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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Cold cluster snapshots of the Grotthuss proton relay mechanism in water
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APS -APS March Meeting 2017 - Event - Cold cluster snapshots of the Grotthuss proton relay mechanism in water

机译:APS -APS 2017年3月会议-事件-水中Grotthuss质子中继机制的冷群快照

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The Grotthuss mechanism explains the anomalously high proton mobility in water as a sequence of proton transfers along a hydrogen-bonded network. However, the vibrational spectroscopic signatures of this process are masked by the diffuse nature of the key bands in bulk water. Here we report how the much simpler vibrational spectra of cold, composition-selected heavy water clusters, D$^{mathrm{+}}$(D$_{mathrm{2}}$O)$_{n}$, can be exploited to capture clear markers that encode the collective reaction coordinate along the proton transfer event. By complexing the solvated hydronium ``Eigen'' cluster, D$_{mathrm{3}}$O$^{mathrm{+}}$(D$_{mathrm{2}}$O)$_{mathrm{3}}$, with increasingly strong H-bond acceptor molecules (H$_{mathrm{2}}$, N$_{mathrm{2}}$, CO, H$_{mathrm{2}}$O), we are able to track the frequency of every O-D stretch in the complex as the transferring hydron is incrementally pulled from the central hydronium to a neighboring water molecule.
机译:格罗特斯机制解释了质子在水中异常高的质子迁移率,因为质子沿着氢键网络转移。但是,此过程的振动光谱特征被关键条带在散装水中的扩散性质所掩盖。在这里,我们报告了冷的,由成分选择的重水团簇D $ ^ {mathrm {+}} $(D $ _ {mathrm {2}} $ O)$ _ {n} $的简单得多的振动光谱利用它捕获质子转移事件中编码集体反应坐标的清晰标记。通过复合溶剂化水合氢的``本征''簇,D $ _ {mathrm {3}} $ O $ ^ {mathrm {+}} $(D $ _ {mathrm {2}} $ O)$ _ {mathrm { 3}} $,具有越来越强的H键受体分子(H $ _ {mathrm {2}} $,N $ _ {mathrm {2}} $,CO,H $ _ {mathrm {2}} $ O) ,我们可以跟踪复合物中每个OD延伸的频率,因为转移水合物从中央水合物层逐渐拉至相邻的水分子。

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