Obi Akachukwu D, Machost Haleigh R, Dickie Diane A, Gilliard Robert J
Department of Chemistry, University of Virginia, 409 McCormick Road, P.O. Box 400319, Charlottesville, Virginia 22904, United States.
Inorg Chem. 2021 Aug 16;60(16):12481-12488. doi: 10.1021/acs.inorgchem.1c01700. Epub 2021 Aug 4.
The 2-phosphaethynolate (OCP) anion has found versatile applications across the periodic table but remains underexplored in group 2 chemistry due to challenges in isolating thermally stable complexes. By rationally modifying their coordination environments using 1,3-dialkyl-substituted N-heterocyclic carbenes (NHCs), we have now isolated and characterized thermally stable, structurally diverse, and hydrocarbon soluble magnesium phosphaethynolate complexes (, , and ), including the novel phosphaethynolate Grignard reagent (). The methylmagnesium phosphaethynolate and magnesium diphosphaethynolate complexes readily activate dioxane with subsequent H-atom abstraction to form [(NHC)MgX(μ-OEt)] [X = Me () or OCP ( and )] complexes. Their reactivities increased with the Lewis acidity of the Mg cation and may be attenuated by Lewis base saturation or a slight increase in carbene sterics. Solvent effects were also investigated and led to the surreptitious isolation of an ether-free sodium phosphaethynolate (NHC)Na(OCP) (), which is soluble in aromatic hydrocarbons and can be independently prepared by the reaction of NHC and [Na(dioxane)][OCP] in toluene. Under forcing conditions (105 °C, 3 days), the magnesium diphosphaethynolate complex (NHC)Mg(OCP) () decomposes to a mixture of organophosphorus complexes, among which a thermal decarbonylation product [(NHC)P][OCP] () was isolated.
2-磷乙炔醇盐(OCP)阴离子在整个元素周期表中都有广泛应用,但由于在分离热稳定配合物方面存在挑战,在第2族化学中仍未得到充分研究。通过使用1,3-二烷基取代的N-杂环卡宾(NHC)合理修饰其配位环境,我们现在已经分离并表征了热稳定、结构多样且可溶于烃类的镁磷乙炔醇盐配合物(、和),包括新型的磷乙炔醇盐格氏试剂()。甲基镁磷乙炔醇盐和二镁磷乙炔醇盐配合物很容易活化二氧六环,随后通过氢原子提取形成[(NHC)MgX(μ-OEt)] [X = Me () 或 OCP (和)] 配合物。它们的反应活性随着镁阳离子的路易斯酸度增加而增加,并且可能会因路易斯碱饱和或卡宾空间位阻略有增加而减弱。还研究了溶剂效应,导致意外分离出一种无醚的钠磷乙炔醇盐(NHC)Na(OCP)(),它可溶于芳烃,并且可以通过NHC与[Na(二氧六环)][OCP]在甲苯中的反应独立制备。在强制条件下(105°C,3天),二镁磷乙炔醇盐配合物(NHC)Mg(OCP)()分解为有机磷配合物的混合物,其中分离出了一种热脱羰产物[(NHC)P][OCP]()。