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首页> 外文期刊>Organometallics >Systematic experimental and quantum chemical investigation into the structures, the stability, and the spectroscopic properties of alkylindium(I) compounds: Tetrameric In-4[C(SiMeRR ')(3)](4) versus monomeric InC(SiMeRR ')(3) derivatives
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Systematic experimental and quantum chemical investigation into the structures, the stability, and the spectroscopic properties of alkylindium(I) compounds: Tetrameric In-4[C(SiMeRR ')(3)](4) versus monomeric InC(SiMeRR ')(3) derivatives

机译:对烷基铟(I)化合物的结构,稳定性和光谱性质进行系统的实验和量子化学研究:四聚In-4 [C(SiMeRR')(3)](4)与单体InC(SiMeRR')(3) )衍生品

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The reaction of indium monobromide (InBr) with LiC(SiMeRR')(3). xTHF gives in a high yield alkylindium(I) derivatives with the indium atoms in the unusual low oxidation state of +1. The properties of these products are investigated by the systematic variation of the steric demand of the C(SiMeRR')(3) substitutents (R = Me, Et; R' = Me, Et, Bu-n, Pr-i, Ph). Tetrahedral In-4 clusters are observed in the solid state and in solution for smaller substituents such as C(SiMe3)(3), C(SiMe2Et)(3) (1), and C((SiMe2Bu)-Bu-n)(3) (2). As shown by two crystal structure determinations, those clusters exhibit undistorted tetrahedra of four indium atoms and short In-In distances of 3.00 Angstrom on average. In contrast, owing to the larger steric stress, complete dissociation into the monomeric formula units InR is observed in solution with the more voluminous C((SiMe2Pr)-Pr-i)(3) group (3), while in the solid state once more an almost undistorted tetrahedron of the tetramer is found, showing, however, much elongated In-In distances of 3.155 Angstrom on average. Single crystals could not be obtained for the compounds with C(SiMe2Ph)(3) (4) and C(SiEt2Me)(3) groups (5); 4 is monomeric in benzene, while 5 gives the formula mass of the dimer, and complete dissociation into the monomer is observed only in very dilute solutions. All compounds show unusual downfield shifts of the resonances of the carbon atoms bound to indium up to delta = 76 ppm, which are very characteristic of the alkylindium(I) compounds. Quantum chemical NMR chemical shift calculations using density functional theory indicate that the large shifts are related to the presence of low-lying magnetically allowed excited states, and they are further enhanced by unusually large spin-orbit effects. Optimized structure parameters for InCH3, In-4(CH3)(4), InH, and In4H4 are compared with the experimental results. Our best estimate for the tetramerization energy of InCH3 is cal 290 kJ/mol at the MP2 level. [References: 88]
机译:一溴化铟(InBr)与LiC(SiMeRR')(3)的反应。 xTHF产生高收率的烷基铟(I)衍生物,其中铟原子的异常低氧化态为+1。通过系统改变C(SiMeRR')(3)取代基的空间需求来研究这些产品的性能(R =​​ Me,Et; R'= Me,Et,Bu-n,Pr-i,Ph) 。四面体In-4团簇在固态和溶液中观察到较小的取代基,例如C(SiMe3)(3),C(SiMe2Et)(3)(1)和C((SiMe2Bu)-Bu-n)( 3)(2)。如两次晶体结构测定所示,这些簇表现出四个铟原子的未扭曲四面体和平均3.00埃的短In-In距离。相反,由于较大的空间应力,在具有较大体积的C((SiMe2Pr)-Pr-i)(3)(3)组的溶液中观察到完全分解成单体式单元InR的状态,而一次处于固态还发现了四聚体几乎未变形的四面体,但是显示出平均延长了3.155埃的拉入距离。具有C(SiMe2Ph)(3)(4)和C(SiEt2Me)(3)(5)基团的化合物无法获得单晶。 4是苯中的单体,而5是二聚体的分子质量,仅在非常稀的溶液中观察到完全分解成单体。所有化合物均显示出与铟键合的碳原子共振的异常低场移位,最高可达delta = 76 ppm,这是烷基铟(I)化合物的特征。使用密度泛函理论的量子化学NMR化学位移计算表明,大位移与低位磁性允许的激发态的存在有关,并且通过异常大的自旋轨道效应进一步增强了位移。将InCH3,In-4(CH3)(4),InH和In4H4的最佳结构参数与实验结果进行了比较。我们对InCH3的四聚能的最佳估计是在MP2浓度下为290 kJ / mol。 [参考:88]

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