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首页> 外文期刊>Journal of the American Chemical Society >Reversible Transformation of a Stable Monomeric Silicon(Ⅱ) Compound into a Stable Disilene by Phase Transfer: Experimental and Theoretical Studies of the System {[(Me_3Si)_2N](Me_5C_5)Si }_n with n = 1,2
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Reversible Transformation of a Stable Monomeric Silicon(Ⅱ) Compound into a Stable Disilene by Phase Transfer: Experimental and Theoretical Studies of the System {[(Me_3Si)_2N](Me_5C_5)Si }_n with n = 1,2

机译:通过相转移将稳定的单体硅(Ⅱ)化合物可逆转化为稳定的二硅胆:系统{[(Me_3Si)_2N](Me_5C_5)Si} _n n = 1,2的实验和理论研究

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摘要

The salt (η~5-pentamethylcyclopentadienyl)silicon(ll) tetrakis(pentafluorophenyl)borate (5) reacts at -78 ℃ with lithium bis(trimethylsilyl)amide in dimethoxyethane (DME) as solvent to give quantitatively the compound [bis(trimethylsilyl)amino][pentamethylcyclopentadienyl]silicon(Ⅱ) 6A in the form of a colorless viscous oil. The reaction performed at -40 ℃ leads to the silicon(Ⅳ) compound 7, the formal oxidative addition product of 6A with DME. Cycloaddition is observed in the reaction of 6A with 2,3-dimethylbutadiene to give the silicon(Ⅳ) compound 8. Upon attempts to crystallize 6A from organic solvents such as hexane, THF, or toluene, the deep yellow compound trans-1,2-bis[bis(trimethylsilyl)amino]-1,2-bis(pentamethylcy-clopentadienyl)disilene (6B), the formal dimer of 6A, crystallizes from the colorless solution, but only after several days or even weeks. Upon attempts to dissolve the disilene 6B in the described organic solvents, a colorless solution is obtained after prolonged vigorous shaking or ultrasound treatment. From this solution, pure 6A can be recovered after solvent evaporation. This transformation process can be repeated several times. In a mass spectroscopic investigation of 6B, Si=Si bond cleavage is observed to give the molecular ion with the composition of 6A as the fragment with the highest mass. The X-ray crystal structure analysis of the disilene 6B supports a molecule with a short Si=Si bond (2.168 A) with efficiently packed, rigid σ-bonded cyclopentadienyl substituents and silylamino groups. The conformation of the latter does not allow electron donation to the central silicon atom. Theoretical calculations at the density functional level (RI-BP86 and B3LYP, TZVP basis set) confirm the structure of 6B and reveal for silylene 6A the presence of an η~2-bonded cyclopentadienyl ligand and of a silylamino group in a conformation that prevents electron back-donation. Further theoretical calculations for the silicon(Ⅱ) compound 6A, the disilene 6B, and the two species 11 and 11~* derived from 6A (which derive from Si=Si bond cleavage) support the experimental findings. The reversible phase-dependent transformation between 6A and 6B is caused by (a) different stereoelectronic and steric effects exerted by the pentamethylcyclopentadienyl group in 6A and 6B, (b) some energy storage in the solid state structure of 6B (molecular jack in the box), (c) a small energy difference between 6A and 6B, (d) a low activation barrier for the equilibration process, and (e) the gain in entropy upon monomer formation.
机译:盐(η〜5-五甲基环戊二烯基)硅(II)四(五氟苯基)硼酸酯(5)在-78℃下与双(三甲基甲硅烷基)酰胺锂在二甲氧基乙烷(DME)中反应,定量得到化合物[双(三甲基甲硅烷基)呈无色粘性油状的氨基] [五甲基环戊二烯基]硅(Ⅱ)6A。在-40℃进行的反应生成硅(Ⅳ)化合物7,这是6A与DME的正式氧化加成产物。在6A与2,3-二甲基丁二烯反应生成硅(Ⅳ)化合物8的反应中观察到环加成。尝试从有机溶剂(如己烷,THF或甲苯)中结晶6A时,深黄色化合物反式1,2 -双[双(三甲基甲硅烷基)氨基] -1,2-双(五甲基环戊二烯基)二ilene(6B),6A的正式二聚体,从无色溶液中结晶出来,但仅在几天甚至几周后才能结晶。尝试将二烯6B溶解在所述有机溶剂中后,经过长时间的剧烈摇动或超声处理,获得了无色溶液。溶剂蒸发后,可以从该溶液中回收纯6A。此转换过程可以重复几次。在6B的质谱研究中,观察到Si = Si键断裂,以组成6A的分子离子作为质量最高的片段。二烯6B的X射线晶体结构分析支持了一个具有短Si = Si键(2.168 A)的分子,该分子具有有效堆积的,刚性σ-键合的环戊二烯基取代基和甲硅烷基氨基。后者的构象不允许将电子给予中心硅原子。在密度泛函水平上的理论计算(RI-BP86和B3LYP,TZVP基集)确认了6B的结构,并揭示了亚甲硅烷基6A上存在η〜2-键合的环戊二烯基配体和一个甲硅烷基氨基,其构型可以防止电子回赠。硅(Ⅱ)化合物6A,二硅烯6B和6A衍生的两个11和11〜*(源于Si = Si键断裂)的进一步理论计算支持了实验结果。 6A和6B之间可逆的相变是由(a)6A和6B中的五甲基环戊二烯基施加的不同立体电子和空间效应引起的,(b)6B固态结构中的一些能量存储(盒中的分子插孔) ),(c)6A和6B之间的能量差小,(d)平衡过程的活化障碍低,以及(e)单体形成后的熵增益。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第34期|12137-12143|共7页
  • 作者单位

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG Department of Chemistry, University of California, Riverside, California 92521-0403;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG;

    Faculty of Chemistry, University of Bielefeld, 33615 Bielefeld, FRG Department of Chemistry, Institute of Organic Chemistry, National Academy of Sciences of Ukraine, 5 Murmanskaya str., 02660, Kiev, Ukraine;

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  • 正文语种 eng
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