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B(MIDA)导向的烯烃分子间卤氟烷基化反应:多种功能化结构单元的合成

B(MIDA)-directed site-selective intermolecular halofluoroalkylation of alkenes: synthesis of diversely functionalized building blocks.

作者信息

Wu Hengbo, Luo Ruitong, Peng Jingjing, Han Zijian, Zhang Renjie, Xu Zhijian, Zhu Weiliang, Liu Hong, Li Chunpu

机构信息

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences Shanghai 201203 China

University of Chinese Academy of Sciences No.19A Yuquan Road Beijing 100049 China.

出版信息

Chem Sci. 2025 Jan 10;16(6):2710-2717. doi: 10.1039/d4sc07900k. eCollection 2025 Feb 5.

Abstract

α-Halo borides are generally constructed Matteson homologation, and the synthesis of both fluorinated and functionalized ambiphilic boronates is challenging and has received inadequate attention. Herein, we describe the -methyliminodiacetyl boronate [B(MIDA)]-directed halogenation of alkenes a complementary sequence involving fluoroalkyl radical addition followed by guided radical-to-metal oxidative addition and C-X reductive elimination. The alkali cation and functional groups in B(MIDA) enable coulombic interaction and weak attraction with halogens, which could weaken the Pd-X bond and assist in C-X bond formation and is verified by DFT calculations. As a result, a wide variety of highly functionalized fluorinated α-halo boronates, including drugs and natural products, are obtained in good or moderate yields through the unique catalytic manifold. Notably, the trifunctionalized (F, X, B) building block could be transformed into diverse modified fluorinated products.

摘要

α-卤代硼化物通常通过马特森同系化反应构建,而氟化和功能化双亲硼酸酯的合成具有挑战性且未得到足够关注。在此,我们描述了[硼(甲基亚氨基二乙酸)酯(B(MIDA))]导向的烯烃卤化反应,这是一个互补序列,涉及氟烷基自由基加成,随后是导向的自由基到金属的氧化加成和C-X还原消除。B(MIDA)中的碱金属阳离子和官能团能够与卤素发生库仑相互作用和弱吸引力,这可以削弱钯-卤键并有助于C-X键的形成,这一点通过密度泛函理论计算得到了验证。结果,通过独特的催化体系,以良好或中等产率获得了各种高度功能化的氟化α-卤代硼酸酯,包括药物和天然产物。值得注意的是,三官能化(F、X、B)结构单元可以转化为多种改性氟化产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18c6/11795809/aaedaff278d7/d4sc07900k-s1.jpg

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