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首页> 外文期刊>Chemistry: A European journal >Synthesis and properties of the first stable silylene-isocyanide complexes
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Synthesis and properties of the first stable silylene-isocyanide complexes

机译:第一类稳定的甲硅烷基-异氰化物配合物的合成与性能

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The first stable silylene-isocyanide complexes, [Tbt(Mes)SiCNAr] (5c: Ar=Tip, 5d: Ar=Tbt, 5e:Ar=Mes, Tbt=2,4,6-tris[bis(trimethylsilyl)methyl]phenyl, Mes = mesityl, Tip = 2,4,6-triisopropylphenyl, Mes = 2,4,6-tri-tert-butylphenyl) were successully synthesized by the reaction of a kinetically stabilized disilene, [Tbt(Mes)Si=Si(Mes)Tbt) (1), with bulky isocyanides, ArNC (3c-e). The spectroscopic data of 5c-e and theoretical calculations for a model molecule indicated that 5c-e are not classical cumulative compounds but the first stable silylene-Lewis base complexes. The reactions of 5c-e with triethylsilane and 1,3-dienes gave the corresponding silylene adducts, and they underwent isocyanide-exchange reactions in the presence of another isocyanide at room temperature. These results indicate dissociation of complexes 5c-e to the corresponding silylene 2 and isocyanides 3c-e under very mild conditions. The reaction of 5c with methanol gave the MeOH adduct 16, [Tbt(Mes)SiHC(O-Me)NTip], which has a hydrogen atom on the silicon atom. This regioselectivity can be explained in terms of the contribution of zwitterionic resonance structures D and E, which have an anion on the silicon atom. This result indicates that 5c is not a classical cumulene having Si = C double bonds that should react with methanol to give adducts bearing a methoxyl group on the silicon atom. Although the reactions of 5c-e with electrophilic reagents such as methanol, hydrogen chloride, and methyl iodide gave the formal silylene adducts the studieson the reaction mechanism by trapping experiments and the observation of the intermediate suggested that the reaction mainly or partially proceeds by initial nucleophilic attack of the silicon atom, as is the case in the formation of 16 in the reaction of 5c with methanol. It was revealed that 5c-e show the nucleophilicity of the silicon atom, most likely resulting from the contribution of the zwitterionic resonance structures D and E.
机译:第一种稳定的甲硅烷基-异氰化物配合物[Tbt(Mes)SiCNAr](5c:Ar = Tip,5d:Ar = Tbt,5e:Ar = Mes,Tbt = 2,4,6-tris [双(三甲基甲硅烷基)甲基]通过动力学稳定的二甲苯的反应成功合成了苯基,Mes =甲苯基,Tip = 2,4,6-三异丙基苯基,Mes = 2,4,6-三叔丁基苯基,[Tbt(Mes)Si = Si (Mes)Tbt)(1),带有庞大的异氰化物ArNC(3c-e)。 5c-e的光谱数据和模型分子的理论计算表明,5c-e不是经典的累积化合物,而是第一个稳定的甲硅烷基-刘易斯碱配合物。 5c-e与三乙基硅烷和1,3-二烯的反应得到相应的亚甲硅烷基加合物,并且它们在室温下在存在另一种异氰化物的情况下进行异氰化物交换反应。这些结果表明在非常温和的条件下,络合物5c-e解离为相应的甲硅烷基2和异氰酸酯3c-e。 5c与甲醇的反应得到MeOH加合物16 [Tbt(Mes)SiHC(O-Me)NTip],其在硅原子上具有氢原子。这种区域选择性可以用两性离子共振结构D和E的贡献来解释,两性离子共振结构D和E在硅原子上具有阴离子。该结果表明5c不是具有Si = C双键的经典异丙苯,其应与甲醇反应以产生在硅原子上带有甲氧基的加合物。尽管5c-e与亲电子试剂(如甲醇,氯化氢和甲基碘)的反应使甲醛化产物形成了正式的甲硅烷基加成物,但仍通过诱集实验研究了其反应机理,对中间体的观察表明该反应主要或部分通过初始亲核试剂进行在5c与甲醇反应中形成16时就是这种情况。发现5c-e显示出硅原子的亲核性,最可能是由于两性离子共振结构D和E的贡献。

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