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仲硼酸酯和叔硼酸酯与芳香族化合物的对映体特异性偶联反应的研究进展

Development of Enantiospecific Coupling of Secondary and Tertiary Boronic Esters with Aromatic Compounds.

作者信息

Odachowski Marcin, Bonet Amadeu, Essafi Stephanie, Conti-Ramsden Philip, Harvey Jeremy N, Leonori Daniele, Aggarwal Varinder K

机构信息

School of Chemistry, University of Bristol , Cantock's Close, Bristol BS8 1TS, United Kingdom.

School of Chemistry, University of Manchester , Oxford Road, Manchester M13 9PL, United Kingdom.

出版信息

J Am Chem Soc. 2016 Aug 3;138(30):9521-32. doi: 10.1021/jacs.6b03963. Epub 2016 Jul 22.

Abstract

The stereospecific cross-coupling of secondary boronic esters with sp(2) electrophiles (Suzuki-Miyaura reaction) is a long-standing problem in synthesis, but progress has been achieved in specific cases using palladium catalysis. However, related couplings with tertiary boronic esters are not currently achievable. To address this general problem, we have focused on an alternative method exploiting the reactivity of a boronate complex formed between an aryl lithium and a boronic ester. We reasoned that subsequent addition of an oxidant or an electrophile would remove an electron from the aromatic ring or react in a Friedel-Crafts-type manner, respectively, generating a cationic species, which would trigger 1,2-migration of the boron substituent, creating the new C-C bond. Elimination (preceded by further oxidation in the former case) would result in rearomatization giving the coupled product stereospecifically. Initial work was examined with 2-furyllithium. Although the oxidants tested were unsuccessful, electrophiles, particularly NBS, enabled the coupling reaction to occur in good yield with a broad range of secondary and tertiary boronic esters, bearing different steric demands and functional groups (esters, azides, nitriles, alcohols, and ethers). The reaction also worked well with other electron-rich heteroaromatics and 6-membered ring aromatics provided they had donor groups in the meta position. Conditions were also found under which the B(pin)- moiety could be retained in the product, ortho to the boron substituent. This protocol, which created a new C(sp(2))-C(sp(3)) and an adjacent C-B bond, was again applicable to a range of secondary and tertiary boronic esters. In all cases, the coupling reaction occurred with complete stereospecificity. Computational studies verified the competing processes involved and were in close agreement with the experimental observations.

摘要

仲硼酸酯与sp(2)亲电试剂的立体专一性交叉偶联反应(铃木-宫浦反应)是合成领域长期存在的一个问题,但在特定情况下使用钯催化已取得进展。然而,目前与叔硼酸酯的相关偶联反应尚无法实现。为了解决这一普遍问题,我们专注于一种利用芳基锂与硼酸酯形成的硼酸酯配合物的反应性的替代方法。我们推测,随后加入氧化剂或亲电试剂将分别从芳环上移除一个电子或以傅克型方式反应,生成一个阳离子物种,这将引发硼取代基的1,2-迁移,形成新的碳-碳键。消除反应(在前一种情况下先进行进一步氧化)将导致重新芳构化,立体专一性地得到偶联产物。最初的工作是用2-呋喃锂进行研究的。尽管所测试的氧化剂未成功,但亲电试剂,特别是NBS,能使偶联反应以良好的产率发生,适用于具有不同空间需求和官能团(酯、叠氮化物、腈、醇和醚)的多种仲硼酸酯和叔硼酸酯。该反应对于其他富电子杂芳烃和6元环芳烃也适用,前提是它们在间位有供电子基团。还发现了一些条件,在此条件下产物中可以在硼取代基的邻位保留B(pin)-部分。这个生成新的C(sp(2))-C(sp(3))键和相邻的C-B键的方案再次适用于多种仲硼酸酯和叔硼酸酯。在所有情况下,偶联反应都具有完全的立体专一性。计算研究验证了所涉及的竞争过程,并与实验观察结果密切一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67d9/5063455/71e06ed2179f/ja-2016-03963w_0002.jpg

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