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理论设计Germaacetylene(RC≡GeR'):一种新的合成目标。

Theoretical designs for germaacetylene (RC≡GeR'): a new target for synthesis.

机构信息

Department of Applied Chemistry, National Chiayi University, Chiayi, 60004, Taiwan.

出版信息

Dalton Trans. 2011 Apr 28;40(16):4253-9. doi: 10.1039/c0dt00800a. Epub 2011 Mar 8.

Abstract

The effect of substitution on the potential energy surfaces of RC≡GeR (R = F, H, OH, CH(3), SiH(3), Tbt, Ar*, SiMe(SitBu(3))(2) and SiiPrDis(2)) was explored using density functional theories (B3LYP/LANL2DZdp and B3PW91/6-31G(d)). Our theoretical studies indicate that all the triply bonded RC≡GeR species prefer to adopt trans-bent geometry, which is in agreement with the theoretical model (mode (B)). Additionally, we show that the stabilities of the RC≡GeR species bearing smaller substituents (R = F, H, OH, CH(3) and SiH(3)) decrease in the order R(2)C=Ge: > RC≡GeR > :C=GeR(2). On the other hand, the triply bonded RC≡GeR molecules with bulkier substituents (R = Tbt, Ar*, SiMe(SitBu(3))(2), SiiPrDis(2)) were found to possess the global minimum on the singlet potential energy surface and are both kinetically and thermodynamically stable. That is to say, both electronic and steric effects of bulky substituents play a crucial role in making triply bonded germaacetylenes (RC≡GeR) an interesting synthetic target.

摘要

采用密度泛函理论(B3LYP/LANL2DZdp 和 B3PW91/6-31G(d))研究了取代基对 RC≡GeR(R = F、H、OH、CH(3)、SiH(3)、Tbt、Ar*、SiMe(SitBu(3))(2) 和 SiiPrDis(2))势能面的影响。我们的理论研究表明,所有三键 RC≡GeR 物种都倾向于采用反式弯曲几何形状,这与理论模型(模式(B))一致。此外,我们表明,取代基较小的 RC≡GeR 物种(R = F、H、OH、CH(3)和 SiH(3))的稳定性顺序为 R(2)C=Ge: > RC≡GeR > :C=GeR(2)。另一方面,具有较大取代基的三键 RC≡GeR 分子(R = Tbt、Ar*、SiMe(SitBu(3))(2)、SiiPrDis(2))在单重态势能面上具有全局最小值,并且在动力学和热力学上都是稳定的。也就是说,大取代基的电子和空间效应都在使三键锗乙炔(RC≡GeR)成为一个有趣的合成目标方面发挥了关键作用。

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