Department of Chemistry, Trent University, Peterborough, ON, Canada K9J 7B8.
J Mass Spectrom. 2011 Apr;46(4):344-51. doi: 10.1002/jms.1898.
FTIR spectra have been obtained for matrices formed following electron bombardment of gas mixtures containing varying amounts of vinyl fluoride (VF) in Ar (1:400 to 1:25,600; VF/Ar). The major matrix-isolated products are a π-complex of HF/C(2)H(2) , fluoroacetylene (HC≡CF) and two isomers of C(2)H(2)F(•). These products correspond well with the products of photoionization of VF near 15.8 eV. These observations support the dominant mechanism of ionization in the EB-MI environment as charge transfer of the substrate molecule to Ar(•+). Some differences are noted between the observed EB-MI products and the results from PEPICO studies, primarily in that the EB-MI products are observed as neutralized forms. The close correlation in EB-MI and photoionization results allows the EB-MI technique to be utilized as an ion structural analysis tool in complement to PEPICO studies, and allows the use of PEPICO studies to help predict and elucidate high-pressure chemistry mechanisms through EB-MI studies. The differences in the EB-MI results and ions observed using the PEPICO technique are rationalized in terms of the differences in the experimental techniques. Using VF as the test system, reagent partial pressure conditions that best complement PEPICO studies are determined. Although the major results are observed for all VF partial pressures, dilute samples give rise to further ionization of the primary products, and more concentrated samples give rise to radical-radical reaction chemistry. As a result, a nominal range of 1:3200 (VF/Ar) is demonstrated to provide the best correlation with the gas-phase PEPICO measurements.
FTIR 光谱已经获得了含有不同量的乙烯基氟(VF)的气体混合物在 Ar(1:400 至 1:25600;VF/Ar)中经电子束轰击形成的基质的光谱。主要的基质隔离产物是 HF/C(2)H(2)的π-络合物、氟乙炔(HC≡CF)和 C(2)H(2)F(•)的两种异构体。这些产物与 VF 在 15.8 eV 附近的光致电离产物非常吻合。这些观察结果支持了在 EB-MI 环境中电离的主要机制是基质分子向 Ar(•+)的电荷转移。在观察到的 EB-MI 产物和 PEPICO 研究的结果之间注意到一些差异,主要是 EB-MI 产物被观察为中性形式。EB-MI 和光致电离结果之间的密切相关性允许 EB-MI 技术作为 PEPICO 研究的补充,用作离子结构分析工具,并允许使用 PEPICO 研究通过 EB-MI 研究来帮助预测和阐明高压化学机制。EB-MI 结果和使用 PEPICO 技术观察到的离子之间的差异可以根据实验技术的差异来解释。使用 VF 作为测试系统,确定了最能补充 PEPICO 研究的试剂分压条件。尽管观察到了所有 VF 分压的主要结果,但稀释样品会导致主要产物的进一步电离,而更浓缩的样品会导致自由基-自由基反应化学。因此,证明了名义范围为 1:3200(VF/Ar)与气相 PEPICO 测量具有最佳相关性。