Vuori Hannu T, Rautiainen J Mikko, Kolehmainen Erkki T, Tuononen Heikki M
Department of Chemistry, Nanoscience Centre, University of Jyväskylä, P.O. Box 35, Jyväskylä FI-40014, Finland.
J Phys Chem A. 2022 Mar 17;126(10):1729-1742. doi: 10.1021/acs.jpca.1c09980. Epub 2022 Mar 7.
A high-level composite quantum chemical method, W1X-1, is used herein to calculate the gas-phase standard enthalpy of formation, entropy, and heat capacity of 159 organosilicon compounds. The results set a new benchmark in the field that allows, for the first time, an in-depth assessment of existing experimental data on standard enthalpies of formation, enabling the identification of important trends and possible outliers. The calculated thermochemical data are used to determine Benson group additivity contributions for 60 Benson groups and group pairs involving silicon. These values allow fast and accurate estimation of thermochemical parameters of organosilicon compounds of varying complexity, and the data acquired are used to assess the reliability of experimental work of Voronkov et al. that has been repeatedly criticized by Becerra and Walsh. Recent results from other computational investigations in the field are also carefully discussed through the prism of reported advancements.
本文采用一种高级复合量子化学方法W1X - 1来计算159种有机硅化合物的气相标准生成焓、熵和热容。这些结果为该领域设定了一个新的基准,首次使得对现有生成焓实验数据进行深入评估成为可能,从而能够识别重要趋势和可能的异常值。计算得到的热化学数据用于确定涉及硅的60个本森基团和基团对的本森基团加和贡献。这些值能够快速准确地估算不同复杂程度的有机硅化合物的热化学参数,并且所获取的数据用于评估沃龙科夫等人的实验工作的可靠性,该工作一直受到贝塞拉和沃尔什的反复批评。该领域其他计算研究的最新结果也通过所报道进展的视角进行了仔细讨论。