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全稀土系列中 C5Me4SiMe3 负载多氢化物配合物的合成与结构。

Synthesis and structures of the C5Me4SiMe3-supported polyhydride complexes over the full size range of the rare earth series.

机构信息

Organometallic Chemistry Laboratory and Advanced Catalyst Research Team, RIKEN Advanced Science Institute, Hirosawa 2-1, Wako, Saitama 351-0198, Japan.

出版信息

Chemistry. 2011 Apr 26;17(18):5033-44. doi: 10.1002/chem.201002998. Epub 2011 Apr 1.

Abstract

The acid-base reaction of [Ln(CH(2)SiMe(3))(3)(thf)(2)] with Cp'H gave the corresponding half-sandwich rare earth dialkyl complexes [(Cp')Ln(CH(2)SiMe(3))(2)(thf)] (1-Ln: Ln=Sc, Y, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu; Cp'=C(5)Me(4)SiMe(3)) in 62-90% isolated yields. X-ray crystallographic studies revealed that all of these complexes adopt a similar overall structure, in spite of large difference in metal-ion size. In most cases, the hydrogenolysis of the dialkyl complexes in toluene gave the tetranuclear octahydride complexes [{(Cp')Ln(μ-H)(2)}(4)(thf)(x)] (2-Ln: Ln=Sc, x=0; Y, x=1; Er, x=1; Tm, x=1; Gd, x=1; Dy, x=1; Ho, x=1) as the only isolable product. However, in the case of Lu, a trinuclear pentahydride [(Cp')(2)Lu(3)(μ-H)(5)(μ-CH(2)SiMe(2)C(5)Me(4))(thf)(2)] (3), in which the C-H activation of a methyl group of the Me(3)Si unit on a Cp' ligand took place, was obtained as a major product (66% yield), in addition to the tetranuclear octahydride [{(Cp')Lu(μ-H)(2)}(4)(thf)] (2-Lu, 34%). The use of hexane instead of toluene as a solvent for the hydrogenolysis of 1-Lu led to formation of 2-Lu as a major product (85%), while a similar reaction in THF yielded 3 predominantly (90%). The tetranuclear octahydride complexes of early (larger) lanthanide metals [{Cp'Ln(μ-H)(2)}(4)(thf)(2)] (2, Ln=La, Ce, Pr, Nd, Sm) were obtained in 38-57% isolated yields by hydrogenolysis of the bis(aminobenzyl) species [Cp'Ln(CH(2)C(6)H(4)NMe(2)-o)(2)], which were generated in-situ by reaction of [Ln(CH(2)C(6)H(4)NMe(2)-o)(3)] with one equivalent of Cp'H. X-ray crystallographic studies showed that the fine structures of these hydride clusters are dependent on the size of the metal ions.

摘要

[Ln(CH(2)SiMe(3))(3)(thf)(2)]与 Cp'H 的酸碱反应生成相应的半夹心稀土二烷基配合物[(Cp')Ln(CH(2)SiMe(3))(2)(thf)](1-Ln:Ln=Sc、Y、Gd、Tb、Dy、Ho、Er、Tm、Yb、Lu;Cp'=C(5)Me(4)SiMe(3)),产率为 62-90%。X 射线晶体学研究表明,尽管金属离子尺寸差异很大,但所有这些配合物都采用相似的整体结构。在大多数情况下,二烷基配合物在甲苯中的氢解得到四核八氢化物配合物[{(Cp')Ln(μ-H)(2)}(4)(thf)(x)](2-Ln:Ln=Sc,x=0;Y,x=1;Er,x=1;Tm,x=1;Gd,x=1;Dy,x=1;Ho,x=1),为唯一可分离的产物。然而,对于 Lu,主要产物为三核五氢化物[(Cp')(2)Lu(3)(μ-H)(5)(μ-CH(2)SiMe(2)C(5)Me(4))(thf)(2)](3),其中 Cp'配体上 Me(3)Si 单元的一个甲基发生 C-H 活化,此外还得到了四核八氢化物[{(Cp')Lu(μ-H)(2)}(4)(thf)](2-Lu,34%)。用己烷代替甲苯作为氢解 1-Lu 的溶剂,生成 2-Lu 为主产物(85%),而在 THF 中的类似反应则主要生成 3(90%)。早期(较大)镧系金属的四核八氢化物配合物[{Cp'Ln(μ-H)(2)}(4)(thf)(2)](2,Ln=La、Ce、Pr、Nd、Sm)通过原位反应生成二(氨基苄基)化合物[Cp'Ln(CH(2)C(6)H(4)NMe(2)-o)(2)]的氢解得到,产率为 38-57%。[Ln(CH(2)C(6)H(4)NMe(2)-o)(3)]与 Cp'H 的等摩尔反应。X 射线晶体学研究表明,这些氢化物簇的精细结构取决于金属离子的大小。

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