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首页> 外文期刊>Angewandte Chemie >Thermal Methane Conversion to Formaldehyde Promoted by Single Platinum Atoms in PtAI2O4~-Cluster Anions
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Thermal Methane Conversion to Formaldehyde Promoted by Single Platinum Atoms in PtAI2O4~-Cluster Anions

机译:PtAl2O4〜-簇阴离子中单铂原子促进甲烷热甲烷转化为甲醛

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摘要

Identification and mechanistic study of thermal methane conversion mediated by gas-phase species is important for finding potentially useful routes for direct methane transformation under mild conditions. Negatively charged oxide species are usually inert with methane. This work reports an unexpected result that the bi-metallic oxide cluster anions PtAl2 4 can transform methane into a stable organic compound, formaldehyde, with high selectivity. The clusters are prepared by laser ablation and reacted with CH4 in an ion trap reactor. The reaction is characterized by mass spectrometry and density functional theory calculations. It is found that platinum rather than oxygen activates CH4 at the beginning of the reaction. The Al204~ moiety serves as the support of Pt atom and plays important roles in the late stage of the reaction. A new mechanism for selective methane conversion is provided and new insights into the surface chemistry of single Pt atoms may be obtained from this study.
机译:气相物种介导的热甲烷转化的鉴定和机理研究对于寻找在温和条件下直接甲烷转化的潜在有用途径非常重要。带负电的氧化物通常对甲烷呈惰性。这项工作报告了一个出乎意料的结果,即双金属氧化物簇阴离子PtAl2 4可以高选择性将甲烷转化为稳定的有机化合物甲醛。通过激光烧蚀制备团簇,并在离子阱反应器中与CH4反应。该反应通过质谱和密度泛函理论计算来表征。发现在反应开始时,铂而不是氧活化CH 4。 Al 2 O 4-部分用作Pt原子的载体,并在反应的后期起重要作用。提供了一种选择性甲烷转化的新机制,并且可以从这项研究中获得对单个Pt原子表面化学的新见解。

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