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双(磷亚氨基)甲烷稀土酰胺:氢胺化/环化、硅氢化以及连续氢胺化/硅氢化反应的合成、结构与催化作用

Bis(phosphinimino)methanide rare earth amides: synthesis, structure, and catalysis of hydroamination/cyclization, hydrosilylation, and sequential hydroamination/hydrosilylation.

作者信息

Rastätter Marcus, Zulys Agustino, Roesky Peter W

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Fabeckstrasse 34-36, 14195 Berlin, Germany.

出版信息

Chemistry. 2007;13(13):3606-16. doi: 10.1002/chem.200601510.

Abstract

A series of yttrium and lanthanide amido complexes [Ln{N(SiHMe(2))2}2{CH(PPh(2)NSiMe(3))2}] (Ln=Y, La, Sm, Ho, Lu) were synthesized by three different pathways. The title compounds can be obtained either from [Ln{N(SiHMe(2))2}3(thf)2] and [CH(2)(PPh(2)NSiMe(3))2] or from KN(SiHMe(2))2 and [Ln{CH(PPh(2)NSiMe(3))2}Cl(2)]2, while in a third approach the lanthanum compound was synthesized in a one-pot reaction starting from K{CH(PPh(2)NSiMe(3))2}, LaCl3, and KN(SiHMe(2))2. All the complexes have been characterized by single-crystal X-ray diffraction. The new complexes, [Ln{N(SiHMe(2))2}2{CH(PPh(2)NSiMe(3))2}], were used as catalysts for hydroamination/cyclization and hydrosilylation reactions. A clear dependence of the reaction rate on the ionic radius of the center metal was observed, showing the lanthanum compound to be the most active one in both reactions. Furthermore, a combination of both reactions--a sequential hydroamination/hydrosilylation reaction--was also investigated.

摘要

通过三种不同途径合成了一系列钇和镧系酰胺基配合物[Ln{N(SiHMe(2))2}2{CH(PPh(2)NSiMe(3))2}](Ln = Y、La、Sm、Ho、Lu)。标题化合物既可以由[Ln{N(SiHMe(2))2}3(thf)2]和[CH(2)(PPh(2)NSiMe(3))2]制得,也可以由KN(SiHMe(2))2和[Ln{CH(PPh(2)NSiMe(3))2}Cl(2)]2制得,而在第三种方法中,镧化合物是通过一锅法反应,从K{CH(PPh(2)NSiMe(3))2}、LaCl3和KN(SiHMe(2))2开始合成的。所有配合物均通过单晶X射线衍射进行了表征。新型配合物[Ln{N(SiHMe(2))2}2{CH(PPh(2)NSiMe(3))2}]被用作氢胺化/环化反应和硅氢化反应的催化剂。观察到反应速率与中心金属的离子半径有明显的依赖关系,表明镧化合物在这两种反应中都是活性最高的。此外,还研究了这两种反应的组合——连续氢胺化/硅氢化反应。

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