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首页> 外文期刊>The Journal of Chemical Physics >CROSSED-BEAM REACTION OF CARBON ATOMS WITH HYDROCARBON MOLECULES .4. CHEMICAL DYNAMICS OF METHYLPROPARGYL RADICAL FORMATION, C4H5, FROM REACTION OF C(P-3(J)) WITH PROPYLENE, C3H6 (X(1)A')
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CROSSED-BEAM REACTION OF CARBON ATOMS WITH HYDROCARBON MOLECULES .4. CHEMICAL DYNAMICS OF METHYLPROPARGYL RADICAL FORMATION, C4H5, FROM REACTION OF C(P-3(J)) WITH PROPYLENE, C3H6 (X(1)A')

机译:碳原子与烃分子的交叉束反应.4。 C(P-3(J))与丙烯C3H6(X(1)A')的反应生成的甲基丙基丙基自由基的化学动力学

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The reaction between ground state carbon atoms and propylene, C3H6, was studied at average collision energies of 23.3 and 45.0 kJ mol(-1) using the crossed molecular beam technique. Product angular distributions and time-of-flight spectra of C4H5 at m/e = 53 were recorded, Forward-convolution fitting of the data yields a maximum energy release as well as angular distributions consistent with the formation of methylpropargyl radicals. Reaction dynamics inferred from the experimental results suggest that the reaction proceeds on the lowest (3)A surface via an initial addition of the carbon atom to the pi-orbital to form a tripler methylcyclopropylidene collision complex followed by ring opening to triplet 1,2-butadiene. With 0.3-0.6 ps, 1,2-butadiene decomposes through carbon-hydrogen bond rupture to atomic hydrogen and methylpropargyl radicals. The explicit identification of C4H5 under single collision conditions represents a further example of a carbon-hydrogen exchange in reactions of ground state carbon with unsaturated hydrocarbons. This versatile machine represents an alternative pathway to build up unsaturated hydrocarbon chains in combustion processes, chemical vapor deposition, and in the interstellar medium. (C) 1997 American Institute of Physics. [References: 45]
机译:使用交叉分子束技术研究了基态碳原子与丙烯C3H6之间的反应,其平均碰撞能为23.3和45.0 kJ mol(-1)。记录了C4H5在m / e = 53时的产物角分布和飞行时间谱。数据的正向卷积拟合产生最大的能量释放以及与甲基炔丙基基团形成一致的角分布。从实验结果推断出的反应动力学表明,该反应在最低(3)A表面上进行,这是通过将碳原子初始添加到pi轨道上形成的,形成三聚体甲基环亚丙基碰撞配合物,然后开环形成三重态1,2-丁二烯。在0.3-0.6 ps时,1,2-丁二烯会通过碳氢键断裂而分解为氢原子和甲基炔丙基。在单一碰撞条件下对C4H5的明确鉴定代表了基态碳与不饱和烃反应中碳氢交换的另一个例子。这种多功能的机器代表了在燃烧过程,化学气相沉积以及星际介质中建立不饱和烃链的替代途径。 (C)1997美国物理研究所。 [参考:45]

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