首页> 外文期刊>The Journal of Chemical Physics >Prediction of absolute rate coefficients and product branching ratios for the C(~3P) + allene reaction system
【24h】

Prediction of absolute rate coefficients and product branching ratios for the C(~3P) + allene reaction system

机译:C(〜3P)+丙二烯反应体系的绝对速率系数和产物分支比的预测

获取原文
获取原文并翻译 | 示例
           

摘要

Complex chemical reactions in the gas phase can be decomposed into a network of elementary (e.g., unimolecular and bimolecular) steps which may involve multiple reactant channels, multiple intermediates, and multiple products. The modeling of such reactions involves describing the molecular species and their transformation by reaction at a detailed level. Here we focus on a detailed modeling of the C(~3P) + allene (C_3H_4) reaction, for which molecular beam experiments and theoretical calculations have previously been performed. In our previous calculations, product branching ratios for a nonrotating isomerizing unimolecular system were predicted. We extend the previous calculations to predict absolute unimolecular rate coefficients and branching ratios using microcanonical variational transition state theory (mu-VTST) with full energy and angular momentum resolution. Our calculation of the initial capture rate is facilitated by systematic ab initio potential energy surface calculations that describe the interaction potential between carbon and allene as a function of the angle of attack. Furthermore, the chemical kinetic scheme is enhanced to explicitly treat the entrance channels in terms of a predicted overall input flux and also to allow for the possibility of redissociation via the entrance channels. Thus, the computation of total bimolecular reaction rates and partial capture rates is now possible.
机译:气相中的复杂化学反应可以分解成基本步骤(例如单分子和双分子)的网络,该步骤可能涉及多个反应物通道,多种中间体和多种产物。此类反应的建模涉及详细描述分子种类及其通过反应的转化。在这里,我们专注于C(〜3P)+丙二烯(C_3H_4)反应的详细建模,对此之前已进行了分子束实验和理论计算。在我们之前的计算中,预测了非旋转异构化单分子体系的产物支化比。我们扩展以前的计算,以使用全能量和角动量分辨率的微经典变分过渡态理论(mu-VTST)来预测绝对单分子速率系数和支化比。系统的从头算势能面计算有助于我们对初始捕获率的计算,该计算从表面上描述了碳和艾伦之间的相互作用势与迎角的关系。此外,增强了化学动力学方案,从而根据预测的总输入通量明确处理了入口通道,并且还允许通过入口通道进行再结合的可能性。因此,现在可以计算总双分子反应速率和部分捕获速率。

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