首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Formation of a Rhodium Surface Oxide Film in Rh_n/CeO2(111) Relevant for Catalytic CO Oxidation: A Computational Study
【24h】

Formation of a Rhodium Surface Oxide Film in Rh_n/CeO2(111) Relevant for Catalytic CO Oxidation: A Computational Study

机译:在Rh_n / CeO2(111)中用于催化CO氧化的铑表面氧化膜的形成:计算研究

获取原文
获取原文并翻译 | 示例
           

摘要

The structure, of small Rh_n (n = 1-10) clusters and Corresponding Rh-oxide (Rh_nO_m) clusters (n = 1—4; m = 1—9) supported on a stoichiometric CeO2(111) surface has been investigated using density functional theory corrected for on-site Coulombic interactions (DFT+U) with the goal to identify a realistic model for Rh/CeO2-based CO oxidation catalysts. Rh_n clusters on ceria prefer to adopt a three-dimensional morphology. The adsorption of oxygen leads to the reconstruction of such clusters into a two-dimensional Rh-oxide film. The stability of Rh_nO_m species is determined by evaluating the reaction energy for the stepwise oxidation of Rh_n, which is to be compared with data for the experimental fresh catalysts. It is found that with increasing cluster size the surface oxide phase becomes increasingly stable against the isolated RhO3 form under oxidative conditions. The Helmholtz free energy change for Rh_nO_m clusters with varying m was determined for the reduction by CO and oxidation by O2. In this way, it was found that Rh-oxide species are more stable than the corresponding pure Rh clusters when supported on CeO2(111). This suggests that the active site for CO oxidation is a Rh surface-oxide.
机译:使用密度研究了负载在化学计量CeO2(111)表面上的小Rh_n(n = 1-10)团簇和相应的Rh-氧化物(Rh_nO_m)团簇(n = 1-4; m = 1-9)的结构。为了确定基于Rh / CeO2的CO氧化催化剂的实际模型,功能理论对现场库仑相互作用(DFT + U)进行了校正。二氧化铈上的Rh_n团簇倾向于采用三维形态。氧的吸附导致将这些团簇重建成二维Rh-氧化膜。 Rh_nO_m物种的稳定性是通过评估逐步氧化Rh_n的反应能量来确定的,该能量将与实验新鲜催化剂的数据进行比较。发现随着簇尺寸的增加,表面氧化物相在氧化条件下对分离的RhO3形式变得越来越稳定。确定了m随变化的Rh_nO_m团簇的亥姆霍兹自由能变化,确定了CO的还原和O2的氧化。通过这种方式,发现当负载在CeO2(111)上时,Rh-氧化物比相应的纯Rh簇更稳定。这表明CO氧化的活性部位是Rh表面氧化物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号