CO2 Activation on Ni(111) and Ni(110) Surfaces in the Presence of Hydrogen

The structure sensitivity of CO2 activation in the presence of H2 has been identified by ambient-pressure X-ray photoelectron spectroscopy (APXPS) on Ni(111) and Ni(110) surfaces under identical reaction conditions. Based on the APXPS results and computer simulations, we propose that, around room te...

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Veröffentlicht in:The journal of physical chemistry letters 2023-05, Vol.14 (19), p.4381-4387
Hauptverfasser: Zang, Yijing, Cai, Jun, Han, Yong, Wu, Huanyang, Zhu, Wen, Shi, Shucheng, Zhang, Hui, Ran, Yihua, Yang, Fan, Ye, Mao, Yang, Bo, Li, Yimin, Liu, Zhi
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Sprache:eng
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Zusammenfassung:The structure sensitivity of CO2 activation in the presence of H2 has been identified by ambient-pressure X-ray photoelectron spectroscopy (APXPS) on Ni(111) and Ni(110) surfaces under identical reaction conditions. Based on the APXPS results and computer simulations, we propose that, around room temperature, the hydrogen-assisted activation of CO2 is the major reaction path on Ni(111), while the redox pathway of CO2 prevails on Ni(110). With increasing temperature, the two activation pathways are activated in parallel. While the Ni(111) surface is fully reduced to the metallic state at elevated temperatures, two stable Ni oxide species can be observed on Ni(110). Turnover frequency measurements indicate that the low-coordinated sites on Ni(110) promote the activity and selectivity of CO2 hydrogenation to methane. Our findings provide insights into the role of low-coordinated Ni sites in nanoparticle catalysts for CO2 methanation.
ISSN:1948-7185
1948-7185
DOI:10.1021/acs.jpclett.3c00790