Department of Environmental Engineering Science, Graduate School of Science and Technology, Gunma University, Kiryu 376-8515, Japan.
Institute for Materials Chemistry and Engineering, Kyushu University, Nishi-ku, Fukuoka 819-0395, Japan.
Molecules. 2023 Mar 19;28(6):2769. doi: 10.3390/molecules28062769.
To gain insight into the effect of Si/C arrangement on the molecular framework of strained polyhedral compounds, dodecahedrane analogues containing equal numbers of carbon and silicon (Si/C equally mixed dodecahedrane analogues) were investigated using the ab initio molecular orbital method. There are 1648 isomers for which the Si/C arrangement on the molecular framework is different. Based on the geometry optimization of all the isomers as well as the carbon and silicon analogues, the characteristics of the structure, relative energy, and strain energy of the Si/C equally mixed compounds are presented. Then, important factors controlling the relative energy, such as strain energy, are proposed through regression analysis. Also discussed is the correlation between the relative energy and the indices of Si/C dispersion, such as the number of skeletal C-Si single bonds and condensed five-membered rings constituting the polyhedral structure.
为了深入了解 Si/C 排列对应变多面体化合物分子结构的影响,使用从头算分子轨道方法研究了等数量的碳和硅组成的十二烷类似物(Si/C 等摩尔混合十二烷类似物)。共有 1648 种异构体,它们的分子骨架上的 Si/C 排列方式不同。基于所有异构体以及碳和硅类似物的几何优化,本文呈现了 Si/C 等摩尔混合化合物的结构、相对能量和应变能的特征。然后,通过回归分析提出了控制相对能量的重要因素,如应变能。还讨论了相对能量与 Si/C 分散指数之间的相关性,如构成多面体结构的骨架 C-Si 单键数量和缩合的五元环。