论文标题

石墨烯和PT纳米颗粒的多层结构 - 多尺度计算研究

Multilayer Structures of Graphene and Pt Nanoparticles -- a Multiscale Computational Study

论文作者

Nasiri, Samaneh, Greff, Christian, Wang, Kai, Yang, Mingjun, Li, Qianqian, Moretti, Paolo, Zaiser, Michael

论文摘要

我们报告了由带有嵌入式PT纳米颗粒的石墨烯片组成的多层结构的多尺度仿真研究的结果。密度功能理论用于理解Pt-Graphene界面的能量学,并为Pt-Graphene相互作用电位的参数化提供参考数据。然后,分子动力学模拟提供了石墨烯片的构象和能量,并具有嵌入的PT纳米颗粒,其密度,形式和大小。这些结果是使用薄板变形的连续机械模型来解释的,并用于参数化中尺度的蒙特卡洛模型,以调查一个问题,在哪些条件下,PT纳米颗粒周围的自由体积形成渗透簇,以便在催化应用中使用结构。最后,我们讨论了此类多层结构的潜在应用。

We report results of a multiscale simulation study of multilayer structures consisting of graphene sheets with embedded Pt nanoparticles. Density functional theory is used to understand the energetics of Pt-graphene interfaces and provide reference data for the parameterization of a Pt-graphene interaction potential. Molecular dynamics simulations then provide the conformation and energetics of graphene sheets with embedded Pt nanoparticles of varying density, form and size. These results are interpreted using a continuum mechanical model of sheet deformation, and serve to parameterize a meso-scale Monte Carlo model to investigate the question under which conditions the free volume around the Pt nanoparticles forms a percolating cluster, such that the structures can be used in catalytic applications. We conclude with a discussion of potential applications of such multilayer structures.

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