Department of Chemical and Biological Engineering, Northwestern University, Evanston, Illinois 60208-3120, USA.
J Phys Chem A. 2011 Aug 18;115(32):8969-82. doi: 10.1021/jp2018023. Epub 2011 Jul 26.
The thermochemical properties for selected hydrogenated silicon clusters (Si(x)H(y), x = 3-13, y = 0-18) were calculated using quantum chemical calculations and statistical thermodynamics. Standard enthalpy of formation at 298 K and standard entropy and constant pressure heat capacity at various temperatures, i.e., 298-6000 K, were calculated for 162 hydrogenated silicon clusters using G3//B3LYP. The hydrogenated silicon clusters contained ten to twenty fused Si-Si bonds, i.e., bonds participating in more than one three- to six-membered ring. The hydrogenated silicon clusters in this study involved different degrees of hydrogenation, i.e., the ratio of hydrogen to silicon atoms varied widely depending on the size of the cluster and/or degree of multifunctionality. A group additivity database composed of atom-centered groups and ring corrections, as well as bond-centered groups, was created to predict thermochemical properties most accurately. For the training set molecules, the average absolute deviation (AAD) comparing the G3//B3LYP values to the values obtained from the revised group additivity database for standard enthalpy of formation and entropy at 298 K and constant pressure heat capacity at 500, 1000, and 1500 K were 3.2%, 1.9%, 0.40%, 0.43%, and 0.53%, respectively. Sensitivity analysis of the revised group additivity parameter database revealed that the group parameters were able to predict the thermochemical properties of molecules that were not used in the training set within an AAD of 3.8% for standard enthalpy of formation at 298 K.
采用量子化学计算和统计热力学方法计算了选定氢化硅团簇(Si(x)H(y),x = 3-13,y = 0-18)的热化学性质。使用 G3//B3LYP 为 162 个氢化硅团簇计算了 298 K 时的标准生成焓、不同温度(298-6000 K)下的标准熵和定压热容。氢化硅团簇包含十个到二十个熔合的 Si-Si 键,即参与一个以上三至六元环的键。本研究中的氢化硅团簇具有不同程度的氢化,即氢与硅原子的比例因团簇的大小和/或多功能性的程度而有很大差异。创建了一个由原子中心基团和环修正以及键中心基团组成的基团加和数据库,以最准确地预测热化学性质。对于训练集分子,与从修订后的基团加和数据库获得的 298 K 时的标准生成焓和熵以及 500、1000 和 1500 K 时的定压热容的 G3//B3LYP 值相比,平均绝对偏差(AAD)分别为 3.2%、1.9%、0.40%、0.43%和 0.53%。修订后的基团加和参数数据库的敏感性分析表明,基团参数能够在 298 K 时标准生成焓的 AAD 为 3.8%的范围内预测未用于训练集的分子的热化学性质。