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基于压缩态多态对密度泛函理论的O+O体系超热碰撞全局势能面

Global Potential Energy Surfaces by Compressed-State Multistate Pair-Density Functional Theory for Hyperthermal Collisions in the O+O System.

作者信息

Jiang Jie, Yang Jiawei, Hong Qizhen, Sun Quanhua, Li Jun

机构信息

School of Chemistry and Chemical Engineering & Chongqing Key Laboratory of Chemical Theory and Mechanism, Chongqing University, Chongqing, 401331, China.

State Key Laboratory of High Temperature Gas Dynamics, Institute of Mechanics, Chinese Academy of Sciences, 100190, Beijing, China.

出版信息

Chemphyschem. 2024 Jun 17;25(12):e202400078. doi: 10.1002/cphc.202400078. Epub 2024 Apr 26.

DOI:10.1002/cphc.202400078
PMID:38526528
Abstract

Interactions between oxygen molecules play an important role in atmospheric chemistry and hypersonic flow chemistry in atmospheric entries. Recently, high-quality ab initio potential energy surface (PES) of the quintet O was reported by Paukku et al. [J. Chem. Phys. 147, 034301 (2017)]. 10543 configurations were sampled and calculated at the level of MS-CASPT2/maug-cc-pVTZ with scaled external correlation. The PES was fitted to a many-body (MB) form with the many-body part described by the permutationally invariant polynomial approach (MB-PIP). In this work, the PIP-Neural Network (PIP-NN) and MB-PIP-NN methods were used to refit the PES based on the same data by Paukku et al. Three PESs were compared. It was found that the performances differ significantly in the O+O region as well as in the long-range region. Therefore, additional 1300 points were sampled, and the efficient compressed-state multistate pair-density functional theory (CMS-PDFT) was used to calculate the electronic structure of these 1300 points and 10543 points by Paukku et al. Then, a completely new quintet PES was fitted using the MB-PIP-NN method. Based on this PES, the quasi-classical trajectory (QCT) approach was used to reveal all possible reaction channels for hyperthermal O-O collisions.

摘要

氧分子之间的相互作用在大气化学以及大气进入过程中的高超声速流动化学中起着重要作用。最近,Paukku等人报道了五重态氧的高质量从头算势能面(PES)[《化学物理杂志》147, 034301 (2017)]。在具有标度外部相关性的MS-CASPT2/maug-cc-pVTZ水平上对10543个构型进行了采样和计算。该势能面被拟合为多体(MB)形式,其中多体部分由置换不变多项式方法(MB-PIP)描述。在这项工作中,基于Paukku等人的相同数据,使用PIP神经网络(PIP-NN)和MB-PIP-NN方法对势能面进行重新拟合。比较了三个势能面。发现在O + O区域以及长程区域中性能存在显著差异。因此,额外采样了1300个点,并使用高效压缩态多态对密度泛函理论(CMS-PDFT)来计算这1300个点以及Paukku等人的10543个点的电子结构。然后,使用MB-PIP-NN方法拟合了一个全新的五重态势能面。基于这个势能面,采用准经典轨迹(QCT)方法来揭示超热O - O碰撞的所有可能反应通道。

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