首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >H-2 Adsorption on Cu4-xMx (M = Au, Pt; x=0-4) Clusters: Similarities and Differences As Predicted by Density Functional Theory
【24h】

H-2 Adsorption on Cu4-xMx (M = Au, Pt; x=0-4) Clusters: Similarities and Differences As Predicted by Density Functional Theory

机译:H-2对Cu4-XMX的吸附(M = Au,Pt; x = 0-4)簇:相似性和差异预测的密度函数理论

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The active search for alternatives to current fossil fuels via energy conversion mechanisms has bolstered the study of the adsorption of molecules on surfaces and clusters as a fundamental step before moving into complex heterogeneous catalysis scenarios. In this respect, intensive investigations have been thoroughly performed to obtain cheaper and more efficient catalysts, such as in the hydrogen evolution reaction (HER) in the electrocatalysis field. In this paper, we present systematic density functional theory simulations of H-2 adsorption on bimetallic Cu4-xMx (M = Pt, Au; x = 0-4) neutral clusters. The molecular and dissociative adsorption mechanisms are explored, and the occurrence of one or the other is explained in terms of the reactivity of the host clusters. We begin with a global exploration of the potential energy surface to obtain the ground-state structures. The effects of H-2 adsorption and host cluster composition on the interatomic distances are investigated. A detailed analysis of H-2 adsorption on the Cu4-xPtx family shows that dissociative adsorption occurs for x = 1-4, that is, for all clusters containing Pt, while nondissociative molecular adsorption is obtained in Cu4-xAux clusters with x = 0-3, that is, for all clusters containing Cu. This is consistent with the values of the electronic HOMO-LUMO gap, which are predicted to be small (high reactivity) and large (small reactivity) for bimetallic Cu-Pt and Cu-Au clusters, respectively. The adsorption energy increases with the Pt load in Cu-Pt clusters, while it is almost constant in the case of Cu-Au clusters.
机译:通过能量转换机制对当前化石燃料的替代方案的主动搜索已经突然研究了表面和簇中分子的吸附作为基本步骤,然后进入复杂的异构催化方案。在这方面,已经彻底地进行了密集的研究以获得更便宜和更有效的催化剂,例如在电过分析场中的氢进化反应(她)中。在本文中,我们对双金属Cu4-XMX(M = Pt,Au; x = 0-4)中性集群的H-2吸附的系统密度函数理论模拟。探索分子和分离吸附机制,并且在宿主簇的反应性方面解释了一个或另一个的发生。我们从潜在能量表面的全球探索开始,以获得地面结构。研究了H-2吸附和宿主组成对外部组距离的影响。对Cu4-XPTX系列的H-2吸附的详细分析表明,对于X = 1-4,即对于含有Pt的所有簇的X = 1-4发生分离吸附,而在Cu4- Xaux簇中获得具有X = 0的Cu4- Xaux簇的群体吸附。 -3,即含Cu的所有簇。这与电子同性恋间隙的值一致,其预测分别是对二微金属Cu-Pt和Cu-Au簇的较小(高反应性)和大(小反应性)。吸附能量随着Cu-PT簇中的Pt负载而增加,而在Cu-Au簇的情况下它几乎是恒定的。

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