Water-controlled skeletal editing or peripheral modification of ortho-chalcone-substituted organophosphines

Xin-Yue Niu, Chao-Yang Li, Cong-Cong Zhang, Zhan-Wei Bu, Yan Xie, Wen-Jing Zhang, Qi-Lin Wang
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Abstract

Skeletal editing of organophosphines is highly challenging owing to the high P-C bond dissociation energy. Herein, we report an efficient catalyst- and additive-free skeletal editing strategy to transform easily accessible ortho-chalcone based organophosphines into new and complex phosphine oxides, that are unattainable by conventional methods. Water is indispensable to this transformation and serves as the oxygen source to cleave P-C bonds. Interestingly, it is possible to achieve the peripheral modification of organophosphines into phosphonium salts in the absence of water. This water-controlled skeletal editing or peripheral modification strategy is embedded with the merits of high bond- and ring-forming efficiency and complete regio-, chemo- and stereoselectivity.

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水控制的骨架编辑或外围修饰邻位丙酮取代的有机膦
由于 P-C 键的解离能很高,因此有机膦的骨架编辑极具挑战性。在此,我们报告了一种高效的无催化剂和无添加剂骨架编辑策略,可将容易获得的原查耳酮基有机膦转化为新的复杂膦氧化物,这是传统方法无法实现的。水在这一转化过程中不可或缺,是裂解 P-C 键的氧源。有趣的是,在没有水的情况下,也可以将有机膦外围修饰成鏻盐。这种由水控制的骨架编辑或外围修饰策略具有成键和成环效率高以及完全的区域、化学和立体选择性等优点。
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