Ashcraft Robert W, Green William H
Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Phys Chem A. 2008 Sep 25;112(38):9144-52. doi: 10.1021/jp803759m. Epub 2008 Aug 28.
Gas-phase thermochemical group additivity values were derived from CBS-QB3 computational chemistry calculations for 105 noncyclic C/H/O/N molecules. The molecules contain nitrile, nitro, nitroso, nitrite, nitrate, amine, imino, and azo functional groups. The enthalpy of formation, entropy, and heat capacity values for 49 atom-centered groups were derived. The effect of hindered internal rotations was included via rotor potential energy scans and solution of the one-dimensional Schrodinger equation. The average 95% confidence intervals across all derived groups are 1.4 kcal mol(-1) for the enthalpy, 1.3 cal mol(-1) K(-1) for the entropy, and 1.0 cal/mol K for the heat capacity. The presented group values will be useful when employing automatic reaction mechanism generation tools to examine the role of fuel-bound or molecular nitrogen in energy-related or atmospheric processes.
通过CBS-QB3计算化学计算得出了105个非环状C/H/O/N分子的气相热化学基团加和值。这些分子包含腈基、硝基、亚硝基、亚硝酸酯、硝酸酯、胺基、亚氨基和偶氮官能团。推导得出了49个以原子为中心的基团的生成焓、熵和热容值。通过转子势能扫描和一维薛定谔方程的求解考虑了受阻内旋转的影响。所有推导基团的平均95%置信区间为:焓为1.4千卡/摩尔(-1),熵为1.3卡/摩尔(-1)·K(-1),热容为1.0卡/摩尔·K。当使用自动反应机理生成工具来研究燃料结合态或分子态氮在能源相关或大气过程中的作用时,所给出的基团值将很有用。