脱氢
离解(化学)
电场
吸附
密度泛函理论
化学
镍
化学物理
原子物理学
物理化学
计算化学
催化作用
物理
有机化学
量子力学
作者
Fanglin Che,Renqin Zhang,Alyssa J. R. Hensley,Su Ha,Jean‐Sabin McEwen
摘要
To provide a basis for understanding the reactive processes on nickel surfaces at fuel cell anodes, we investigate the influence of an external electric field on the dehydrogenation of methyl species on a Ni(111) surface using density functional theory calculations. The structures, adsorption energies and reaction barriers for all methyl species dissociation on the Ni(111) surface are identified. Our results show that the presence of an external electric field does not affect the structures and favorable adsorption sites of the adsorbed species, but causes the adsorption energies of the CHx species at the stable site to fluctuate around 0.2 eV. Calculations give an energy barrier of 0.692 eV for CH3* → CH2* + H*, 0.323 eV for CH2* → CH* + H* and 1.373 eV for CH* → C* + H*. Finally, we conclude that the presence of a large positive electric field significantly increases the energy barrier of the CH* → C* + H* reaction more than the other two reactions, suggesting that the presence of pure C atoms on Ni(111) are impeded in the presence of an external positive electric field.
科研通智能强力驱动
Strongly Powered by AbleSci AI