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Grand Canonical ReaxFF Molecular Dynamics Simulations for Catalytic Reactions

机译:催化反应的大规范Reaxff分子动力学模拟

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In order to study the time-dependent behavior of catalytic systems during operation, we have developed a grand canonical molecular dynamics approach based on the ReaxFF reactive force-field framework. After describing the details of the implementation, the capabilities of this method are demonstrated by studying the gas-phase water formation from oxygen and hydrogen on platinum catalysts during the steady state where we discuss the effects of the surface structure as well as the importance of kinetics. The approach presented here can be extended to other dynamic (catalytic) systems, providing a framework for exploring catalytic and electrocatalytic processes, in particular, allowing studies on the effects of reaction conditions on a system’s behavior, characteristics, and stability.
机译:为了研究催化系统在操作过程中的时间依赖性行为,我们开发了一种基于Reaxff反应力场框架的大规范分子动力学方法。 在描述实施的细节之后,通过在稳定状态期间通过研究铂催化剂对铂催化剂的氧气和氢气的气相水形成来证明该方法的能力。在稳定状态下,我们讨论了表面结构的影响以及动力学的重要性 。 此处呈现的方法可以扩展到其他动态(催化)系统,提供了一种用于探索催化和电催化过程的框架,特别是允许研究反应条件对系统行为,特征和稳定性的影响。

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