Department of Chemistry-Ångström, Uppsala University, Box 538, Uppsala, SE-75121, Sweden.
Phys Chem Chem Phys. 2018 May 9;20(18):12678-12687. doi: 10.1039/c8cp00741a.
We analyse the OH vibrational signatures of 56 structurally unique water molecules and 34 structurally unique hydroxide ions in thin water films on MgO(001) and CaO(001), using DFT-generated anharmonic potential energy surfaces. We find that the OH stretching frequencies of intact water molecules on the surface are always downshifted with respect to the gas-phase species while the OH- groups are either upshifted or downshifted. Despite these differences, the main characteristics of the frequency shifts for all three types of surface OH groups (OHw, OsH and OHf) can be accounted for by one unified expression involving the in situ electric field from the surrounding environment, and the gas-phase molecular properties of the vibrating species (H2O or OH-). The origin behind the different red- and blueshift behaviour can be traced back to the fact that the molecular dipole moment of a gas-phase water molecule increases when an OH bond is stretched, but the opposite is true for the hydroxide ion. We propose that familiarity with the relations presented here will help surface scientists in the interpretation of vibrational OH spectra for thin water films on ionic crystal surfaces.
我们使用 DFT 生成的非谐势能表面,分析了 MgO(001) 和 CaO(001) 表面上水膜中 56 个结构独特的水分子和 34 个结构独特的氢氧根离子的 OH 振动特征。我们发现,表面上水分子的 OH 伸缩频率总是相对于气相物种向下移动,而 OH-基团则向上或向下移动。尽管存在这些差异,但所有三种类型的表面 OH 基团(OHw、OsH 和 OHf)的频率移动的主要特征都可以用一个统一的表达式来解释,该表达式涉及周围环境的局部电场以及振动物种(H2O 或 OH-)的气相分子性质。导致红移和蓝移不同行为的原因可以追溯到这样一个事实,即当 OH 键拉伸时,气相水分子的分子偶极矩会增加,但对于氢氧根离子则相反。我们提出,熟悉这里呈现的关系将有助于表面科学家解释离子晶体表面上水膜的振动 OH 光谱。