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Isolating the Spectroscopic Signature of a Hydration Shell With the Use of Clusters: Superoxide Tetrahydrate

机译:使用簇分离水合壳的光谱特征:超氧化物四水合物

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Cluster spectroscopy, aided by ab initio theory, was used to determine the detailed structure of a complete hydration shell around an anion. Infrared spectra of size-selected O_2~-· (H_2O)_n (n = 1 to 4) cluster ions were obtained by photoevaporation of an argon nanomatrix. Four water molecules are required to complete the coordination shell. The simple spectrum of the tetrahydrate reveals a structure in which each water molecule is engaged in a single hydrogen bond to one of the four lobes of the π~* orbital of the superoxide, whereas the water molecules bind together in pairs. This illustrates how water networks deform upon accommodating a solute ion to create a distinct supramolecular species.
机译:从头算理论出发,采用丛集光谱法确定阴离子周围完整水合壳的详细结构。通过氩气纳米矩阵的光蒸发获得尺寸选定的O_2〜-·(H_2O)_n(n = 1至4)团簇离子的红外光谱。需要四个水分子来完成配位壳。四水合物的简单光谱揭示了一种结构,其中每个水分子通过一个氢键与超氧化物π〜*轨道的四个波瓣之一接合,而水分子成对结合。这说明了水网络在容纳溶质离子后如何变形以产生独特的超分子物种。

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