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首页> 外文期刊>The Journal of Chemical Physics >Elastic differential cross sections for C_4F_6 isomers in the 1.5–200 eV energy electron impact: Similarities with six fluorine containing molecules and evidence of F-atom like scattering
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Elastic differential cross sections for C_4F_6 isomers in the 1.5–200 eV energy electron impact: Similarities with six fluorine containing molecules and evidence of F-atom like scattering

机译:1.5_200 eV能量电子碰撞中C_4F_6异构体的弹性微分截面:与六个含氟分子的相似性以及类似F原子的散射证据

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摘要

We report absolute elastic differential cross sections for electron interactions with the C_4F_6 isomers, hexafluoro-1,3-butadiene (1,3-C_4F_6), hexafluoro-2-butyne (2-C_4F_6), and hexafluorocyclobutene (c-C_4F_6). The incident electron energy range is 1.5–200 eV, and the scattered electron angular range for the differential measurements varies from 15? to 150?. In all cases the absolute scale of the differential cross section was set using the relative flow technique, with helium as the reference species. Atomic-like behaviour in these scattering systems is shown here for the first time, and is further investigated by comparing the elastic cross sections for the C_4F_6 isomers with other fluorinated molecules, such as SF6 and CnF6 (n = 2, 3, and 6). We note that for all the six-F containing molecules, the scattering process for electron energies above 30 eV is indistinguishable. Finally, we report results for calculations of elastic differential cross sections for electron scattering from each of these isomers, within an optical potential method and assuming a screened corrected independent atom representation. The level of agreement between these calculations and our measurements is found to be quite remarkable in all cases.
机译:我们报告了与C_4F_6异构体,六氟-1,3-丁二烯(1,3-C_4F_6),六氟-2-丁炔(2-C_4F_6)和六氟环丁烯(c-C_4F_6)相互作用的电子的绝对弹性微分截面。入射电子能量范围为1.5–200 eV,用于差分测量的散射电子角范围为15?V。到150?在所有情况下,均使用相对流动技术(以氦气为参考物种)设置微分截面的绝对比例。这些散射系统中的原子状行为首次显示,并通过比较C_4F_6异构体与其他氟化分子(例如SF6和CnF6(n = 2、3和6))的弹性截面来进一步研究。我们注意到,对于所有含6 F的分子,电子能量在30 eV以上的散射过程是无法区分的。最后,我们报告了在光势方法中并假设经过筛选的校正独立原子表示形式,计算了这些异构体中每种异构体的电子散射的弹性微分截面的计算结果。在所有情况下,这些计算与我们的测量之间的一致性水平非常高。

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