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电场下水的从头算光谱。

Ab initio spectroscopy of water under electric fields.

机构信息

Institute of Biophysics of the Czech Academy of Sciences, Královopolská 135, 61265 Brno, Czech Republic.

出版信息

Phys Chem Chem Phys. 2019 Oct 2;21(38):21205-21212. doi: 10.1039/c9cp03101d.

Abstract

Whereas a broad range of literature exists on the spectroscopy of water in disparate conditions, infrared (IR) and Raman spectra of water subjected to electric fields have never extensively been investigated so far. Based on ab initio molecular dynamics simulations, here we present IR and Raman spectra of bulk liquid water under the effect of static electric fields. A contraction of the entire frequency range is recorded upon increasing the field intensity both in the IR and in the Raman spectra. Whilst the OH stretching band is progressively shifted toward lower frequencies - indicating a field-induced strengthening of the H-bond network - all the other bands are up-shifted by the field. Furthermore, an evident modification of the librational mode band appears in all the spectra. Finally, the order-maker action of the field emerges also from the increase of the water orientational tetrahedral order. Upon field exposure, the water structure becomes more "ice like".

摘要

尽管存在大量关于不同条件下水的光谱学的文献,但迄今为止,电场作用下水的红外(IR)和拉曼(Raman)光谱还从未被广泛研究过。基于从头算分子动力学模拟,我们在此展示了在静态电场作用下的块状液态水的 IR 和 Raman 光谱。在 IR 和 Raman 光谱中,随着场强的增加,整个频率范围都被记录下来。尽管 OH 伸缩带逐渐向低频移动 - 表明氢键网络受到场的增强 - 但所有其他谱带都被场向上移动。此外,所有光谱中都出现了明显的旋转模式带的变化。最后,场的有序作用也体现在水的取向四面体有序度的增加上。在电场暴露下,水结构变得更“类冰”。

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