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首页> 外文期刊>Computational Materials Science >Quantum Mechanics/Molecular Mechanics (QM/MM) applied to tribology: Real-time monitoring of tribochemical reactions of water at graphene edges
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Quantum Mechanics/Molecular Mechanics (QM/MM) applied to tribology: Real-time monitoring of tribochemical reactions of water at graphene edges

机译:量子力学/分子力学(QM / mm)适用于摩擦学:石墨烯边缘水的实时监测水域的水平反应

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摘要

Tribological phenomena, such as wear and boundary lubrication, are deeply influenced by tribochemical reactions, i.e., chemical reactions occurring in the presence of mechanical stresses. Atomistic descriptions of these processes are still in their infancies because of the high computational costs required to properly describe the buried sliding interface by theoretical methods. In this paper we outline the application of the Quantum Mechanics/Molecular Mechanics approach to simulate tribochemical reactions during sliding and show that it can accurately describe the tribochemistry of graphene interacting with water molecules, a system which is of relevance for technological applications. Comparison with ab initio (Car-Parrinello) and classical (using the ReaxFF force field) molecular dynamics calculations highlights the advantages of this hybrid approach both in terms of computational costs and accuracy of the results.
机译:摩擦现象,如磨损和边界润滑,深化学反应深受影响,即在机械应力存在下发生的化学反应。 由于正确描述了理论方法所需的高计算成本,这些过程的原子描述仍然处于其瞬间。 在本文中,我们概述了量子力学/分子力学方法的应用在滑动过程中模拟了杂色化学反应,并表明它可以准确地描述与水分子相互作用的石墨烯培养学化学,这是一种与技术应用相关的系统。 与AB Initio(Carrinello)和经典(使用Reaxff Force Field)的分子动力学计算比较突出了这种混合方法的优势在于计算成本和结果的准确性。

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