首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Unimolecular decomposition of chemically activated pentatetraene (H2CCCCCH2) intermediates: A crossed beams study of dicarbon molecule reactions with allene
【24h】

Unimolecular decomposition of chemically activated pentatetraene (H2CCCCCH2) intermediates: A crossed beams study of dicarbon molecule reactions with allene

机译:化学活化的戊四烯(H2CCCCCH2)中间体的单分子分解:双碳分子与丙二烯反应的交叉束研究

获取原文
获取原文并翻译 | 示例
       

摘要

The reactions dynamics of the dicarbon molecule C-2 in the (1)Sigma(+)(g) singlet ground state and (3)Pi(u) first excited triplet state with allene, H2CCCH2(X(1)A(1)), was investigated under single collision conditions using the crossed molecular beam approach at four collision energies between 13.6 and 49.4 kJ mol(-1). The experiments were combined with ab initio electronic structure calculations of the relevant stationary points on the singlet and triplet potential energy surfaces. Our investigations imply that the reactions are barrier-less and indirect on both the singlet and the triplet surfaces and proceed through bound C5H4 intermediates via addition of the dicarbon molecule to the carbon-carbon double bond (singlet surface) and to the terminal as well as central carbon atoms of the allene molecule (triplet surface). The initial collision complexes isomerize to form triplet and singlet pentatetraene intermediates (H2CCCCCH2) that decompose via atomic hydrogen loss to yield the 2,4-pentadiynyl-1 radical, HCCCCCH2((XB1)-B-2). These channels result in symmetric center-of-mass angular distributions. On the triplet surface, a second channel involves the existence of a nonsymmetric reaction intermediate (HCCCH2CCH) that fragments through atomic hydrogen emission to the 1,4-pentadiynyl-3 radical [C5H3((XB1)-B-2) HCCCHCCH]; this pathway was found to account for the backward scattered center-of-mass angular distributions at higher collision energies. The identification of two resonance-stabilized free C5H3 radicals (i.e., 2,4-pentadiynyl-1 and 1,4-pentadiynyl-3) suggests that these molecules can be important transient species in combustion flames and in the chemical evolution of the interstellar medium.
机译:二碳分子C-2在(1)Sigma(+)(g)单线态和(3)Pi(u)第一激发三线态与丙二烯H2CCCH2(X(1)A(1)的反应动力学),是在单一碰撞条件下使用交叉分子束方法在13.6至49.4 kJ mol(-1)之间的四个碰撞能量下进行研究的。实验与单重态和三重态势能表面上相关固定点的从头算电子结构计算相结合。我们的研究表明,该反应在单重态和三重态表面上都是无障碍且间接的,并且通过将二碳分子加至碳-碳双键(单重表面)以及末端和末端,从而通过结合的C5H4中间体进行。丙二烯分子的中心碳原子(三重态表面)。初始的碰撞配合物异构化,形成三重态和单重态五四烯中间体(H2CCCCCH2),这些中间体通过原子氢损失而分解,生成2,4-戊二炔基-1自由基HCCCCCH2((XB1)-B-2)。这些通道导致对称的质心角分布。在三重态表面上,第二个通道涉及一个不对称反应中间体(HCCCH2CCH),该中间体通过原子氢发射到1,4-戊二炔基-3自由基[C5H3((XB1)-B-2)HCCCHCCH]上而分裂。发现该途径解释了在较高的碰撞能量下向后散射的质心角分布。对两个共振稳定的游离C5H3自由基(即2,4-戊二炔基-1和1,4-戊二炔基-3)的鉴定表明,这些分子在燃烧火焰和星际介质的化学演化中可能是重要的瞬态物种。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号