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Towards the stability limit of cyclic diphosphonium bis-ylides

机译:迈向环二磷鎓双烷基化物的稳定性极限

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摘要

A typology of molecules containing two phosphonium ylide groups (bis-ylides) is proposed, versus the bridge length (fused, to- and α-bisylides) and their relative topographical orientations (head-to-head, tail-to-tail or head-to-tail). The formal electrostatic constraint occurring in the head-to-head series is systematically addressed for cyclic representatives based on the o-bis(diphenylphosphonio)benzene framework. After a survey of previously reported results in the fused and β-bis-ylide series, emphasis is given to the cyclic α-bis-ylides. The non-substituted, non-stabilized version escaped isolation through spontaneous fragmentation to bis(diphenylpho-sphino)benzene and acetylene. Inspired by this result, the reverse process was employed for the generation of stabilized representatives with ethoxyearbonyl and benzoyl substituents at the ylidic carbon atoms. The stability and stereochemistry of the obtained head-to-head α-bis-ylides was investigated by NMR techniques and reproduced and analyzed by DFT calculations. The role of electrostatics in determining structural and reactivity features of cyclically constrained species is here illustrated.
机译:提出了一种含有两个phospho叶立德基团(双亚烷基)的分子的类型学,相对于桥长(稠合,对-和α-二亚烷基)及其相对拓扑方向(头对头,尾对头或头) -to-tail)。基于邻-双(二苯基膦基)苯骨架,系统地解决了在头对头系列中出现的形式上的静电约束。在对以前报道的融合和β-双-内酯系列结果进行调查后,重点介绍了环状α-双-内酯。非取代的,不稳定的形式通过自发裂解成双(二苯基膦-膦)苯和乙炔而逃脱了分离。受此结果的启发,采用反向过程生成了在碳原子上带有乙氧基碳烯基和苯甲酰基取代基的稳定代表。通过NMR技术研究了获得的头对头α-双酰基的稳定性和立体化学,并通过DFT计算对其进行了再现和分析。此处说明了静电在确定循环受限物质的结构和反应性特征中的作用。

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