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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Active Thermochemical Tables: Sequential Bond Dissociation Enthalpies of Methane, Ethane, and Methanol and the Related Thermochemistry
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Active Thermochemical Tables: Sequential Bond Dissociation Enthalpies of Methane, Ethane, and Methanol and the Related Thermochemistry

机译:活性热化学表:甲烷,乙烷和甲醇的顺序键解离焓及相关的热化学

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Active Thermochemical Tables (ATcT) thermochemistry for the sequential bond dissociations of methane, ethane, and methanol systems were obtained by analyzing and solving a very large thermochemical network (TN). Values for all possible C-H, C-C, C-O, and O-H bond dissociation enthalpies at 298.15 K (BDE298) and bond dissociation energies at 0 K (D-0) are presented. The corresponding ATcT standard gas-phase enthalpies of formation of the resulting CHn, n = 4-0 species (methane, methyl, methylene, methylidyne, and carbon atom), C2Hn, n = 6-0 species (ethane, ethyl, ethylene, ethylidene, vinyl, ethylidyne, acetylene, vinylidene, ethynyl, and ethynylene), and COHn, n = 4-0 species (methanol, hydroxymethyl, methoxy, formaldehyde, hydroxymethylene, formyl, isoformyl, and carbon monoxide) are also presented. The ATcT thermochemistry of carbon dioxide, water, hydroxyl, and carbon, oxygen, and hydrogen atoms is also included, together with the sequential BDEs of CO2 and H2O. The provenances of the ATcT enthalpies of formation, which are quite distributed and involve a large number of relevant determinations, are analyzed by variance decomposition and discussed in terms of principal contributions. The underlying reasons for periodic appearances of remarkably low and/or unusually high BDEs, alternating along the dissociation sequences, are analyzed and quantitatively rationalized. The present ATcT results are the most accurate thermochemical values currently available for these species.
机译:通过分析和求解一个非常大的热化学网络(TN),获得了用于甲烷,乙烷和甲醇系统顺序键解离的活性热化学表(ATcT)热化学。给出了所有可能的C-H,C-C,C-O和O-H键解离焓的值(298.15 K)(BDE298)和0 K(D-0)的键解离能。生成的CHn的相应ATcT标准气相焓,n = 4-0种(甲烷,甲基,亚甲基,亚甲基和碳原子),C2Hn,n = 6-0种(乙烷,乙基,乙烯,还介绍了亚乙基,乙烯基,亚乙炔基,乙炔,亚乙烯基,乙炔基和亚乙炔基)和COHn,n = 4-0种(甲醇,羟甲基,甲氧基,甲醛,羟甲基,甲酰基,异甲酰基和一氧化碳)。还包括二氧化碳,水,羟基,碳,氧和氢原子的ATcT热化学,以及顺序的CO2和H2O BDE。通过方差分解分析了ATcT形成焓的来源,这些来源很分散并且涉及大量相关的确定,并根据主要贡献进行了讨论。分析并定量分析了沿解离序列交替出现的BDE极低和/或异常高的周期性出现的根本原因。目前的ATcT结果是目前可用于这些物种的最准确的热化学值。

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