Kollotzek Siegfried, Izadi Farhad, Meyer Miriam, Bergmeister Stefan, Zappa Fabio, Denifl Stephan, Echt Olof, Scheier Paul, Gruber Elisabeth
Institut für Ionenphysik und Angewandte Physik, Universität Innsbruck, A-6020 Innsbruck, Austria.
Department of Physics, University of New Hampshire, Durham, NH 03824, USA.
Phys Chem Chem Phys. 2022 May 18;24(19):11662-11667. doi: 10.1039/d2cp00991a.
It has been debated for years if the polycyclic aromatic hydrocarbon phenanthrene exists in its anionic form, or, in other words, if its electron affinity (EA) is positive or negative. In this contribution we confirm that the bare phenanthrene anion Ph created in a binary collision with an electron at room temperature has a lifetime shorter than microseconds. However, the embedding of neutral phenanthrene molecules in negatively charged helium nanodroplets enables the formation of phenanthrene anions by charge transfer processes and the stabilization of the latter in the ultracold environment. Gentle shrinking of the helium matrix of phenanthrene-doped HNDs by collisions with helium gas makes the bare Ph visible by high-resolution mass spectrometry. From these and previous measurements we conclude, that the EA of phenanthrene is positive and smaller than 24.55 meV.
多年来,关于多环芳烃菲是否以阴离子形式存在,或者换句话说,其电子亲和能(EA)是正还是负,一直存在争议。在本论文中,我们证实了在室温下与电子发生二元碰撞产生的裸菲阴离子Ph的寿命短于微秒。然而,将中性菲分子嵌入带负电荷的氦纳米液滴中,能够通过电荷转移过程形成菲阴离子,并使其在超冷环境中稳定下来。通过与氦气碰撞使掺杂菲的HNDs的氦基质缓慢收缩,使得裸Ph能够通过高分辨率质谱检测到。从这些以及之前的测量结果我们得出结论,菲的电子亲和能为正且小于24.55毫电子伏特。