Yang Cun, Yang Zhi-Xiong, Ding Chang-Hua, Xu Bin, Hou Xue-Long
Department of Chemistry, Innovative Drug Research Center, Shanghai University, Shanghai, 200444, P. R. of China.
State Key Laboratory of Organometallic Chemistry, Center for Excellence in Molecular Synthesis, Shanghai-Hong Kong Joint Laboratory in Chemical Synthesis, Shanghai Institute of Organic Chemistry (SIOC), Chinese Academy of Sciences (CAS), 345 Lingling Road, Shanghai, 200032, P. R. of China.
Chem Rec. 2021 Jun;21(6):1442-1454. doi: 10.1002/tcr.202000177. Epub 2021 Feb 11.
The development of new and efficient methodology for the construction of optically active molecules is of great interest in both synthetic organic and medicinal chemistry fields. To this end, the personal account summarizes our studies on the development of electron-deficient alkenes, allenes, and alkynes containing single activator as new dipolarophiles for Pd-catalyzed asymmetric cycloaddition reactions. These new dipolarophiles can participate in Pd-catalyzed asymmetric [3+2] and [4+2] cycloadditions through Pd-π-allyl 1,3- and 1,4-zwitterions in-situ generated by the reaction of Pd(0) catalyst with vinyl aziridines, vinyl epoxides, vinyl cyclopropanes, 4-vinyl-1,3-dioxan-2-ones, and vinyl benzoxazinanones. These [3+2] and [4+2] cycloadditions provide efficient approaches to a wide range of enantiomerically enriched five- and six-membered ring compounds containing contiguous chiral centers with high to excellent chemo-, diastereo-, and enantioselectivities. The utilities of these protocols are demonstrated by transformation of the cycloadducts into other useful chiral building blocks. DFT calculations reveal the dissimilar reactivity of different electron deficient alkenes and rationalize the mechanism and stereo-control of the reaction. A Pd-catalyzed inverse [3+2] cycloaddition is disclosed.
开发用于构建光学活性分子的新型高效方法在合成有机化学和药物化学领域都备受关注。为此,本文综述了我们关于开发缺电子烯烃、联烯和炔烃(含单一活化剂)作为钯催化不对称环加成反应新亲偶极体的研究。这些新亲偶极体可通过钯(0)催化剂与乙烯基氮丙啶、环氧乙烷、乙烯基环丙烷、4-乙烯基-1,3-二氧六环-2-酮和乙烯基苯并恶嗪酮反应原位生成的钯-π-烯丙基1,3-和1,4-两性离子,参与钯催化的不对称[3+2]和[4+2]环加成反应。这些[3+2]和[4+2]环加成反应为合成多种对映体富集的含相邻手性中心的五元环和六元环化合物提供了有效方法,具有高至优异的化学、非对映和对映选择性。通过将环加成产物转化为其他有用的手性砌块,证明了这些方法的实用性。密度泛函理论计算揭示了不同缺电子烯烃的不同反应活性,并对反应机理和立体控制进行了合理化解释。此外还公开了一种钯催化的逆[3+2]环加成反应。