Ahmed Jasimuddin, P Sreejyothi, Vijaykumar Gonela, Jose Anex, Raj Manthan, Mandal Swadhin K
Department of Chemical Sciences , Indian Institute of Science Education and Research Kolkata , Mohanpur-741246 , Kolkata , India . http://swadhin-mandal.weebly.com/ ; Email:
Zakir Husain Delhi College , University of Delhi , Delhi-110002 , India.
Chem Sci. 2017 Nov 1;8(11):7798-7806. doi: 10.1039/c7sc02661g. Epub 2017 Sep 12.
The radical-mediated transition metal-free approach for the direct C-H bond functionalization of arenes is considered as a cost effective alternative to transition metal-based catalysis. An organic ligand-based radical plays a key role by generating an aryl radical which undergoes a subsequent functionalization process. The design principle of the present study takes advantage of a relatively stable odd alternant hydrocarbon-based phenalenyl (PLY) radical. In this study, the first transition metal-free catalyzed direct C-H arylation of a variety of heteroarenes such as azoles, furan, thiophene and pyridine at room temperature has been reported using a phenalenyl-based radical without employing any photoactivation step. This protocol has been successfully applied to the gram scale synthesis of core moieties of bioactive molecules. The phenalenyl-based radical initiator has been characterized crystallographically by trapping it the formation of a C-C σ-bond between the phenalenyl radical and solvent-based radical species.
用于芳烃直接C-H键官能化的自由基介导无过渡金属方法被认为是基于过渡金属催化的一种经济有效的替代方法。基于有机配体的自由基通过生成芳基自由基发挥关键作用,该芳基自由基随后经历官能化过程。本研究的设计原理利用了相对稳定的基于奇数交替烃的苊烯基(PLY)自由基。在本研究中,已报道使用基于苊烯基的自由基在室温下对各种杂芳烃(如唑类、呋喃、噻吩和吡啶)进行首次无过渡金属催化的直接C-H芳基化,且无需任何光活化步骤。该方案已成功应用于生物活性分子核心部分的克级合成。通过捕获苊烯基自由基与溶剂基自由基物种之间形成的C-C σ键,对基于苊烯基的自由基引发剂进行了晶体学表征。