二硼烷
化学
键裂
金属
劈理(地质)
钛
结晶学
立体化学
药物化学
催化作用
有机化学
硼
材料科学
断裂(地质)
复合材料
作者
Subhash Bairagi,Soumen Giri,Gaurav Joshi,Eluvathingal D. Jemmis,Sundargopal Ghosh
标识
DOI:10.1002/anie.202417170
摘要
Abstract Treatment of [Cp*TiCl 3 ] with [LiBH 4 ⋅ THF] followed by thermolysis with [Ph 2 E 2 ] (E=S or Se) resulted in the formation of classical diborane(6) complexes, [(Cp*Ti)( η 4 ‐B 2 H 4 LL′)] (L=C 6 H 4 E; L′=C 6 H 5 E; 1 a : E=S, 1 b : E=Se), stabilized at titanium template. To the best of our knowledge, they are the first examples of mono‐metallic classical diborane(6) complexes. The bonding analysis and theoretical studies suggest that the stabilization of these diborane(6) species is due to the presence of four bridging ligands in ĸ 4 ‐fashion, where two of them are phenyl thiolates/selenolates that provide more electrons to the electron‐deficient titanium center. Reactions of these diborane(6) species with [M(CO) 5 ⋅ THF] (M=Mo, W) led to the cleavage of the electron‐precise B( sp 3 )−B( sp 3 ) bond that yielded ĸ 3 ‐hydridoborato complexes [(Cp*Ti)( ĸ 3 ‐BH 3 R)( μ ‐EPh) 2 {M(CO) 4 }] ( 2 a – c : R=H, 3 a – c : R=Ph). In an attempt to isolate the Te‐analogue of 1 a – b , a similar reaction was performed; however, the complex was too unstable to be isolated. Interestingly, the treatment of this unstable intermediate with [W(CO) 5 ⋅ THF] yielded [(Cp*Ti)( ĸ 3 ‐BH 3 R)( μ ‐TePh) 2 {W(CO) 4 }] ( 2 d : R=H, 3 d : R=Ph) that are analogues of 2 a – c and 3 a – c , respectively. Formation of these species provide indirect evidence for the existence of unstable [(Cp*Ti)( η 4 ‐B 2 H 4 LL′)] (L=C 6 H 4 Te; L′=C 6 H 5 Te; 1 c ).
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