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高能密度吸热烃燃料JP-10热化学性质的量子化学研究

A quantum chemistry study on thermochemical properties of high energy-density endothermic hydrocarbon fuel JP-10.

作者信息

Qin Xiao-Mei, Xie Hu-Jun, Yue Lei, Lu Xiao-Xing, Fang Wen-Jun

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, 310027, People's Republic of China.

出版信息

J Mol Model. 2014 Apr;20(4):2183. doi: 10.1007/s00894-014-2183-y. Epub 2014 Mar 16.

Abstract

The density functional theory (DFT) calculations at the M06-2X/6-31++G(d,p) level have been performed to explore the molecular structure, electronic structure, C-H bond dissociation enthalpy, and reaction enthalpies for five isodesmic reactions of a high energy-density endothermic hydrocarbon fuel JP-10. On the basis of the calculations, it is found that the carbonium ion C-6 isomer formed from the catalytic cracking at the C₆ site of JP-10 has the lowest energy, and the R-5 radical generated from the thermal cracking at the C₅ site of JP-10 is the most stable isomer. Furthermore, a series of hypothetical and isodesmic work reactions containing similar bond environments are used to calculate the reaction enthalpies for target compounds. For the same isodesmic reaction, the reaction enthalpy of each carbon site radical has also been calculated. The present work is of fundamental significance and strategic importance to provide some valuable insights into the component design and energy utilization of advanced endothermic fuels.

摘要

在M06-2X/6-31++G(d,p)水平上进行了密度泛函理论(DFT)计算,以探索高能密度吸热碳氢燃料JP-10的五个等键反应的分子结构、电子结构、C-H键解离焓和反应焓。基于这些计算,发现由JP-10的C₆位点催化裂化形成的碳正离子C-6异构体能量最低,而由JP-10的C₅位点热裂化产生的R-5自由基是最稳定的异构体。此外,使用一系列包含相似键环境的假设和等键工作反应来计算目标化合物的反应焓。对于相同的等键反应,还计算了每个碳位点自由基的反应焓。本工作对于深入了解先进吸热燃料的组分设计和能量利用具有重要的基础意义和战略意义。

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