首页> 外文期刊>Physical chemistry chemical physics: PCCP >Ion chemistry at elevated ion-molecule interaction energies in a selected ion flow-drift tube: reactions of H3O+, NO+ and O-2(+) with saturated aliphatic ketones
【24h】

Ion chemistry at elevated ion-molecule interaction energies in a selected ion flow-drift tube: reactions of H3O+, NO+ and O-2(+) with saturated aliphatic ketones

机译:在所选离子流量漂移管中升高离子分子相互作用能量的离子化学物质:H3O +,No +和O-2(+)的反应,饱和脂族酮酮

获取原文
获取原文并翻译 | 示例
           

摘要

The reactions of H3O+, NO+ and O-2(+) ions with a homologous series of six aliphatic ketones, viz. acetone through 2-octanone, have been investigated in a helium-buffered selected ion flow-drift tube, SIFDT, in order to reveal their dependencies on ion-molecule interaction energies, E-r, and to gain insight into their mechanisms. The ultimate motivation is to allow analysis and absolute quantification of trace amounts of ketones and other volatile organic compounds in air using selected ion flow-drift tube mass spectrometry, SIFDT-MS. The reactions of H3O+ with the ketone molecules, M, proceed via exothermic proton transfer producing MH+ ions, the collisional rate coefficients, k(c), for which can be calculated as a function of E-r and are seen to reduce by about one third over the E-r range from 0.05 eV up to 0.5 eV. The rate coefficients, k, and product ion distributions for the NO+ and O-2(+) reactions with M had to be obtained experimentally relative to the calculated k(c) for the H3O+ reactions. The product ions of the NO+/ketones reactions initially proceed via the formation of excited (NO+ M)* adduct ions that partially fragment, and the k reduces with E-r as much as four times for the acetone reactions but remains close to their respective k(c) for the higher-order ketones indicating long lifetimes of the (NO+ M)* ions with respect to the stabilising collision times with He atoms. The k for the O-2(+)/ketones dissociative charge transfer reactions are observed to be greater than their calculated kc implying that long distance electron transfer occurs.
机译:H3O +,No +和O-2(+)离子与同源系列六种脂族酮,Zetones,Zetones,Viz反应。丙酮通过2-辛酮,已经在氦缓冲选择离子流漂移管,SIFDT了研究,以揭示在离子 - 分子相互作用能量及其依赖性,E-R,以及增益洞察其机制。最终动机是使用所选离子流量漂移管质谱法,SiFDT-MS允许分析和绝对定量空气中的痕量酮和其他挥发性有机化合物。 H3O +与酮分子的反应,通过放热质子转移产生MH +离子,碰撞速率系数,K(C),可以根据ER的函数计算,并且被视为减少约三分之一ER的范围从0.05 ev高达0.5 eV。对于H3O +反应的计算的K(C),必须通过实验实验获得NO +和O-2(+)反应的速率系数,K和产物离子分布。 NO + /酮反应的产物离子最初通过形成敏化(NO + M)*加合离子的形成该部分片段,并且k与丙酮反应的多达4次减少,但仍然靠近它们各自的K( c)对于高阶酮,表明(NO + M)*离子的长寿相对于稳定的碰撞时间与他原子。为O-2(+)的K /酮解离的电荷转移反应被观察到大于它们的计算KC暗示长距离电子转移发生。

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