Unveiling subsurface hydrogen-bond structure of hexagonal water ice

Unveiling subsurface hydrogen-bond structure of hexagonal water ice
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DOI:
10.1103/physrevb.96.115405
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发表时间:
2017-09-05
期刊:
影响因子:
3.7
通讯作者:
Matsumoto, Yoshiyasu
Matsumoto, Yoshiyasu
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Otsuki, Yuji;Sugimoto, Toshiki;Matsumoto, Yoshiyasu

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The phase-resolved sum-frequency-generation (SFG) spectrum for the basal face of hexagonal ice is reported and is interpreted by molecular dynamics simulations combined with ab initio quantum calculations. Here, we demonstrate that the line shape of the SFG spectra of isotope-diluted OH chromophores is a sensitive indicator of structural rumpling uniquely emerging at the subsurface of hexagonal ice. In the outermost subsurface between the first (B1) and second (B2) bilayer, the hydrogen bond of O-B1-H center dot center dot center dot O-B2 is weaker than that of O-B1 center dot center dot center dot H-O-B2. This implies that subsurface O-O distance is laterally altered, depending on the direction of O-H bond along the surface normal: H-up or H-down, which is in stark contrast to bulk hydrogen bonds. This new finding uncovers how water molecules undercoordinated at the topmost surface influence on the subsurface structural rumpling associated with orientational frustration inherent in water ice.