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多相铑单原子位点催化剂实现化学选择性卡宾N-H键插入反应。

Heterogeneous Rhodium Single-Atom-Site Catalyst Enables Chemoselective Carbene N-H Bond Insertion.

作者信息

Chen Yuanjun, Zhang Ruixue, Chen Zhiwen, Liao Jiangwen, Song Xuedong, Liang Xiao, Wang Yu, Dong Juncai, Singh Chandra Veer, Wang Dingsheng, Li Yadong, Toste F Dean, Zhao Jie

机构信息

Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering, Feringa Nobel Prize Scientist Joint Research Center, Frontiers Science Center for Materiobiology and Dynamic Chemistry, School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, 200237, People's Republic of China.

Department of Chemistry, Tsinghua University, Beijing, 100084, People's Republic of China.

出版信息

J Am Chem Soc. 2024 Apr 17;146(15):10847-10856. doi: 10.1021/jacs.4c01408. Epub 2024 Apr 7.

Abstract

Transition-metal-catalyzed carbene insertion reactions of a nitrogen-hydrogen bond have emerged as robust and versatile methods for the construction of C-N bonds. While significant progress of homogeneous catalytic metal carbene N-H insertions has been achieved, the control of chemoselectivity in the field remains challenging due to the high electrophilicity of the metal carbene intermediates. Herein, we present an efficient strategy for the synthesis of a rhodium single-atom-site catalyst (Rh-SA) that incorporates a Rh atom surrounded by three nitrogen atoms and one phosphorus atom doped in a carbon support. This Rh-SA catalyst, with a catalyst loading of only 0.15 mol %, exhibited exceptional catalytic performance for heterogeneous carbene insertion with various anilines and heteroaryl amines in combination with diazo esters. Importantly, the heterogeneous catalyst selectively transformed aniline derivatives bearing multiple nucleophilic moieties into single N-H insertion isomers, while the popular homogeneous Rh(OAc) catalyst produced a mixture of overfunctionalized side products. Additionally, similar selectivities for N-H bond insertion with a set of stereoelectronically diverse diazo esters were obtained, highlighting the general applicability of this heterogeneous catalysis approach. On the basis of density functional theory calculations, the observed selectivity of the Rh-SA catalyst was attributed to the insertion barriers and the accelerated proton transfer assisted by the phosphorus atom in the support. Overall, this investigation of heterogeneous metal-catalyzed carbene insertion underscores the potential of single-atom-site catalysis as a powerful and complementary tool in organic synthesis.

摘要

过渡金属催化的氮氢键卡宾插入反应已成为构建碳氮键的强大且通用的方法。尽管均相催化金属卡宾氮氢键插入反应已取得显著进展,但由于金属卡宾中间体的高亲电性,该领域的化学选择性控制仍然具有挑战性。在此,我们提出了一种合成铑单原子位点催化剂(Rh-SA)的有效策略,该催化剂包含一个被三个氮原子和一个掺杂在碳载体中的磷原子包围的铑原子。这种Rh-SA催化剂的催化剂负载量仅为0.15 mol%,在与重氮酯结合时,对各种苯胺和杂芳基胺的多相卡宾插入反应表现出优异的催化性能。重要的是,这种多相催化剂能将带有多个亲核基团的苯胺衍生物选择性地转化为单一的氮氢键插入异构体,而常用的均相铑(乙酸根)催化剂会产生过度官能化副产物的混合物。此外,对于一系列立体电子性质不同的重氮酯,也获得了相似的氮氢键插入选择性,突出了这种多相催化方法的普遍适用性。基于密度泛函理论计算,观察到的Rh-SA催化剂的选择性归因于插入势垒以及载体中磷原子辅助的加速质子转移。总体而言,这项关于多相金属催化卡宾插入反应的研究强调了单原子位点催化作为有机合成中一种强大且互补工具的潜力。

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