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Searches on the potential energy hypersurfaces of GeCH2, GeSiH2, and Ge2H2

机译:搜索GeCH2,GeSiH2和Ge2H2的势能超表面

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Optimum geometries are computed at both the SCF level of theory and the level of second-order perturbation theory for several isomers on the potential energy hypersurfaces of GeCH2, GeSiH2, and Ge2H2 Including linear structures, methylene-carbenelike structures, dibridged structures, and monobridged structures. in addition, harmonic vibrational frequencies are computed to characterize these structures as local minima or transition states. All computations employ basis sets of triple-zeta quality on valence electrons with d and f polarization functions on the heavy atoms and p functions on hydrogen. This investigation is the first systematic study to include all of these germanium systems and to employ f-type polarization functions in such a study. Previous investigations of ours indicate that large basis sets such as those employed in this study can, in part, compensate for the lack of a more advanced treatment of electron correlation. While a dibridged global minimum is confirmed for both Ge2H2 and GeSiH2 systems, the C-2 nu isomer, methylenegermene, is found to be the most stable structure for GeCH2. (C) 1998 John Wiley & Sons, Inc. [References: 26]
机译:在GeC2,GeSiH2和Ge2H2的势能超表面上的几种异构体的SCF理论水平和二阶微扰理论水平上都计算了最佳几何形状,包括线性结构,亚甲基卡宾类结构,双桥结构和单桥结构。另外,计算谐波振动频率以将这些结构表征为局部最小值或过渡态。所有计算都对价电子使用三重zeta质量的基本集,重原子上具有d和f极化函数,氢上具有p函数。这项研究是第一个系统研究,包括所有这些锗系统,并在此类研究中采用了f型极化功能。我们先前的研究表明,诸如本研究中所使用的那些大基础集可以部分弥补缺乏更高级的电子相关性处理的不足。尽管对Ge2H2和GeSiH2系统都确认了双桥全局最小值,但发现C-2 nu异构体亚甲基锗烯是GeCH2最稳定的结构。 (C)1998 John Wiley&Sons,Inc. [参考:26]

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