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碳表面下交通堵塞作为钯表面甲烷氧化活性和选择性的驱动因素。

Carbon subsurface traffic jam as driver for methane oxidation activity and selectivity on palladium surfaces.

作者信息

Küst Ulrike, Jones Rosemary, Prumbs Julia, Namar Alessandro, Scardamaglia Mattia, Shavorskiy Andrey, Knudsen Jan

机构信息

Division of Synchrotron Radiation Research, Lund University, Box 118, SE-221 00, Lund, Sweden.

NanoLund, Lund University, Box 118, SE-221 00, Lund, Sweden.

出版信息

Nat Commun. 2025 Aug 20;16(1):7755. doi: 10.1038/s41467-025-63088-9.

Abstract

Separating how surface and subsurface species affect catalytic function is a challenging task in heterogeneous catalysis, particularly when deposition and segregation take place at reaction conditions. Here, we report on an operando approach to establish surface/subsurface/function correlations. Using temperature modulations we oscillate carbon deposition and segregation over a Pd catalyst. Catalytic composition and function are monitored during methane oxidation showing that the surface coverage of carbon drives partial oxidation to CO, while subsurface carbon controls the overall methane turnover. Also, we show that a carbon traffic jam in the subsurface leads to a shifting selectivity from H to HO formation, highlighting the importance of the catalyst subsurface for the catalytic reaction.

摘要

区分表面物种和次表面物种如何影响催化功能是多相催化中的一项具有挑战性的任务,尤其是当沉积和偏析在反应条件下发生时。在此,我们报告一种用于建立表面/次表面/功能相关性的原位方法。通过温度调制,我们使碳在钯催化剂上进行沉积和偏析振荡。在甲烷氧化过程中监测催化组成和功能,结果表明碳的表面覆盖度驱动了向一氧化碳的部分氧化,而次表面碳控制着甲烷的整体转化率。此外,我们表明次表面的碳堵塞会导致选择性从生成氢气转变为生成水,突出了催化剂次表面对催化反应的重要性。

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