College of Chemical Engineering, State Key Laboratory Breeding Base of Green-Chemical Synthesis Technology, Zhejiang University of Technology, Chaowang Road 18#, Hangzhou 310014, China.
Acc Chem Res. 2022 Mar 1;55(5):734-745. doi: 10.1021/acs.accounts.1c00781. Epub 2022 Feb 4.
Olefin functionalization represents one of the most important synthetic transformations in organic synthesis. Over the past decades, palladium-catalyzed enantioselective Heck reactions, and Heck/anion-capture domino sequences through olefin carbopalladation followed by termination of the resulting alkyl-Pd species have been extensively developed. Extension of the coupling partners from classical olefins to other π-components would enable further advances and open new space in this field. Aromatics are important and easily available bulk chemicals. Dearomative transformation of endocyclic aromatic π-bonds via the Heck reaction pathway provides an efficient and straightforward route to structurally diverse alicyclic compounds. Nevertheless, major challenges for this transformation include aromaticity breaking and reactivity and selectivity issues.Recently, we have engaged in developing catalytic enantioselective dearomative Heck reactions and related domino reactions. A range of heteroarenes and naphthalenes have been employed as novel π-coupling partners in these reactions. Through dearomative migratory insertion of endocyclic aromatic C-C π-bonds followed by interception of the transient alkyl-Pd species, enantioselective Heck reactions, reductive Heck reactions, Heck/anion-capture difunctionalization reactions, and heteroarenyne cycloisomerization reactions have been established. Relying on β-H elimination of the alkyl-Pd intermediate, we realized enantioselective dearomative Heck reactions with a range of aromatic partners, including heterocyclic indoles, pyrroles, furans, benzofurans, and more challenging carbocyclic naphthalenes. In order to avoid the utilization of organohalide electrophiles, heteroarenyne cycloisomerization reaction was developed by merging intermolecular alkyne hydropalladation with intramolecular dearomative Heck reaction. Cycloisomerization of alkyne-tethered indoles delivered chiral indolines in excellent enantioselectivities with 100% atom economy. On the other hand, Heck/anion-capture domino sequences were established through nucleophilic trapping of the alkyl-Pd intermediate. When HCONa was employed as a capturing reagent, the enantioselective dearomative reductive Heck reaction of indoles was realized. By employing other nucleophiles, including alkynes, -sulfonylhydrazones, and organoboron reagents, we developed a series of dearomative difunctionalization reactions. Two vicinal stereocenters with excellent enantio- and diastereoselectivities were constructed in the corresponding Heck/Sonogashira, Heck/vinylation, and Heck/borylation reactions. Moreover, dearomative 1,4-diarylation of naphthalenes was developed through Heck/Suzuki domino reactions, in which competitive C-H arylation and the direct Suzuki reaction were almost fully inhibited in the presence of a spiro-phosphoramidite ligand.In this Account, we provide a panoramic view of our results since 2015 on enantioselective Heck reactions and related domino sequences by extending the coupling partners from classical olefins to aromatic systems. Investigations outlined in this Account established straightforward and efficient access to a variety of structurally diverse chiral heteropolycyclic molecules starting from simple and planar aromatic compounds.
烯烃官能化反应是有机合成中最重要的合成转化之一。在过去的几十年中,钯催化的对映选择性 Heck 反应,以及 Heck/阴离子捕获的多米诺序列,通过烯烃碳钯化,然后终止生成的烷基-Pd 物种,已经得到了广泛的发展。将偶联试剂从经典的烯烃扩展到其他π 组分,将在该领域进一步推进并开辟新的空间。芳烃是重要且易于获得的大宗化学品。通过 Heck 反应途径对内环芳香π 键进行去芳构化转化,提供了一种构建结构多样的脂环化合物的有效且直接的途径。然而,这种转化的主要挑战包括芳香性的破坏以及反应性和选择性问题。最近,我们致力于开发催化对映选择性去芳构化 Heck 反应和相关的多米诺反应。一系列杂芳烃和萘已被用作这些反应中的新型π 偶联试剂。通过内环芳香族 C-Cπ 键的去芳构化迁移插入,然后捕获瞬态烷基-Pd 物种,建立了对映选择性 Heck 反应、还原 Heck 反应、 Heck/阴离子捕获双官能化反应和杂芳烃环异构化反应。通过烷基-Pd 中间体的β-H 消除,我们实现了一系列芳香族偶联试剂的对映选择性去芳构化 Heck 反应,包括杂环吲哚、吡咯、呋喃、苯并呋喃等,以及更具挑战性的碳环萘。为了避免使用有机卤化物亲电试剂,通过将分子间炔烃的加氢钯化与分子内去芳构化 Heck 反应合并,开发了杂芳烃环异构化反应。与吲哚相连的炔烃的环异构化反应以 100%的原子经济性,以优异的对映选择性得到手性吲哚啉。另一方面,通过烷基-Pd 中间体的亲核捕获,建立了 Heck/阴离子捕获的多米诺序列。当 HCONa 用作捕获试剂时,实现了吲哚的对映选择性去芳构化还原 Heck 反应。通过使用其他亲核试剂,包括炔烃、-磺酰腙和有机硼试剂,我们开发了一系列去芳构化双官能化反应。在手性吲哚的 Heck/Sonogashira、Heck/乙烯基化和 Heck/硼化反应中,构建了两个具有优异对映选择性和非对映选择性的相邻立体中心。通过 Heck/Suzuki 多米诺反应,开发了萘的去芳构化 1,4-二芳基化反应,其中在螺磷酰胺配体的存在下,竞争性 C-H 芳基化和直接 Suzuki 反应几乎完全被抑制。本综述提供了自 2015 年以来,我们在从经典烯烃扩展到芳烃体系的对映选择性 Heck 反应和相关的多米诺序列方面的研究结果的全景视图。本综述中概述的研究为从简单的平面芳烃化合物出发,直接高效地获得各种结构多样的手性杂多环分子提供了途径。