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在300-500K温度范围和1-10托压力范围内,甲烷在Pt(111)表面的解离吸附。

Methane dissociative adsorption on the Pt(111) surface over the 300-500 K temperature and 1-10 Torr pressure ranges.

作者信息

Marsh Anderson L, Becraft Kevin A, Somorjai Gabor A

机构信息

Department of Chemistry, University of California, Berkeley and Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

J Phys Chem B. 2005 Jul 21;109(28):13619-22. doi: 10.1021/jp051718+.

Abstract

The dissociative adsorption of methane on the Pt(111) surface has been investigated and characterized over the 1-10 Torr pressure and 300-500 K temperature ranges using sum frequency generation (SFG) vibrational spectroscopy and Auger electron spectroscopy (AES). At a reaction temperature of 300 K and a pressure of 1 Torr, C-H bond dissociation occurs in methane on the Pt(111) surface to produce adsorbed methyl (CH(3)) groups, carbon, and hydrogen. SFG results suggest that C-C coupling occurs at higher reaction temperatures and pressures. At 400 K, methyl groups react with adsorbed C to form ethylidyne (C(2)H(3)), which dehydrogenates at 500 K to form ethynyl (C(2)H) and methylidyne (CH) species, as shown by SFG. By 600 K, all of the ethylidyne has reacted to form the dissociation products ethynyl and methylidyne. Calculated C-H bond dissociation probabilities for methane, determined by carbon deposition measured by AES, are in the 10(-8) range and increase with increasing reaction temperature. A mechanism has been developed and is compared with conclusions from other experimental and theoretical studies using single crystals.

摘要

利用和频振动光谱(SFG)和俄歇电子能谱(AES),在1 - 10托的压力范围和300 - 500 K的温度范围内,对甲烷在Pt(111)表面的解离吸附进行了研究和表征。在300 K的反应温度和1托的压力下,甲烷在Pt(111)表面发生C - H键解离,生成吸附的甲基(CH(3))基团、碳和氢。SFG结果表明,在较高的反应温度和压力下会发生C - C偶联。在400 K时,甲基与吸附的C反应形成次乙基(C(2)H(3)),如SFG所示,其在500 K时脱氢形成乙炔基(C(2)H)和亚甲基(CH)物种。到600 K时,所有的次乙基都已反应形成解离产物乙炔基和亚甲基。通过AES测量的碳沉积确定的甲烷的C - H键解离概率在10(-8)范围内,并随反应温度的升高而增加。已建立了一种机理,并与其他使用单晶的实验和理论研究得出的结论进行了比较。

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