Wilkins Lewis C, Kim Youngmin, Litle Elishua D, Gabbaï François P
Department of Chemistry, Texas A&M University, College Station, TX, 77843, USA.
Angew Chem Int Ed Engl. 2019 Dec 9;58(50):18266-18270. doi: 10.1002/anie.201911662. Epub 2019 Oct 30.
Controlling the reactivity of transition metals using secondary, σ-accepting ligands is an active area of investigation that is impacting molecular catalysis. Herein we describe the phosphine gold complexes [(o-Ph P(C H )Acr)AuCl] ([3] ; Acr=9-N-methylacridinium) and [(o-Ph P(C H )Xan)AuCl] ([4] ; Xan=9-xanthylium) where the electrophilic carbenium moiety is juxtaposed with the metal atom. While only weak interactions occur between the gold atom and the carbenium moiety of these complexes, the more Lewis acidic complex [4] readily reacts with chloride to afford a trivalent phosphine gold dichloride derivative (7) in which the metal atom is covalently bound to the former carbocationic center. This anion-induced Au /Au oxidation is accompanied by a conversion of the Lewis acidic carbocationic center in [4] into an X-type ligand in 7. We conclude that the carbenium moiety of this complex acts as a latent Z-type ligand poised to increase the Lewis acidity of the gold center, a notion supported by the carbophilic reactivity of these complexes.
利用二级σ-受体配体控制过渡金属的反应性是一个活跃的研究领域,正在对分子催化产生影响。在此,我们描述了膦金配合物[(o-Ph₂P(C₆H₄)Acr)AuCl] ([3];Acr = 9-N-甲基吖啶鎓)和[(o-Ph₂P(C₆H₄)Xan)AuCl] ([4];Xan = 9-呫吨鎓),其中亲电碳正离子部分与金属原子并列。虽然这些配合物的金原子与碳正离子部分之间仅发生弱相互作用,但Lewis酸性更强的配合物[4]很容易与氯离子反应,生成三价膦金二氯化物衍生物(7),其中金属原子与原来的碳正离子中心共价结合。这种阴离子诱导的Au(I)/Au(III)氧化伴随着[4]中Lewis酸性碳正离子中心在7中转化为X型配体。我们得出结论,该配合物的碳正离子部分作为潜在的Z型配体,随时准备增加金中心的Lewis酸性,这一观点得到了这些配合物的亲碳反应性的支持。