Department of Chemistry , University of California, Berkeley , Berkeley , California 94720 , United States.
Chemical Sciences Division , Lawrence Berkeley National Laboratory , Berkeley , California 94720 , United States.
J Am Chem Soc. 2019 Apr 3;141(13):5144-5148. doi: 10.1021/jacs.9b01331. Epub 2019 Mar 20.
Salt metathesis between the anionic rhenium(I) compound, Na[Re(η-Cp)(BDI)] (BDI = N, N'-bis(2,6-diisopropylphenyl)-3,5-dimethyl-β-diketiminate), and the uranium(III) salt, UI(1,4-dioxane), generated the triple inverse sandwich complex, U[(μ-η:η-Cp)Re(BDI)], which was isolated and structurally characterized as the Lewis base adducts, (L)U[(μ-η:η-Cp)Re(BDI)] (1·L, L = THF, 1,4-dioxane, DMAP). The assignment as one uranium(III) and three rhenium(I) centers was supported by X-ray crystallography, NMR and EPR spectroscopies, and computational studies. An unusual shortening of the rhenium-Cp bond distances in 1·L relative to Na[Re(η-Cp)(BDI)] was observed in the solid-state and reproduced in calculated structures of 1·THF and the anionic fragment, [Re(η-Cp)(BDI)]. Calculations suggest that the electropositive uranium center pulls electron density away from the electron-rich rhenium centers, reducing electron-electron repulsions in the rhenium-Cp moieties and thereby strengthening those interactions, while also making uranium-Cp bonding more favorable.
阴离子铼(I)化合物 Na[Re(η-Cp)(BDI)](BDI=N,N'-双(2,6-二异丙基苯基)-3,5-二甲基-β-二酮亚胺)与铀(III)盐 UI(1,4-二氧六环)之间的盐交换反应生成了三重反式夹心配合物 U[(μ-η:η-Cp)Re(BDI)],该配合物被分离并通过 X 射线晶体学、NMR 和 EPR 光谱以及计算研究进行了结构表征,确定其为路易斯碱加合物 (L)U[(μ-η:η-Cp)Re(BDI)](1·L,L=THF、1,4-二氧六环、DMAP)。X 射线晶体学、NMR 和 EPR 光谱以及计算研究支持一个铀(III)和三个铼(I)中心的分配。在固态中观察到 1·L 中铼-Cp 键距离的异常缩短,与 Na[Re(η-Cp)(BDI)]相比,这在计算的 1·THF 和阴离子片段[Re(η-Cp)(BDI)]的结构中得到了重现。计算表明,带正电荷的铀中心将电子密度从富电子的铼中心拉走,减少了铼-Cp 部分中的电子-电子排斥,从而加强了这些相互作用,同时也使铀-Cp 键合更加有利。