Traceless liquid-phase synthesis of biphenyls and terphenyls using pentaerythritol as a tetrapodal soluble support.

Chul-bae Kim, C. Cho, Chang Keun Kim, Kwangyong Park
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引用次数: 12

Abstract

Application of a novel sulfonate-based traceless multifunctional linker system using pentaerythritol as a tetrapodal soluble support was demonstrated using liquid-phase parallel and combinatorial preparation of biphenyl and terphenyl compounds. Nickel-catalyzed reactions of pentaerythritol tetrakis(arenesulfonate)s with arylmagnesium bromides generated the desired products in sufficient yields through reductive cleavage/cross-coupling of the C-S bond. Homogeneous pentaerythritol-supported reactions could be accomplished using less nucleophile with shorter reaction periods than could the corresponding heterogeneous polymer-supported reactions. This liquid-phase approach using a small polyfunctionalized support combines advantages of solution-phase and solid-phase syntheses by allowing high reactivity, high atom economy, simple isolation, and real-time monitoring of the reaction progress.
以季戊四醇为四足可溶性载体的无迹液相合成联苯和三苯。
以季戊四醇为四足可溶性载体,采用液相平行和组合制备联苯和terphenyl化合物,证明了一种新型的基于磺酸盐的无迹多功能连接体系的应用。镍催化季戊四醇四烷基(芳烃磺酸盐)与芳基溴化镁的反应通过C-S键的还原裂解/交叉偶联产生所需的产物。均相季戊四醇支持的反应可以用更少的亲核试剂和更短的反应周期来完成。这种采用小型多功能化载体的液相方法结合了液相和固相合成的优点,具有高反应活性、高原子经济性、简单的分离和反应过程的实时监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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