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How Do Small Water Clusters Bind an Excess Electron?

机译:小水团如何结合多余的电子?

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The arrangement of water molecules around a hydrated electron has eluded explanation for more than 40 years. Here we report sharp vibrational bands for small gas-phase water cluster anions, (H_2O)_(4-6)~- and (D_2O)_(4-6)~-. Analysis of these bands reveals a detailed picture of the diffuse electron-binding site. The electron is closely associated with a single water molecule attached to the supporting network through a double H-bond acceptor motif. The local OH stretching bands of this molecule are dramatically distorted in the pentamer and smaller clusters because the excited vibrational levels are strongly coupled to the electron continuum. The vibration-to-electronic energy transfer rates, as revealed by line shape analysis, are mode-specific and remarkably fast, with the symmetric stretching mode surviving for less than 10 vibrational periods [50 fs in (H_2O)_4~-].
机译:围绕水合电子的水分子排列已有40多年的历史了。在这里,我们报告了较小的气相水簇阴离子(H_2O)_(4-6)〜-和(D_2O)_(4-6)〜-的尖锐振动带。对这些谱带的分析揭示了扩散电子结合位点的详细情况。电子与通过双H键受体基序连接到支持网络的单个水分子紧密相关。该分子的局部OH拉伸带在五聚体和更小的簇中显着变形,因为激发的振动能级与电子连续体紧密耦合。线形分析表明,振动到电子的能量传递速率是特定于模式的,并且速度非常快,对称拉伸模式在不到10个振动周期([H_2O] _4〜-]中为50 fs的时间内存活下来。

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