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Heuristics for chemical species identification in dense systems

机译:致密系统中化学物种鉴定的启发式

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摘要

A new approach to identify chemical species from molecular dynamics (MD) simulations of reacting materials under extreme temperatures and pressures is presented. The approach is based on bond-distance and vibrational criteria, derived from the examination of atomic behavior during a density functional theory MD simulation of an overdriven shock of the explosive pentaerythritol tetranitrate. For comparison, the trajectory was analyzed using popular bonding criteria commonly used in analysis of reactive MD simulations, including distance, distance-time, and bond-order criteria. Cluster analyses using the new time-dependent bond definition approach presented here and a bond-order approach revealed that species and their corresponding lifetimes were strongly dependent on the chosen approach, indicating significant implications for the development of chemical mechanisms and chemical kinetics models using the results of reactive MD simulations.
机译:提出了一种新方法,鉴定了极端温度和压力下反应材料的分子动力学(MD)模拟的化学品。 该方法基于债券 - 距离和振动标准,从密度函数理论MD模拟中源自爆炸季戊四醇四硝酸糖醇的过次冲击的模拟。 为了比较,使用常用于反应MD模拟的分析,包括距离,距离 - 时间和键合标准的流行粘合标准来分析轨迹。 使用此处提出的新时间依赖性债券定义方法和键合方法的聚类分析显示,物种及其相应的寿命强烈依赖于所选择的方法,表明使用结果对化学机制和化学动力学模型的开发显着影响 反应性MD模拟。

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