Fournier Joseph A, Wolke Conrad T, Johnson Christopher J, Johnson Mark A, Heine Nadja, Gewinner Sandy, Schöllkopf Wieland, Esser Tim K, Fagiani Matias R, Knorke Harald, Asmis Knut R
Sterling Chemistry Laboratory, Department of Chemistry, Yale University, New Haven, CT 06520;
Fritz-Haber-Institut der Max-Planck-Gesellschaft, D-14195 Berlin, Germany; and.
Proc Natl Acad Sci U S A. 2014 Dec 23;111(51):18132-7. doi: 10.1073/pnas.1420734111. Epub 2014 Dec 8.
Theoretical models of proton hydration with tens of water molecules indicate that the excess proton is embedded on the surface of clathrate-like cage structures with one or two water molecules in the interior. The evidence for these structures has been indirect, however, because the experimental spectra in the critical H-bonding region of the OH stretching vibrations have been too diffuse to provide band patterns that distinguish between candidate structures predicted theoretically. Here we exploit the slow cooling afforded by cryogenic ion trapping, along with isotopic substitution, to quench water clusters attached to the H3O(+) and Cs(+) ions into structures that yield well-resolved vibrational bands over the entire 215- to 3,800-cm(-1) range. The magic H3O(+)(H2O)20 cluster yields particularly clear spectral signatures that can, with the aid of ab initio predictions, be traced to specific classes of network sites in the predicted pentagonal dodecahedron H-bonded cage with the hydronium ion residing on the surface.
含有数十个水分子的质子水合作用理论模型表明,过量的质子嵌入在笼状结构的表面,内部有一两个水分子。然而,这些结构的证据一直是间接的,因为在OH伸缩振动的关键氢键区域的实验光谱过于弥散,无法提供区分理论预测的候选结构的能带模式。在这里,我们利用低温离子捕获提供的缓慢冷却以及同位素取代,将附着在H3O(+)和Cs(+)离子上的水团簇淬灭成在整个215至3800 cm(-1)范围内产生分辨率良好的振动带的结构。神奇的H3O(+)(H2O)20团簇产生了特别清晰的光谱特征,借助从头算预测,可以追溯到预测的五角十二面体氢键笼中特定类别的网络位点,水合氢离子位于表面。