Jaksch S, Mauracher A, Bacher A, Denifl S, da Silva F Ferreira, Schöbel H, Echt O, Märk T D, Probst M, Bohme D K, Scheier P
Institut für Ionenphysik und Angewandte Physik, Leopold Franzens Universität, Technikerstr. 25, A-6020 Innsbruck, Austria.
J Chem Phys. 2008 Dec 14;129(22):224306. doi: 10.1063/1.3035833.
Neutral hydrogen clusters are grown in ultracold helium nanodroplets by successive pickup of hydrogen molecules. Even-numbered hydrogen cluster cations are observed upon electron-impact ionization with and without attached helium atoms and in addition to the familiar odd-numbered H(n)(+). The helium matrix affects the fragmentation dynamics that usually lead to the formation of overwhelmingly odd-numbered H(n)(+). The use of high-resolution mass spectrometry allows the unambiguous identification of even-numbered H(n)(+) up to n approximately = 120 by their mass excess that distinguishes them from He(n)(+), mixed He(m)H(n)(+), and background ions. The large range in size of these hydrogen cluster ions is unprecedented, as is the accuracy of their definition. Apart from the previously observed magic number n=6, pronounced drops in the abundance of even-numbered cluster ions are seen at n=30 and 114, which suggest icosahedral shell closures at H(6)(+)(H(2))(12) and H(6)(+)(H(2))(54). Possible isomers of H(6)(+) are identified at the quadratic configuration interaction with inclusion of single and double excitations (QCISD)/aug-cc-pVTZ level of theory.
通过连续捕获氢分子,在超冷氦纳米液滴中生长中性氢簇。在有或没有附着氦原子的情况下进行电子碰撞电离时,除了常见的奇数H(n)(+)之外,还观察到了偶数氢簇阳离子。氦基质影响通常导致绝大多数奇数H(n)(+)形成的碎片化动力学。使用高分辨率质谱法,可以通过其质量过剩明确识别出n约等于120的偶数H(n)(+),这将它们与He(n)(+)、混合的He(m)H(n)(+)和背景离子区分开来。这些氢簇离子的尺寸范围之大是前所未有的,其定义的准确性也是如此。除了先前观察到的幻数n = 6之外,在n = 30和114处还观察到偶数簇离子丰度明显下降,这表明在H(6)(+)(H(2))(12)和H(6)(+)(H(2))(54)处存在二十面体壳层闭合。在包含单重和双重激发的二次组态相互作用(QCISD)/aug-cc-pVTZ理论水平上,确定了H(6)(+)的可能异构体。