Baus Johannes A, Mück Felix M, Schneider Heidi, Tacke Reinhold
Universität Würzburg, Institut für Anorganische Chemie, Am Hubland, 97074, Würzburg, Germany.
Chemistry. 2017 Jan 5;23(2):296-303. doi: 10.1002/chem.201603802. Epub 2016 Nov 22.
Reaction of the donor-stabilized silylene [iPrNC(NiPr )NiPr] Si (1) with FeBr , CoBr , NiBr ⋅MeOCH CH OMe, ZnCl , and ZnBr afforded the respective transition-metal silylene complexes 4-8, the formation of which can be described in terms of a Lewis acid/base reaction (4, 5, 7, 8) or a nucleophilic substitution reaction (6). However, the reactivity profile of silylene 1 is not only based on its strong Lewis base character; the different coordination modes of the two guanidinato ligands (4-6 vs. 7 and 8) add an additional reactivity facet. The paramagnetic compounds 4 and 5 and the diamagnetic compounds 6⋅THF, 7, and 8⋅0.5 Et O were structurally characterized by single-crystal X-ray diffraction. In addition, compound 6⋅THF was studied by N and Si solid-state NMR spectroscopy, and 7 and 8 were characterized by NMR spectroscopic studies in the solid state ( N, Si) and in solution ( H, C, Si). Compounds 4-8 represent very rare examples of Fe , Co , Ni , and Zn silylene complexes. Four-coordinate silicon(II) compounds with an SiN M skeleton (M=Fe, Co, Ni) and M in the formal oxidation state +2 (4-6) have not yet been reported, and five-coordinate silicon(II) compounds with an SiN Zn skeleton (7, 8) are also unprecedented.
供体稳定的硅烯[iPrNC(NiPr )NiPr]Si (1) 与FeBr 、CoBr 、NiBr ⋅MeOCH CH OMe、ZnCl 和ZnBr反应,分别得到相应的过渡金属硅烯配合物4 - 8,其形成过程可通过路易斯酸碱反应(4、5、7、8)或亲核取代反应(6)来描述。然而,硅烯1的反应活性不仅基于其强路易斯碱性质;两个胍基配体的不同配位模式(4 - 6与7和8)又增加了一个额外的反应活性方面。通过单晶X射线衍射对顺磁性化合物4和5以及抗磁性化合物6⋅THF、7和8⋅0.5 Et O进行了结构表征。此外,通过 N和 Si固态核磁共振光谱对化合物6⋅THF进行了研究,通过固态( N、 Si)和溶液( H、 C、 Si)中的核磁共振光谱研究对7和8进行了表征。化合物4 - 8是非常罕见的Fe 、Co 、Ni 和Zn硅烯配合物实例。具有SiN M骨架(M = Fe、Co、Ni)且M处于形式氧化态 +2的四配位硅(II)化合物(4 - 6)尚未见报道,具有SiN Zn骨架的五配位硅(II)化合物(7、8)也是前所未有的。