IOM CNR Laboratorio TASC, I-34012 Trieste, Italy.
J Chem Phys. 2012 May 28;136(20):204302. doi: 10.1063/1.4720350.
The two-body dissociation reactions of the dication, C(2)H(2)(2+), produced by 39.0 eV double photoionization of acetylene molecules, have been studied by coupling photoelectron-photoion-photoion coincidence and ion imaging techniques. The results provide the kinetic energy and angular distributions of product ions. The analysis of the results indicates that the dissociation leading to C(2)H(+)+H(+) products occurs through a metastable dication with a lifetime of 108±22 ns, and a kinetic energy release (KER) distribution exhibiting a maximum at ∼4.3 eV with a full width at half maximum (FWHM) of about 60%. The reaction leading to CH(2)(+)+C(+) occurs in a time shorter than the typical rotational period of the acetylene molecules (of the order of 10(-12) s). The KER distribution of product ions for this reaction, exhibits a maximum at ∼4.5 eV with a FWHM of about 28%. The symmetric dissociation, leading to CH(+)+CH(+), exhibits a KER distribution with a maximum at ∼5.2 eV with a FWHM of 44%. For the first two reactions the angular distributions of ion products also indicate that the double photoionization of acetylene occurs when the neutral molecule is mainly oriented perpendicularly to the light polarization vector.
通过耦合光电离-光电子-双光子离子符合和离子成像技术,研究了由乙炔分子 39.0 eV 双光电离产生的二价阳离子 C(2)H(2)(2+)的双体离解反应。结果提供了产物离子的动能和角分布。结果分析表明,导致 C(2)H(+)+H(+)产物的离解通过具有 108±22 ns 寿命的亚稳态二价阳离子发生,动能释放(KER)分布在约 4.3 eV 处具有最大值,半最大值全宽(FWHM)约为 60%。导致 CH(2)(+)+C(+)的反应发生在比乙炔分子的典型旋转周期(约 10(-12) s)更短的时间内。对于该反应,产物离子的 KER 分布在约 4.5 eV 处具有最大值,FWHM 约为 28%。对称离解,导致 CH(+)+CH(+),表现出 KER 分布,最大值在约 5.2 eV 处,FWHM 为 44%。对于前两个反应,离子产物的角分布也表明,当中性分子主要垂直于光偏振矢量取向时,乙炔的双光电离发生。