Ishiyama Tatsuya
Department of Applied Chemistry, Graduate School of Science and Engineering, University of Toyama, Toyama 930-8555, Japan.
J Chem Phys. 2021 Mar 14;154(10):104708. doi: 10.1063/5.0038709.
Nonequilibrium ab initio molecular dynamics (NE-AIMD) simulations are conducted at an air/water interface to elucidate the vibrational energy relaxation path of excited non-hydrogen-bonded (free) OH. A recent time-resolved vibrational sum frequency generation (TR-VSFG) spectroscopy experiment revealed that the relaxation time scales of free OH at the surface of pure water and isotopically diluted water are very similar to each other. In the present study, the dynamics of free OH excited at the surface of pure water and deuterated water are examined with an NE-AIMD simulation, which reproduces the experimentally observed features. The relaxation paths are examined by introducing constraints for the bonds and angles of water molecules relevant to specific vibrational modes in NE-AIMD simulations. In the case of free OH relaxation at the pure water surface, stretching vibrational coupling with the conjugate bond makes a significant contribution to the relaxation path. In the case of the isotopically diluted water surface, the bend (HOD)-stretching (OD) combination band couples with the free OH vibration, generating a relaxation rate similar to that in the pure water case. It is also found that the reorientation of the free OH bond contributes substantially to the relaxation of the free OH vibrational frequency component measured by TR-VSFG spectroscopy.
在空气/水界面进行非平衡从头算分子动力学(NE-AIMD)模拟,以阐明激发态非氢键合(游离)OH的振动能量弛豫路径。最近的时间分辨振动和频产生(TR-VSFG)光谱实验表明,纯水表面和同位素稀释水表面游离OH的弛豫时间尺度非常相似。在本研究中,利用NE-AIMD模拟研究了纯水和重水表面激发的游离OH的动力学,该模拟再现了实验观察到的特征。通过在NE-AIMD模拟中对与特定振动模式相关的水分子键和角度引入约束来研究弛豫路径。在纯水表面游离OH弛豫的情况下,与共轭键的拉伸振动耦合对弛豫路径有显著贡献。在同位素稀释水表面的情况下,弯曲(HOD)-拉伸(OD)组合带与游离OH振动耦合,产生与纯水情况相似的弛豫速率。还发现,游离OH键的重新取向对TR-VSFG光谱测量的游离OH振动频率分量的弛豫有很大贡献。