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二硅杂环己烷的气相结构、热力学和势能面。

Gas phase structures, energetics, and potential energy surfaces of disilacyclohexanes.

机构信息

Science Institute, University of Iceland, Dunhaga 3, IS-107 Reykjavik, Iceland.

出版信息

J Phys Chem A. 2011 Sep 8;115(35):10000-8. doi: 10.1021/jp202722t. Epub 2011 Aug 8.

DOI:10.1021/jp202722t
PMID:21780826
Abstract

The molecular structures of 1,4-, 1,3-, and 1,2-disilacyclohexanes (denoted as 14, 13, and 12, respectively) were investigated by means of gas electron diffraction (GED). Each molecule was found to possess a chair as the most stable conformation in the gas phase, the point group being C(2h), C(s), and C(2), respectively. Experimental GED structures are in good agreement with theoretical calculations (MP2/cc-pVTZ and B3LYP/cc-pVTZ). A qualitative ring strain analysis suggests 14 to be the most stable and 12 the least stable of the parent disilacyclohexanes. Relative energy calculations with the G4 model chemistry protocol, on the other hand, predict 13 to be the most stable isomer, 5.9 and 14.2 kcal/mol more stable than 14 and 12, respectively. The enhanced stability of 13 compared to 14 is in agreement with an analysis on endocyclic bond lengths and bond polarities. The heats of formation (G4 calculations) are predicted to be -12.3, -18.1, and -3.9 kcal/mol for 14, 13, and 12, respectively. The potential energy surface (PES) and the lowest energy path for the chair-to-chair inversion have been calculated for each isomer. In addition to the two chair forms in each case and some half-chair or sofa-like transition states (four in the case of 14, and two in the case of 13), there are two twist forms found as stationary points on the PES of 14, six twist and six boat forms on the PES of 13, and four twist and six boat forms on the PES of 12.

摘要

1,4-、1,3-和 1,2-二硅杂环己烷(分别表示为 14、13 和 12)的分子结构通过气相电子衍射(GED)进行了研究。在气相中,每个分子都被发现具有椅式构象作为最稳定的构象,点群分别为 C(2h)、C(s) 和 C(2)。实验 GED 结构与理论计算(MP2/cc-pVTZ 和 B3LYP/cc-pVTZ)吻合良好。定性的环应变分析表明,14 是最稳定的,12 是最不稳定的母体二硅杂环己烷。另一方面,使用 G4 模型化学协议进行的相对能量计算预测 13 是最稳定的异构体,比 14 和 12 分别稳定 5.9 和 14.2 kcal/mol。13 相对于 14 的增强稳定性与内环键长和键极性的分析一致。G4 计算预测的形成热分别为-12.3、-18.1 和-3.9 kcal/mol,用于 14、13 和 12。已为每个异构体计算了椅式-椅式翻转的势能面(PES)和最低能量路径。除了每种情况下的两个椅式构象以及一些半椅式或沙发样过渡态(14 情况下为四个,13 情况下为两个)之外,在 14 的 PES 上还发现了两种扭曲构象作为稳定点,在 13 的 PES 上有六个扭曲和六个船式构象,在 12 的 PES 上有四个扭曲和六个船式构象。

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