首页> 外文期刊>American Chemical Society, Division of Fuel Chemistry, Preprints >EXO-TRICYCLO[5.2.1.02,6]DECANE (TCD OR JP-10) DECOMPOSITION: THERMOCHEMOSTRY AND KINETICS OF RING OPENING AND FORMED INTERMEDIATES
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EXO-TRICYCLO[5.2.1.02,6]DECANE (TCD OR JP-10) DECOMPOSITION: THERMOCHEMOSTRY AND KINETICS OF RING OPENING AND FORMED INTERMEDIATES

机译:EXO-三环[5.2.1.02,6]癸烷(TCD或JP-10)分解:开环和成型中间体的热化学和动力学

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Exo-tricyclo[5.2.1.02,6]decane (TCD) or exo-tetrahydro-dicyclopentadiene is an interesting, strained ring compound and the near single component in the high-energy density, hydrocarbon fuel known as JP-10. Important initial reactions of TCD at high temperatures would cleave the strained carbon-carbon (C—C) bonds in the ring creating diradicals constrained by the remaining ring system, or reactions similar to reverse Diels Alder dissociations This study determines the thermochemistry and kinetic parameters of these of TCD unimolecular decompositions, formed intermediates and diradicals. Thermochemical properties including enthalpies (ΔH°f 298), entropies (S(T)), heat capacities (Cp(T)), and C—H and C—C BDEs for the parent (TCD-H2 m-n), radical (TCD-H2 mj-n and mnj), diradical (TCD-H2 mj-nj), are determined. Ring opening (C3a- C4, numbering below) and posterior H-shift has been shown to account for the formation of 3-cyclopentylcyclopentene. In this study CBS-QB3 and G3MP2 calculations were used to study the ring opening reaction barriers and structures of TCD followed by H-shifts for the cleavage of the competitive C-C bonds (C4-C8, C4-C5) and reaction to olefins. Formation of reported products 1,3- cyclooctadiene (1,3 COD•) and methylheptahydroindene is explained, loss of ethane from 1,3-COD• to benzene is evaluated. Kinetic parameters are derived and a mechanism to describe the initial decomposition of TCD is developed.
机译:外三环[5.2.1.02,6]癸烷(TCD)或外四氢-二环戊二烯是一种有趣的,应变的环化合物,是高能量密度烃燃料JP-10中的近乎单一的组分。 TCD在高温下的重要初始反应会裂解环中的应变碳-碳(CC)键,从而形成由其余环系统约束的双自由基,或类似于反向Diels Alder解离的反应。这项研究确定了DCD的热化学和动力学参数这些是TCD单分子分解的产物,形成了中间体和双基。热化学性质,包括焓(ΔH°f 298),熵(S(T)),热容(Cp(T))以及母体的CHB和CHBDEs(TCD-H2 mn),自由基(TCD确定了双基(TCD-H2 mj-nj)的-H2 mj-n和mnj)。已经显示开环(C3a-C4,在下面编号)和后H-移位解释了3-环戊基环戊烯的形成。在这项研究中,使用CBS-QB3和G3MP2计算来研究TCD的开环反应势垒和结构,然后研究H移位以裂解竞争性C-C键(C4-C8,C4-C5)和反应生成烯烃。说明了报告的产物1,3-环辛二烯(1,3 COD•)和甲基七氢茚的形成,评估了乙烷从1,3-COD•向苯的损失。推导了动力学参数,并开发了描述TCD初始分解的机制。

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    Department of Chemistry and Environmental Science New Jersey Institute of Technology Newark NJ 07102Overwrite Corresponding;

    Department of Chemistry and Environmental Science New Jersey Institute of Technology Newark NJ 07102Overwrite Corresponding;

    Department of Chemistry and Environmental Science New Jersey Institute of Technology Newark NJ 07102Overwrite Corresponding;

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