalysis. The degree of deuterium incorporation was analyzed via different means like mass spectrometry and H and H nuclear magnetic resonance (NMR). A hands-on understanding of quantitative NMR, as well as the influence of H/D exchange on experimental spectra, was conveyed by comparative NMR spin simulations. Students were measurably familiarized with the concepts of C-H activation, isotope effects, and basics in experimental catalysis.
同位素标记是药物研究、代谢组学以及理解反应机理的重要工具。在此背景下,过渡金属催化的C-H活化已成为通过氢同位素交换引入氘的关键技术。已开发出一种详细且易于实施的非定向芳烃氘代实验程序,该程序仅使用商业设备和化学品。该方案非常适合非催化领域专家的学生和其他潜在申请者。通过质谱以及氢和氢核磁共振(NMR)等不同方法分析了氘的掺入程度。通过比较NMR自旋模拟,让学生直观地理解了定量NMR以及H/D交换对实验光谱的影响。学生们切实熟悉了C-H活化、同位素效应以及实验催化基础等概念。