Department of Chemistry, Princeton University , Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2017 Nov 1;139(43):15407-15413. doi: 10.1021/jacs.7b07658. Epub 2017 Oct 18.
Organic isocyanates are versatile intermediates that provide access to a wide range of functionalities. In this work, we have developed the first synthetic method for preparing aliphatic isocyanates via direct C-H activation. This method proceeds efficiently at room temperature and can be applied to functionalize secondary, tertiary, and benzylic C-H bonds with good yields and functional group compatibility. Moreover, the isocyanate products can be readily converted to substituted ureas without isolation, demonstrating the synthetic potential of the method. To study the reaction mechanism, we have synthesized and characterized a rare Mn-NCO intermediate and demonstrated its ability to transfer the isocyanate moiety to alkyl radicals. Using EPR spectroscopy, we have directly observed a Mn intermediate under catalytic conditions. Isocyanation of celestolide with a chiral manganese salen catalyst followed by trapping with aniline afforded the urea product in 51% enantiomeric excess. This represents the only example of an asymmetric synthesis of an organic urea via C-H activation. When combined with our DFT calculations, these results clearly demonstrate that the C-NCO bond was formed through capture of a substrate radical by a Mn-NCO intermediate.
有机异氰酸酯是一种多功能的中间体,可用于合成各种不同的官能团。在这项工作中,我们开发了一种通过直接 C-H 活化制备脂肪族异氰酸酯的新方法。该方法在室温下高效进行,可用于官能化仲、叔和苄基 C-H 键,产率高,官能团兼容性好。此外,异氰酸酯产物无需分离即可很容易地转化为取代的脲,展示了该方法的合成潜力。为了研究反应机理,我们合成并表征了一种罕见的 Mn-NCO 中间体,并证明了其将异氰酸酯部分转移到烷基自由基的能力。通过使用 EPR 光谱,我们在催化条件下直接观察到了 Mn 中间体。手性锰席夫碱催化剂催化 Celestolide 的异氰化反应,然后用苯胺捕获,得到的脲产物的对映体过量为 51%。这是通过 C-H 活化不对称合成有机脲的唯一实例。结合我们的 DFT 计算结果,这些结果清楚地表明,C-NCO 键是通过 Mn-NCO 中间体捕获底物自由基形成的。