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RO-NO₂键断裂的电子结构与分子动力学

Electronic structure and molecular dynamics of breaking the RO-NO2 bond.

作者信息

Schweigert Igor V, Dunlap Brett I

机构信息

Code 6189, Theoretical Chemistry Section, US Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, DC 20375, USA.

出版信息

J Chem Phys. 2009 Jun 28;130(24):244110. doi: 10.1063/1.3155081.

Abstract

Decomposition of energetic molecules such as pentaerythritol tetranitrate is accompanied by extensive changes in their electronic configuration and thus is challenging for ab initio Born-Oppenheimer molecular dynamics simulations. The performance of single-determinant methods (in particular, density-functional theory) is validated on electronic structure and molecular dynamics simulations of RO-NO(2) bond dissociation in a smaller nitric ester, ethyl nitrate. Accurate description of dissociating molecule requires using unrestricted, spin-symmetry-broken orbitals. However, the iterative self-consistent field procedure is prone to convergence failures in the bond-breaking region even if robust convergence algorithms are employed. As a result, molecular dynamics simulations of unimolecular decomposition need to be closely monitored and manually restarted to ensure seamless transition from the closed-shell to open-shell configuration.

摘要

诸如季戊四醇四硝酸酯等高能分子的分解伴随着其电子构型的广泛变化,因此对于从头算玻恩-奥本海默分子动力学模拟来说具有挑战性。单行列式方法(特别是密度泛函理论)的性能在较小的硝酸酯硝酸乙酯中RO-NO(2)键解离的电子结构和分子动力学模拟中得到了验证。对解离分子的准确描述需要使用无限制的、自旋对称破缺的轨道。然而,即使采用了稳健的收敛算法,迭代自洽场程序在断键区域仍容易出现收敛失败。因此,单分子分解的分子动力学模拟需要密切监测并手动重新启动,以确保从闭壳层构型到开壳层构型的无缝过渡。

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