首页> 外文期刊>Physical chemistry chemical physics: PCCP >Photoionization and dissociative photoionization of propynal in the gas phase: theory and experiment Electronic supplementary information (ESI) available. See DOI: 10.1039/c8cp06751a
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Photoionization and dissociative photoionization of propynal in the gas phase: theory and experiment Electronic supplementary information (ESI) available. See DOI: 10.1039/c8cp06751a

机译:气相中Propynal的光离子和解离光照化:理论与实验电子辅助信息(ESI)。 查看DOI:10.1039 / C8CP06751A

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摘要

Propynal (HCCCHO) is a complex organic compound (COM) of astrochemical and astrobiological interest. We present a combined theoretical and experimental investigation on the single photon ionization of gas-phase propynal, in the 10 to 15.75 eV energy range. Fragmentation pathways of the resulting cation were investigated both theoretically and experimentally. The adiabatic ionization energy (AIE) has been measured to be AIE(exp) = 10.715 +/- 0.005 eV using tunable VUV synchrotron radiation coupled with a double imaging photoelectron photoion coincidence (i(2)PEPICO) spectrometer. In the energy range under study, three fragments formed by dissociative photoionization were identified experimentally: HC3O+, HCO+ and C2H2+, and their respective appearance energies (AE) were found to be AE = 11.26 +/- 0.03, 13.4 +/- 0.3 and 11.15 +/- 0.03 eV, respectively. Using explicitly correlated coupled cluster calculations and after inclusion of the zero point vibrational energy, core-valence and scalar relativistic effects, the AIE is calculated to be AIE(calc) = 10.717 eV, in excellent agreement with the experimental finding. The appearance energies of the fragments were calculated using a similar methodological approach. To further interpret the observed vibrational structure, anharmonic frequencies were calculated for the fundamental electronic state of the propynal cation. Moreover, MRCI calculations were carried out to understand the population of excited states of the cationic species. This combined experimental and theoretical study will help to understand the presence and chemical evolution of propynal in the external parts of interstellar clouds where it has been observed.
机译:ProPynal(HCCCHO)是一系列复合体化合物(COM)的天体化学和天体学兴趣。我们对10至15.75 eV能量范围内的气相Propynal的单光子电离进行了一种综合理论和实验研究。理论上和实验研究所得阳离子的碎片途径。使用可调谐的VUV同步辐射耦合的可调谐VUV同步辐射耦合(I(2)Pepico)光谱仪,被测量为AIE(exp)= 10.715 +/- 0.005eV。在研究的能量范围中,通过实验鉴定了通过离灭的光相形成的三个片段:HC3O +,HCO +和C2H2 +,它们各自的外观能量(AE)被发现为AE = 11.26 +/- 0.03,13.4 +/- 0.3和11.15 +/- 0.03eV分别。使用明确相关的耦合簇计算和在包含零点振动能量,核心价和标量相对论效应之后,AIE计算为AIE(CAPC)= 10.717eV,与实验发现很好。使用类似的方法方法计算片段的外观能量。为了进一步解释观察到的振动结构,针对ProPynal阳离子的基本电子状态计算了Anharmonic频率。此外,对MRCI计算进行了解阳离子物种的兴奋状态。这种合并的实验和理论研究将有助于了解在观察到的星际云的外部部分中Propynal的存在和化学演进。

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    Sorbonne Univ MONARIS UMR 8233 CNRS 4 Pl Jussieu F-75252 Paris 5 France;

    Synchrotron SOLEIL F-91192 Gif Sur Yvette France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle MSME UMR 8208 CNRS 5 Bd Descartes F-77454 Marne La Vallee France;

    Univ Paris Est Creteil LISA UMR CNRS 7583 61 Ave Gen Gaulle F-94010 Creteil France;

    Univ Paris Est Creteil LISA UMR CNRS 7583 61 Ave Gen Gaulle F-94010 Creteil France;

    Univ Rennes Ecole Natl Super Chim Rennes CNRS ISCR UMR6226 F-35000 Rennes France;

    Univ Paris Est Lab Modelisat &

    Simulat Multi Echelle MSME UMR 8208 CNRS 5 Bd Descartes F-77454 Marne La Vallee France;

    Sorbonne Univ MONARIS UMR 8233 CNRS 4 Pl Jussieu F-75252 Paris 5 France;

    Sorbonne Univ MONARIS UMR 8233 CNRS 4 Pl Jussieu F-75252 Paris 5 France;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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