Sun Xiaofei, Jin Da, Yadav Ravi, Kraetschmer Frederic, Köppe Ralf, Roesky Peter W
Institute of Inorganic Chemistry (AOC), Karlsruhe Institute of Technology (KIT) Kaiserstr. 12 Karlsruhe 76131 Germany
School of Chemistry, Indian Institute of Science Education and Research Thiruvananthapuram Thiruvananthapuram-695551 Kerala India.
Chem Sci. 2025 Aug 15. doi: 10.1039/d5sc04287a.
Recently, we discovered that silaiminyl-silylene, [LSi-Si(NDipp)L] (L = PhC(NBu), Dipp = 2,6-diisopropylphenyl), can be converted from a mono-silylene to bis-silylene by using Lewis acids. This revelation led us to further use silaiminyl-silylene as a silylene-based ligand, which can coordinate to one metal center and later, on demand, release one more silylene center to coordinate to a second metal. Furthermore, an insight into the mechanism of this unusual rearrangement reaction is presented. Initially, mono-silylene complexes [LSi{M(Mes)}-Si(NDipp)L] (M = Ag, Au) were isolated. These complexes were then used as templates to access bis-silylene coordinated homo-dinuclear, [LSi{M(Mes)}-(NDipp)-{M(Mes)}SiL] (M = Ag, Au) and hetero-dinuclear, [LSi{Ag(Mes)}-(NDipp)-{Au(Mes)}SiL] complexes a Lewis acid triggered ligand rearrangement. Notably, using this silylene, a selective coordination of the two different coinage metals Ag and Au was achieved stepwise. This differs from the reactivity when a conventional bis-silylene is employed. The isolation of [LSi{Ag(Mes)}-(NDipp)-{Au(Mes)}SiL] showcases the utility of strong σ-donor silylene-based switchable ligands. This represents the first example of a heterobimetallic complex ligated by a spacer-separated bis-silylene ligand.
最近,我们发现硅胺基硅烯[LSi-Si(NDipp)L](L = PhC(NBu),Dipp = 2,6-二异丙基苯基)可以通过使用路易斯酸从单硅烯转化为双硅烯。这一发现促使我们进一步将硅胺基硅烯用作基于硅烯的配体,它可以与一个金属中心配位,随后根据需要释放出另一个硅烯中心与第二个金属配位。此外,还对这种不寻常的重排反应机理进行了深入研究。最初,分离得到了单硅烯配合物[LSi{M(Mes)}-Si(NDipp)L](M = Ag,Au)。然后将这些配合物用作模板,通过路易斯酸引发的配体重排,得到双硅烯配位的同双核配合物[LSi{M(Mes)}-(NDipp)-{M(Mes)}SiL](M = Ag,Au)和异双核配合物[LSi{Ag(Mes)}-(NDipp)-{Au(Mes)}SiL]。值得注意的是,使用这种硅烯可以逐步实现两种不同的货币金属Ag和Au的选择性配位。这与使用传统双硅烯时的反应活性不同。[LSi{Ag(Mes)}-(NDipp)-{Au(Mes)}SiL]的分离展示了基于强σ供体硅烯的可切换配体的实用性。这代表着由间隔隔开的双硅烯配体连接的异双金属配合物的首个实例。