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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Development of a Reactive Force Field for Simulations on the Catalytic Conversion of C/H/O Molecules on Cu-Metal and Cu-Oxide Surfaces and Application to Cu/CuO-Based Chemical Looping
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Development of a Reactive Force Field for Simulations on the Catalytic Conversion of C/H/O Molecules on Cu-Metal and Cu-Oxide Surfaces and Application to Cu/CuO-Based Chemical Looping

机译:用于模拟C / H / O分子对Cu - 金属和Cu-氧化物表面的催化转化的反应力场和Cu / Cuo基化学循环的催化转化

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摘要

A fully interactive Cu/C/H/O reactive force field (ReaxFF) was developed for the Cu-metal surface catalysis system following three steps: (l) re-optimization of the Cu force field by an extended training set including additional Cu cluster properties, (2) combination of this re-optimized Cu force field and an existing C/H/O force field, and (3) fitting of interactions between Cu and C/H/O with extensive DFT data involving the various binding energies and elementary reaction steps. In addition, we developed an algorithm to search the transition state (TS) of elementary steps, which is the first TS searching program based on the ReaxFF theory framework, and a new algorithm is proposed to create reaction paths and coordinate scans with high-degrees of freedom. The comparison of results of DFT and ReaxFF indicate that the developed force field is capable of describing the properties related to reactive interactions between the Cu metal and C/H/O molecules. To test this developed Cu/C/H/O force field, a series of molecular dynamics simulations were performed. In Cu/C/H/O surface simulation, elementary C/H/O reactions involving H transfer and H-2/CHO dissociations were observed supporting the complex C/H/O interactions on a Cu surface. In addition, two Cu/CHO example cases relevant to the chemical looping combustion process were also simulated: metal oxide (CuO) generation from reactions of metallic Cu with glucose and hydrocarbon fuel oxidation using a copper oxide as the oxidizer. Our simulation results indicate that the current Cu/C/H/O ReaxFF is able to capture the reaction details and distinguish the redox performances of different fuels.
机译:为Cu金属表面催化系统开发了完全交互式Cu / C / H / O反应力场(Reaxff),其三个步骤:(l)通过包括额外的Cu集群的扩展训练集重新优化Cu力场属性,(2)该重新优化的Cu力场和现有的C / H / O力场的组合,以及(3)Cu和C / H / O之间的相互作用,具有广泛的DFT数据,涉及各种绑定能量和基本反应步骤。此外,我们开发了一种搜索基于Reaxff理论框架的第一个TS搜索程序的基本步骤的转换状态(TS)的算法,并且提出了一种新的算法来创建具有高度的反应路径和坐标扫描自由。 DFT和Reaxff的结果的比较表明,发育力场能够描述与Cu金属和C / H / O分子之间的反应相互作用有关的性质。为了测试该开发的Cu / C / H / O力场,进行了一系列分子动力学模拟。在Cu / C / h / O表面模拟中,观察到涉及H转移和H-2 / CHO解离的基本C / H / O反应支持Cu表面上的复合C / H / O相互作用。另外,还模拟了与化学环燃烧过程相关的两个Cu / Cho示例例:使用金属Cu与葡萄糖和烃燃料氧化的金属氧化物(CuO)产生使用氧化铜作为氧化剂。我们的仿真结果表明,目前的Cu / C / H / O Reaxff能够捕获反应细节并区分不同燃料的氧化还原性能。

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