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应该使用哪种密度泛函来描述质子化水团簇?

Which Density Functional Should Be Used to Describe Protonated Water Clusters?

作者信息

Shi Ruili, Huang Xiaoming, Su Yan, Lu Hai-Gang, Li Si-Dian, Tang Lingli, Zhao Jijun

机构信息

Key Laboratory of Materials Modification by Laser, Ion and Electron Beams, Dalian University of Technology, Ministry of Education , Dalian, 116024, China.

School of Ocean Science and Technology, Dalian University of Technology , Panjin Campus, Panjin, 124221, China.

出版信息

J Phys Chem A. 2017 Apr 27;121(16):3117-3127. doi: 10.1021/acs.jpca.7b00058. Epub 2017 Apr 14.

Abstract

Protonated water cluster is one of the most important hydrogen-bond network systems. Finding an appropriate DFT method to study the properties of protonated water clusters can substantially improve the economy in computational resources without sacrificing the accuracy compared to high-level methods. Using high-level MP2 and CCSD(T) methods as well as experimental results as benchmark, we systematically examined the effect of seven exchange-correlation GGA functionals (with BLYP, B3LYP, X3LYP, PBE0, PBE1W, M05-2X, and B97-D parametrizations) in describing the geometric parameters, interaction energies, dipole moments, and vibrational properties of protonated water clusters H(HO). The overall performance of all these functionals is acceptable, and each of them has its advantage in certain aspects. X3LYP is the best to describe the interaction energies, and PBE0 and M05-2X are also recommended to investigate interaction energies. PBE0 gives the best anharmonic frequencies, followed by PBE1W, B97-D and BLYP methods. PBE1W, B3LYP, B97-D, and X3LYP can yield better geometries. The capability of B97-D to distinguish the relative energies between isomers is the best among all the seven methods, followed by M05-2X and PBE0.

摘要

质子化水团簇是最重要的氢键网络系统之一。与高级方法相比,找到一种合适的密度泛函理论(DFT)方法来研究质子化水团簇的性质可以在不牺牲准确性的情况下大幅提高计算资源的经济性。以高级的MP2和CCSD(T)方法以及实验结果作为基准,我们系统地研究了七种交换相关广义梯度近似(GGA)泛函(分别采用BLYP、B3LYP、X3LYP、PBE0、PBE1W、M05 - 2X和B97 - D参数化)在描述质子化水团簇H(HO)的几何参数、相互作用能、偶极矩和振动性质方面的效果。所有这些泛函的整体表现都是可以接受的,并且它们各自在某些方面都有优势。X3LYP在描述相互作用能方面表现最佳,PBE0和M05 - 2X也推荐用于研究相互作用能。PBE0给出的非谐频率最佳,其次是PBE1W、B97 - D和BLYP方法。PBE1W、B3LYP、B97 - D和X3LYP能够给出更好的几何结构。在所有七种方法中,B97 - D区分异构体之间相对能量的能力最强,其次是M05 - 2X和PBE0。

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