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一种掩蔽策略能够实现丙二酸衍生物的自由基单脱羧碳-碳键偶联反应。

An masking strategy enables radical monodecarboxylative C-C bond coupling of malonic acid derivatives.

作者信息

Cheng He-Li, Xie Xian-Hui, Chen Jia-Zheng, Wang Zhen, Chen Jian-Ping

机构信息

Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering, Nanjing Tech University Nanjing 211816 China

出版信息

Chem Sci. 2021 Aug 3;12(35):11786-11792. doi: 10.1039/d1sc02642a. eCollection 2021 Sep 15.

Abstract

The utilization of malonic acids in radical decarboxylative functionalization is still underexploited, and the few existing examples are primarily limited to bisdecarboxylative functionalization. While radical monodecarboxylative functionalization is highly desirable, it is challenging because of the difficulty in suppressing the second radical decarboxylation step. Herein, we report the successful radical monodecarboxylative C-C bond coupling of malonic acids with ethynylbenziodoxolone (EBX) reagents enabled by an masking strategy, affording synthetically useful 2(3)-furanones in satisfactory yields. The keys to the success of this transformation include (1) the dual role of a silver catalyst as a single-electron transfer catalyst to drive the radical decarboxylative alkynylation and as a Lewis acid catalyst to promote the 5- cyclization and (2) the dual function of the alkynyl reagent as a radical trapper and as an masking group. Notably, the latent carboxylate group in the furanones could be readily released, which could serve as a versatile synthetic handle for further elaborations. Thus, both carboxylic acid groups in malonic acid derivatives have been well utilized for the rapid construction of molecular complexity.

摘要

丙二酸在自由基脱羧官能化反应中的应用仍未得到充分开发,现有的少数例子主要局限于双脱羧官能化反应。虽然自由基单脱羧官能化反应非常值得期待,但由于难以抑制第二步自由基脱羧反应,因此具有挑战性。在此,我们报道了通过一种掩蔽策略实现的丙二酸与乙炔基苯并碘恶唑酮(EBX)试剂的成功自由基单脱羧C-C键偶联反应,以令人满意的产率得到了具有合成价值的2(3)-呋喃酮。该转化反应成功的关键包括:(1)银催化剂的双重作用,作为单电子转移催化剂驱动自由基脱羧炔基化反应,以及作为路易斯酸催化剂促进5-环化反应;(2)炔基试剂的双重功能,作为自由基捕获剂和掩蔽基团。值得注意的是,呋喃酮中的潜在羧酸盐基团可以很容易地释放出来,这可以作为进一步衍生化的通用合成手段。因此,丙二酸衍生物中的两个羧酸基团都已被很好地用于快速构建分子复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad05/8442682/9506e60d0f88/d1sc02642a-f1.jpg

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