摘要
Density functional theory (DFT) method was employed to investigate the adsorption and decomposition mechanisms of CH 3 OH on Pd (100) surface. Different kinds of possible adsorption modes of relevant intermediates on the surface were identified. It was found that CH 3 OH and CH 2 OH prefers to adsorb on the top site, CH 3 O, CHOH and CO occupy preferentially on the bridge site, while CH 2 O, CHO, COH and H species adsorb on the hollow site. The adsorption energies of all species exhibit the following trend: CH 3 OH < CH 2 O < CH 3 O < CO < CH 2 OH < H < CHO < CHOH < COH. Subsequently, four possible dissociation pathways of CH 3 OH via initial O-H and C-H bond scissions were proposed and studied systematically. The transition states, energy barriers and reaction energies were calculated to explore the dehydrogenation mechanisms of CH 3 OH on Pd (100) surface. It was indicated that the scission of C-H bond is more favorable for CH 3 OH and CH 2 OH and the H-O bond cleavage is easier for CHOH. The path 2 (CH 3 OH-CH 2 OH-CHOH-CHO-CO) is the most possible dehydrogenation pathway, where the highest energy barrier of CH 3 OH dissociation makes it to be the rate-determining step of the whole dehydrogenation reaction.
| 源语言 | 英语 |
|---|---|
| 页(从-至) | 613-619 |
| 页数 | 7 |
| 期刊 | Applied Surface Science |
| 卷 | 364 |
| DOI | |
| 出版状态 | 已出版 - 28 2月 2016 |
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