Technische Universität Berlin, Department of Chemistry: Metalorganics and Inorganic Materials, Sekr. C2, Strasse des 17. Juni 135, 10623 Berlin (Germany).
Angew Chem Int Ed Engl. 2015 Feb 9;54(7):2214-8. doi: 10.1002/anie.201409739. Epub 2014 Dec 30.
The Ni(II) -mediated tautomerization of the N-heterocyclic hydrosilylcarbene L(2) Si(H)(CH2 )NHC 1, where L(2) =CH(CCH2 )(CMe)(NAr)2 , Ar=2,6-iPr2 C6 H3 ; NHC=3,4,5-trimethylimidazol-2-yliden-6-yl, leads to the first N-heterocyclic silylene (NHSi)-carbene (NHC) chelate ligand in the dibromo nickel(II) complex [L(1) Si:(CH2 )(NHC)NiBr2 ] 2 (L(1) =CH(MeCNAr)2 ). Reduction of 2 with KC8 in the presence of PMe3 as an auxiliary ligand afforded, depending on the reaction time, the N-heterocyclic silyl-NHC bromo Ni(II) complex [L(2) Si(CH2 )NHCNiBr(PMe3 )] 3 and the unique Ni(0) complex [η(2) (Si-H){L(2) Si(H)(CH2 )NHC}Ni(PMe3 )2 ] 4 featuring an agostic SiH→Ni bonding interaction. When 1,2-bis(dimethylphosphino)ethane (DMPE) was employed as an exogenous ligand, the first NHSi-NHC chelate-ligand-stabilized Ni(0) complex [L(1) Si:(CH2 )NHCNi(dmpe)] 5 could be isolated. Moreover, the dicarbonyl Ni(0) complex 6, [L(1) Si:(CH2 )NHCNi(CO)2 ], is easily accessible by the reduction of 2 with K(BHEt3 ) under a CO atmosphere. The complexes were spectroscopically and structurally characterized. Furthermore, complex 2 can serve as an efficient precatalyst for Kumada-Corriu-type cross-coupling reactions.
镍(II)介导的 N-杂环氢硅基卡宾 L(2) Si(H)(CH2 )NHC1 的互变异构,其中 L(2) =CH(CCH2 )(CMe)(NAr)2 ,Ar=2,6-iPr2 C6 H3 ;NHC=3,4,5-三甲基咪唑-2-亚基-6-基,导致第一个 N-杂环硅基-卡宾(NHSi)-卡宾(NHC)螯合配体在二溴化镍(II)配合物[L(1) Si:(CH2 )(NHC)NiBr2 ]2 (L(1) =CH(MeCNAr)2 )中。用 KC8 在 PMe3 作为辅助配体存在下还原 2 ,根据反应时间的不同,得到 N-杂环硅基-NHC 溴化镍(II)配合物[L(2) Si(CH2 )NHCNiBr(PMe3 )]3 和独特的 Ni(0)配合物[η(2) (Si-H){L(2) Si(H)(CH2 )NHC}Ni(PMe3 )2 ]4 ,其特征是存在桥接 SiH→Ni 键合相互作用。当使用 1,2-双(二甲基膦基)乙烷(DMPE)作为外源性配体时,可以分离出第一个 NHSi-NHC 螯合配体稳定的 Ni(0)配合物[L(1) Si:(CH2 )NHCNi(dmpe)]5 。此外,二羰基 Ni(0)配合物 6 ,[L(1) Si:(CH2 )NHCNi(CO)2 ],可通过在 CO 气氛下用 K(BHEt3 )还原 2 很容易获得。这些配合物通过光谱和结构进行了表征。此外,配合物 2 可以作为 Kumada-Corriu 型交叉偶联反应的有效前催化剂。