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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Experimentally probing the libration of interfacial water: the rotational potential of water is stiffer at the air/water interface than in bulk liquid
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Experimentally probing the libration of interfacial water: the rotational potential of water is stiffer at the air/water interface than in bulk liquid

机译:通过实验探测界面水的释放:水在空气/水界面的旋转势比散装液体的旋转势更强

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摘要

Most properties of liquid water are determined by its hydrogen-bond network. Because forming an aqueous interface requires termination of this network, one might expect the molecular level properties of interfacial water to markedly differ from water in bulk. Intriguingly, much prior experimental and theoretical work has found that, from the perspective of their time-averaged structure and picosecond structural dynamics, hydrogen-bonded OH groups at an air/water interface behave the same as hydrogen-bonded OH groups in bulk liquid water. Here we report the first experimental observation of interfacial water's libration (i.e. frustrated rotation) using the laser-based technique vibrational sum frequency spectroscopy. We find this mode has a frequency of 834 cm(-1), approximate to 165 cm(-1) higher than in bulk liquid water at the same temperature and similar to bulk ice. Because libration frequency is proportional to the stiffness of water's rotational potential, this increase suggests that one effect of terminating bulk water's hydrogen bonding network at the air/water interface is retarding rotation of water around intact hydrogen bonds. Because in bulk liquid water the libration plays a key role in stabilizing reaction intermediates and dissipating excess vibrational energy, we expect the ability to probe this mode in interfacial water to open new perspectives on the kinetics of heterogeneous reactions at aqueous interfaces.
机译:液态水的大多数特性取决于其氢键网络。因为形成水界面需要终止该网络,所以人们可能希望界面水的分子水平性质与散装水明显不同。有趣的是,许多先前的实验和理论研究发现,从时间平均结构和皮秒结构动力学的角度来看,空气/水界面处的氢键羟基与散装液态水中的氢键羟基相同。 。在这里,我们报告了使用基于激光的技术振动总和频率光谱法对界面水释放(即受阻旋转)的首次实验观察。我们发现此模式的频率为834 cm(-1),比在相同温度下类似于散装冰块的散装液态水中的频率大约高165 cm(-1)。因为释放频率与水的旋转势的刚度成正比,所以这种增加表明在空气/水界面处终止散装水的氢键网络的一种作用是阻止水围绕完整氢键的旋转。因为在散装液态水中,游离在稳定反应中间体和消散多余的振动能量方面起着关键作用,所以我们希望能够在界面水中探测这种模式,从而为水界面非均相反应动力学开辟新的视角。

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