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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Gas-Phase Heat of Formation Values for Buckminsterfullerene (C-60), C70 Fullerene (C-70), Corannulene, Coronene, Sumanene, and Other Polycyclic Aromatic Hydrocarbons Calculated Using Density Functional Theory (M06 2X) Coupled with a Versatile Inexpensive Group-Equivalent Approach
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Gas-Phase Heat of Formation Values for Buckminsterfullerene (C-60), C70 Fullerene (C-70), Corannulene, Coronene, Sumanene, and Other Polycyclic Aromatic Hydrocarbons Calculated Using Density Functional Theory (M06 2X) Coupled with a Versatile Inexpensive Group-Equivalent Approach

机译:用于使用密度官能理论(M06 2x)计算的Caplminsterfullerene(C-60),C70富勒烯(C-70),磺酸烯,冠烯,苏曼诺和其他多环芳烃和其他多环芳烃和其他多环芳烃和其他与多功能廉价群体(M06 2X)计算的多环芳烃和其他多环芳烃和其他多环芳烃和其他多环芳烃 - 等同的方法

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摘要

A straightforward procedure using density functional theory (M06 2X) coupled with a group-equivalent approach is described that was used to calculate gas-phase heat of formation (Delta H-f degrees(g,298)) values for buckminsterfullerene (C-60), C70 fullerene (C-70), corannulene, coronene, and sumanene. This procedure was also used to calculate exceptionally accurate Delta H-f degrees(g,298) values for a variety of single-ring aromatic and 2-7 ring polycyclic aromatic hydrocarbons (PAHs) as well as a large selection of other hydrocarbons and phenols. The approach described herein is internally consistent, and results for C-60, C-70, corannulene, coronene, and sumanene are in very close agreement with results reported by others who used higher-level computational theory. Statistical analysis of a test set containing benzene and 18 two to seven ring PAHs demonstrated that by using this approach a mean absolute deviation (MAD) and a root-mean-square deviation (RMSD) of 0.8 and 1.3 kJ/mol, respectively, were achieved for reference/experimental Delta H-f degrees(g,298) values versus calculated/predicted Delta H-f degrees(g,298) values. For statistical analysis of a larger test set containing 235 aromatic and aliphatic hydrocarbons and phenols, a MAD and a RMSD of 1.2 and 1.9 kJ/mol, 8 values. respectively, were achieved for reference/experimental Delta H-f degrees(g,298) values versus calculated/predicted Delta H-f degrees(g,298) values.
机译:使用密度泛函理论(M06 2x)与基团相同的方法耦合的直接步骤用于计算Buckminsterfullerene(C-60)的气相热量(Delta HF度(G,298))值(C-60), C70富勒烯(C-70),磺酸甘油,冠军和苏烯。该方法还用于计算各种单环芳族和2-7个环多环芳烃(PAH)的各种单环芳族和2-7个环多环芳烃(PAHS)以及其他其他烃和酚类的异常精确的ΔH-F度(G,298)值。本文所述的方法是在内部一致的,结果对于C-60,C-70,磺酸甘油,Coronene和Sumanene的结果与使用更高级别计算理论的其他人报告的结果非常接近一致。统计分析含有苯和18到七环PAH的测试套装证明,通过使用这种方法,平均绝对偏差(MAD)分别为0.8和1.3 kJ / mol的平均绝对偏差(MAD)和根平均方偏差(RMSD)实现参考/实验增量HF度(G,298)值与计算/预测的ΔHF度(G,298)值。对于含有235个芳族和脂族烃和酚,MAD和RMSD的较大试验装置的统计分析,致1.2和1.9kJ / mol,8个值。分别用于参考/实验ΔH-F度(G,298)值与计算/预测的ΔH-F度(G,298)值达到。

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