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Investigations on non-classical silylium ions leading to a cyclobutenyl cation

机译:导致环丁烯基阳离子的非经典甲硅烷基离子的研究

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摘要

Instead of yielding the desired non-classical silylium ions, the reactions of different alkenes/alkynes with several [Me3Si]+ sources mostly led to oligomerization, or – in the presence of Me3SiH – hydrosilylation of the alkenes/alkynes. Yet, from the reaction of 2-butyne with ion-like Me3Si–F–Al(ORF)3 (RF = C(CF3)3) the salt of the silylated tetramethyl cyclobutenyl cation [Me4C4–SiMe3]+[al–f–al]>1 ([al–f–al] = [(RFO)3Al–F–Al(ORF)3]) was obtained in good yield (NMR, scXRD, Raman, and IR). All the experimental and calculated evidence suggest a mechanism in which >1 was formed via a non-classical silylium ion as an intermediate. The removal of the [Me3Si]+ moiety from the cation in >1 was investigated as a means to provide free tetramethyl cyclobutadiene (CBD). However, the addition of [NMe4]F, in order to release Me3SiF and form CBD, led to the unexpected deprotonation of the cation. The addition of 4-dimethylaminopyridine to remove the [Me3Si]+ cation as a Lewis acid/base adduct, led to an adduct with the four-membered ring in the direct neighborhood of the Me3Si group. By the addition of Et2O to a solution of >1, the [F–Al(ORF)3] anion (and Et2O–Al(ORF)3) was generated from the [al–f–al] counterion. Subsequently, the [F–Al(ORF)3] anion abstracted the [Me3Si]+ moiety from [Me4C4–SiMe3]+, probably releasing CBD. However, due to the immediate reaction of CBD with [Me4C4–SiMe3]+ and subsequent oligomerization, it was not possible to use CBD in follow-up chemistry.
机译:不同的烯烃/炔烃与几种[Me3Si] + 来源的反应未产生所需的非经典甲硅烷基离子,主要导致了低聚反应,或者–在存在Me3SiH的情况下–烯烃的硅氢化反应/炔烃。然而,从2-丁炔与类似离子的Me3Si–F–Al(OR F )3(R F = C(CF3)3)的反应中甲硅烷基化的四甲基环丁烯基阳离子[Me4C4–SiMe3] + [al–f–al] > 1 ([al–f–al] < sup> – = [(R F O)3Al–F–Al(OR F )3] )收率高(NMR,scXRD,Raman和IR)。所有实验和计算的证据都表明了一种机理,其中> 1 是通过非经典的硅离子作为中间体形成的。研究了从> 1 中的阳离子去除[Me3Si] + 部分,作为提供游离四甲基环丁二烯(CBD)的方法。然而,为了释放Me3SiF并形成CBD,添加[NMe4] F导致了阳离子的意外去质子化。加入4-二甲基氨基吡啶以除去作为路易斯酸/碱加合物的[Me3Si] + 阳离子,导致在Me3Si基团的直接邻域中具有四元环的加合物。通过将Et 2 O添加到> 1 的溶液中,[F–Al(OR F 3 ] 阴离子(和Et 2 O–Al(OR F 3 )从[ al–f–al] 抗衡离子。随后,[F–Al(OR F 3 ] 阴离子提取了[Me 3 Si]来自[Me 4 C 4 –SiMe 3 ] + + 部分发布CBD。但是,由于CBD与[Me 4 C 4 –SiMe 3 ] + 的立即反应以及随后的反应低聚,不可能在后续化学中使用CBD。

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