Torres Lucas C, Löwe Pawel, Bhattacharjee Avik, Röthel Maike B, Seidl Michael, LeBlanc Jesse, Wurst Klaus, Dielmann Fabian, Caputo Christopher B
Department of Chemistry, York University, 4700 Keele St, Toronto, ON, M3J 1P3, Canada.
Institute of General, Inorganic and Theoretical Chemistry, Universität Innsbruck, Innrain 80-82, Innsbruck, 6020, Austria.
Angew Chem Int Ed Engl. 2025 May;64(21):e202502201. doi: 10.1002/anie.202502201. Epub 2025 Apr 10.
Herein, we disclose the synthesis, characterization, and bonding analysis of a crystalline allenylidene phosphonium ion ([RP═C═C═CAr]) [2] (R = 1,3-diisopropylphenylimidazolin-2-ylidenamino, CAr = 9-fluorenylidene), an isolobal analogue of [3]cumulenes. The cation was prepared via methoxide ion abstraction of an alkynyl phosphine 1. Electron rich N-heterocyclic imine substituents and a π conjugated fluorenyl scaffold together stabilize the resulting three-coordinate phosphonium center of [2]. [2] features a trigonal planar phosphorus atom which is electrophilic, as evidenced experimentally by the preparation of a Lewis acid-base adduct with 4-dimethylaminopyridine, and fluoride ion affinity calculations. Crystallographic and computational investigations of [2] support a structure with considerable P═C double bond character. Furthermore, this P═C double bond participates in a thermally reversible intramolecular dearomative [2 + 2] cycloaddition with an arene moiety of one of its supporting 1,3-diisopropylphenylimidazolin-2-ylidenamino substituents to give a tetracyclic isomer [2]. The isolation of a free [RP═C═C═CAr] draws further parallels between the properties and reactivity of low-coordinate phosphorus compounds and related carbon compounds.
在此,我们披露了一种结晶亚丙二烯基鏻离子([RP═C═C═CAr])[2](R = 1,3 - 二异丙基苯基咪唑啉 - 2 - 亚氨基,CAr = 9 - 芴亚基)的合成、表征及键合分析,它是[3]累积烯的等瓣类似物。该阳离子是通过炔基膦1的甲氧基离子提取制备的。富电子的N - 杂环亚胺取代基和π共轭芴基支架共同稳定了所得[2]的三配位鏻中心。[2]的特征是一个呈三角平面的磷原子,具有亲电性,这通过与4 - 二甲氨基吡啶制备路易斯酸碱加合物以及氟离子亲和力计算得到实验证明。对[2]的晶体学和计算研究支持了具有相当大P═C双键特征的结构。此外,这个P═C双键与其一个支撑的1,3 - 二异丙基苯基咪唑啉 - 2 - 亚氨基取代基的芳烃部分发生热可逆的分子内脱芳构化[2 + 2]环加成反应,生成四环异构体[2]。游离[RP═C═C═CAr]的分离进一步揭示了低配位磷化合物与相关碳化合物在性质和反应性方面的相似之处。