Satyanarayana Appanapalli N V, Pattanayak Paramita, Chatterjee Tanmay
Department of Chemistry, Birla Institute of Technology and Science, Pilani (BITS Pilani), Hyderabad Campus, Jawahar Nagar, Hyderabad 500078, Telangana India.
J Org Chem. 2024 Aug 16;89(16):11455-11466. doi: 10.1021/acs.joc.4c01134. Epub 2024 Aug 6.
The synthesis of stereodefined tetrasubstituted alkenes bearing four different functional groups is challenging. Herein, we disclose a 100% atom-economic and highly regio- and stereoselective halo-chalcogenations, in particular, chlorosulfenylation, bromosulfenylation, chloroselenation, and bromoselenation, of ynamides in toluene at room temperature under an aerobic atmosphere for the synthesis of a wide variety of stereodefined tetrasubstituted alkenes bearing four different functional groups in excellent yields. Notably, all the reactions are highly efficient and furnished the desired products in excellent yield (average yield >96%) and stereoselectivity (/ = 90:10 to >99:1) within a short time (15-30 min). Interestingly, the high ()-stereoselectivity (-addition) is controlled by the solvent. The transformation does not require any catalyst, oxidizing or reducing reagent, or external energy. The products were obtained pure by evaporating the solvent after the reaction and washing the crude product with either pentane or ethanol (column-chromatography-free protocol). Moreover, the solvent toluene was recovered and reused in subsequent reactions, which makes the protocol highly sustainable. The protocol is efficiently scalable (96% yield) on a gram scale. Notably, the products were synthetically diversified to other new classes of stereodefined tetrasubstituted alkenes. Significantly, the green chemistry metrics of the protocol are found to be excellent.
合成带有四个不同官能团的立体定向四取代烯烃具有挑战性。在此,我们披露了一种在有氧气氛下于室温下在甲苯中对炔酰胺进行100%原子经济且高度区域和立体选择性的卤代硫属化反应,特别是氯亚磺酰化、溴亚磺酰化、氯硒化和溴硒化反应,用于以优异产率合成多种带有四个不同官能团的立体定向四取代烯烃。值得注意的是,所有反应都非常高效,能在短时间内(15 - 30分钟)以优异产率(平均产率>96%)和立体选择性(/ = 90:10至>99:1)得到所需产物。有趣的是,高()-立体选择性(-加成)受溶剂控制。该转化不需要任何催化剂、氧化或还原试剂或外部能量。反应后通过蒸发溶剂并用戊烷或乙醇洗涤粗产物(无需柱色谱法)即可得到纯产物。此外,溶剂甲苯被回收并用于后续反应,这使得该方法具有高度可持续性。该方法在克级规模上可有效放大(产率96%)。值得注意的是,产物可被合成多样化为其他新型的立体定向四取代烯烃。重要的是,该方法的绿色化学指标非常出色。