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使用从头算、模型势和偶极矩表面对液态水红外光谱进行量子计算并与实验结果比较。

Quantum calculations of the IR spectrum of liquid water using ab initio and model potential and dipole moment surfaces and comparison with experiment.

作者信息

Liu Hanchao, Wang Yimin, Bowman Joel M

机构信息

Cherry L. Emerson Center for Scientific Computation and Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Chem Phys. 2015 May 21;142(19):194502. doi: 10.1063/1.4921045.

Abstract

The calculation and characterization of the IR spectrum of liquid water have remained a challenge for theory. In this paper, we address this challenge using a combination of ab initio approaches, namely, a quantum treatment of IR spectrum using the ab initio WHBB water potential energy surface and a refined ab initio dipole moment surface. The quantum treatment is based on the embedded local monomer method, in which the three intramolecular modes of each embedded H2O monomer are fully coupled and also coupled singly to each of six intermolecular modes. The new dipole moment surface consists of a previous spectroscopically accurate 1-body dipole moment surface and a newly fitted ab initio intrinsic 2-body dipole moment. A detailed analysis of the new dipole moment surface in terms of the coordinate dependence of the effective atomic charges is done along with tests of it for the water dimer and prism hexamer double-harmonic spectra against direct ab initio calculations. The liquid configurations are taken from previous molecular dynamics calculations of Skinner and co-workers, using the TIP4P plus E3B rigid monomer water potential. The IR spectrum of water at 300 K in the range of 0-4000 cm(-1) is calculated and compared with experiment, using the ab initio WHBB potential and new ab initio dipole moment, the q-TIP4P/F potential, which has a fixed-charged description of the dipole moment, and the TTM3-F potential and dipole moment surfaces. The newly calculated ab initio spectrum is in very good agreement with experiment throughout the above spectral range, both in band positions and intensities. This contrasts to results with the other potentials and dipole moments, especially the fixed-charge q-TIP4P/F model, which gives unrealistic intensities. The calculated ab initio spectrum is analyzed by examining the contribution of various transitions to each band.

摘要

液态水红外光谱的计算与表征一直是理论上的一个挑战。在本文中,我们采用从头算方法的组合来应对这一挑战,即使用从头算的WHBB水势能面和改进的从头算偶极矩面进行红外光谱的量子处理。量子处理基于嵌入式局域单体方法,其中每个嵌入式H₂O单体的三个分子内模式完全耦合,并且还分别与六个分子间模式中的每一个耦合。新的偶极矩面由先前光谱精确的单体偶极矩面和新拟合的从头算固有二体偶极矩组成。我们根据有效原子电荷的坐标依赖性对新的偶极矩面进行了详细分析,并针对水二聚体和棱柱六聚体双谐波光谱,将其与直接从头算计算进行了对比测试。液态构型取自Skinner及其同事先前使用TIP4P + E3B刚性单体水势进行的分子动力学计算。使用从头算的WHBB势和新的从头算偶极矩、具有固定电荷偶极矩描述的q-TIP4P/F势以及TTM3-F势和偶极矩面,计算了300 K下水在0 - 4000 cm⁻¹范围内的红外光谱,并与实验进行了比较。新计算的从头算光谱在上述整个光谱范围内,无论是谱带位置还是强度,都与实验非常吻合。这与使用其他势和偶极矩的结果形成对比,特别是固定电荷的q-TIP4P/F模型,它给出了不切实际的强度。通过检查各种跃迁对每个谱带的贡献,对计算得到的从头算光谱进行了分析。

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