首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >VUV photophysics of acetonitrile: Fragmentation, fluorescence and ionization in the 7-22 eV region
【24h】

VUV photophysics of acetonitrile: Fragmentation, fluorescence and ionization in the 7-22 eV region

机译:乙腈的VUV光物理:7-22 eV区域中的碎片,荧光和电离

获取原文
获取原文并翻译 | 示例
           

摘要

VUV induced photodissociation of gaseous acetonitrile was studied in the 7-22 eV range using synchrotron radiation excitation, photofragment fluorescence spectroscopy and photoion mass spectrometry (PIMS). CN(A-X), CN(B-X) and CH(A-X) emissions were observed. Their relative intensities were studied by fluorescence excitation (FEX) spectroscopy. The fluorescence quantum yield for CN(B-X) emission is of the order of 1.5%, whereas that of CN(A-X) is of the order of 0.5%, relatively independent of excitation wavelength in the 9-20 eV region. The CN FEX spectra follow quite closely the photoabsorption spectrum. The total photoionization quantum yield of CH3CN was measured up to 22 eV. The structures in the yield curve were related to photoabsorption features. The total photoionization quantum yield is about 0.5 at 13.131 eV, the energy of the first excited state of the ion; it reaches unity at about 21.3 eV. Dissociative reaction channels forming neutral products are discussed in detail. The results of this study and of an associated VUV absorption spectroscopy study of acetonitrile are used to discuss aspects of the interpretations of astrophysical observations of acetonitrile in the interstellar medium, comets and planetary atmospheres.
机译:VUV诱导的气态乙腈的光解离在7-22 eV范围内使用同步加速器辐射激发,光碎裂荧光光谱和光离子质谱(PIMS)进行了研究。观察到CN(A-X),CN(B-X)和CH(A-X)排放。通过荧光激发(FEX)光谱研究了它们的相对强度。 CN(B-X)发射的荧光量子产率约为1.5%,而CN(A-X)的荧光量子产率约为0.5%,相对独立于9-20 eV区域中的激发波长。 CN FEX光谱非常接近光吸收光谱。测量了高达22 eV的CH3CN的总光电离量子产率。产率曲线中的结构与光吸收特征有关。总的电离量子产率在13.131 eV时约为0.5,这是离子的第一激发态的能量;它在21.3 eV左右达到单位。详细讨论了形成中性产物的离解反应通道。这项研究的结果以及乙腈的相关VUV吸收光谱研究用于讨论星际介质,彗星和行星大气中乙腈的天体观测解释的各个方面。

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