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超越茨魏费尔途径的硫亲电试剂对炔基四配位硼的截获

Interception of Alkynyl Tetracoordinate Borons with Sulfur Electrophiles beyond the Zweifel Pathway.

作者信息

Ma Xingxing, An Yuanbiao, Li Luo, Cai Meihui, Song Qiuling

机构信息

Key Laboratory of Molecule Synthesis and Function Discovery, Fujian Province University, College of Chemistry at Fuzhou University, Fuzhou, Fujian, 350108, China.

School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, 453007, China.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202416579. doi: 10.1002/anie.202416579. Epub 2024 Nov 11.

Abstract

Zweifel reaction is a powerful strategy to construct olefins from alkenyl tetracoordinate borons in organoboron chemistry, however, it usually only involves one functional group migration and then undergoes an elimination process affording alkenes or alkynes exclusively. Herein, we disclose several intriguing interception of alkynyl tetracoordinate borons with sulfur electrophiles. Wherein, the substituted benzothiophenes are accessed by consecutive 1,2-migrations and intramolecular electrophilic substitution, meanwhile, the challenging and elusive five/four-membered boracycles are easily assembled, and an approach to alkenyl sulfides with good stereoselectivity was developed as well. Moreover, by adding readily available deuterium sources, the tetrasubstituted deuterated alkenyl sulfides with high deuteration rates are constructed. These protocols not only improve atom economy by prohibiting the elimination of Zweifel intermediate, but also enrich the reaction modes of alkynyl tetracoordinate borons achieving versatile value-added sulfur-containing molecules. Mechanistic investigations illustrate that dichlorosulfoxide (SOCl) and dialkylaminosulfur trifluoride-type reagents (DAST-type) as surfur sources could promote dual 1,2-aryl migration of alkynyl tetracoordinate borons, which are distinct from traditional Zweifel reaction, and the regulation of steric hindrance could also make four-membered boracycles and alkenyl sulfides feasible. And these transformations feature novel reaction modes and unusual reaction mechanisms with valuable products in high efficiency.

摘要

茨魏费尔反应是有机硼化学中从烯基四配位硼构建烯烃的一种有效策略,然而,它通常只涉及一个官能团迁移,然后进行消除过程,仅生成烯烃或炔烃。在此,我们揭示了炔基四配位硼与亲电硫试剂的几种有趣的反应。其中,通过连续的1,2-迁移和分子内亲电取代可得到取代苯并噻吩,同时,容易组装具有挑战性且难以捉摸的五/四元硼杂环,并且还开发了一种具有良好立体选择性的烯基硫醚合成方法。此外,通过加入易得的氘源,构建了具有高氘代率的四取代氘代烯基硫醚。这些方法不仅通过避免茨魏费尔中间体的消除提高了原子经济性,还丰富了炔基四配位硼实现多种含硫增值分子的反应模式。机理研究表明,作为硫源的二氯亚砜(SOCl)和二烷基氨基三氟化硫型试剂(DAST型)可促进炔基四配位硼的双1,2-芳基迁移,这与传统的茨魏费尔反应不同,并且空间位阻的调节也可使四元硼杂环和烯基硫醚的合成成为可能。这些转化具有新颖的反应模式和不寻常的反应机理,能高效地生成有价值的产物。

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