Trapping-mediated and direct dissociative chemisorption of methane on Ir(110): A comparison of molecular beam and bulb experiments

被引:62
作者
Seets, DC [1 ]
Wheeler, MC [1 ]
Mullins, CB [1 ]
机构
[1] UNIV TEXAS,DEPT CHEM ENGN,AUSTIN,TX 78712
关键词
D O I
10.1063/1.474754
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Molecular-beam and bulb gas techniques were employed to study dissociative chemisorption and physical adsorption of methane on Ir(110). The initial dissociative chemisorption probability (So) was measured as a function of incident kinetic energy (E-i), surface temperature, and angle of incidence. With this investigation, we provide the first unambiguous evidence of a trapping-mediated pathway for methane dissociation on any surface. This interpretation is supported by excellent quantitative agreement between our data at low kinetic energies and a simple kinetic model of the trapping-mediated mechanism. Additionally, this is the first molecular-beam study of any gas on any surface that is consistent with a simple trapping-mediated model in which the barrier to dissociation from the physically adsorbed state is greater than the barrier to desorption. At high-incident kinetic energies, the value of So increases with Ei indicative of a direct mechanism. The values of the reaction probability determined from the molecular-beam experiments are integrated over a Maxwell-Boltzmann energy distribution to predict the initial chemisorption probability of thermalized methane as a function. of gas and surface temperature. These calculations are in excellent agreement with the results obtained from bulb experiments conducted with room-temperature methane gas over Ir(110) and indicate that a trapping-mediated pathway governs dissociation at low gas temperatures. At the high gas temperatures characteristic of catalytic conditions, however, a direct mechanism dominates reactive adsorption of methane over Ir(110). (C) 1997 American Institute of Physics.
引用
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页码:3986 / 3998
页数:13
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