Li Chaopeng, Liu Yong, Han Zhaobin, Wang Zheng, Ding Kuiling
State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, 200032, China.
School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, China.
Chemistry. 2025 Feb 12;31(9):e202404209. doi: 10.1002/chem.202404209. Epub 2024 Dec 20.
A synergistic Pd/Cu catalyst system has been developed for stereodivergent transformation of Morita-Baylis-Hillman (MBH) carbonates and Schiff bases derived from simple amino acids to afford a series of optically active β-branched γ-methyleneglutamic acid derivatives with adjacent tertiary/tertiary and quaternary/tertiary stereocenters in high yields (up to 96 %) with excellent diastereo- and enantioselectivities (>20/1 dr and >99 % ee in most cases) under mild conditions. The use of SKP ligand is disclosed to be crucial for the success of the transformation, and in particular allowing the reaction to proceed at low catalyst loading (0.02 mol % for Pd and 0.08 mol % for Cu). The high efficiency of the catalysis was attributed to the formation of intimate ion pair complex A1, composed of Pd-phosphonium cation and a t-butoxide anion, which would facilitate the subsequent deprotonation and C-C coupling events. All four stereoisomers of the β-branched glutamic acid derivatives were readily prepared by permutation of the catalyst enantiomers. Synthetic utility of the methodology was exemplified by efficient synthesis of a fused pyrrolooxazolidinone with three contiguous chiral centers, highlighting the power of synergistic Pd/Cu catalysis for asymmetric allylic alkylation with MBH carbonates.
已开发出一种协同的钯/铜催化剂体系,用于对森田-贝利斯-希尔曼(MBH)碳酸酯和源自简单氨基酸的席夫碱进行立体发散转化,以高产率(高达96%)得到一系列具有相邻叔/叔和季/叔立体中心的光学活性β-支链γ-亚甲基谷氨酸衍生物,在温和条件下具有优异的非对映和对映选择性(大多数情况下非对映选择性>20/1,对映体过量>99%)。已发现使用SKP配体对该转化的成功至关重要,特别是能使反应在低催化剂负载量下进行(钯为0.02 mol%,铜为0.08 mol%)。催化的高效率归因于由钯-鏻阳离子和叔丁醇盐阴离子组成的紧密离子对络合物A1的形成,这将促进随后的去质子化和碳-碳偶联反应。通过催化剂对映体的排列很容易制备出β-支链谷氨酸衍生物的所有四种立体异构体。该方法的合成实用性通过高效合成具有三个相邻手性中心的稠合吡咯并恶唑烷酮得到例证,突出了协同钯/铜催化用于MBH碳酸酯不对称烯丙基烷基化的能力。