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Unraveling surface structures of gallium promoted transition metal catalysts in CO2 hydrogenation.


ABSTRACT: Gallium-containing alloys have recently been reported to hydrogenate CO2 to methanol at ambient pressures. However, a full understanding of the Ga-promoted catalysts is still missing due to the lack of information about the surface structures formed under reaction conditions. Here, we employed near ambient pressure scanning tunneling microscopy and x-ray photoelectron spectroscopy to monitor the evolution of well-defined Cu-Ga surfaces during CO2 hydrogenation. We show the formation of two-dimensional Ga(III) oxide islands embedded into the Cu surface in the reaction atmosphere. The islands are a few atomic layers in thickness and considerably differ from bulk Ga2O3 polymorphs. Such a complex structure, which could not be determined with conventional characterization methods on powder catalysts, should be used for elucidating the reaction mechanism on the Ga-promoted metal catalysts.

SUBMITTER: Lee SW 

PROVIDER: S-EPMC10397205 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Unraveling surface structures of gallium promoted transition metal catalysts in CO<sub>2</sub> hydrogenation.

Lee Si Woo SW   Luna Mauricio Lopez ML   Berdunov Nikolay N   Wan Weiming W   Kunze Sebastian S   Shaikhutdinov Shamil S   Cuenya Beatriz Roldan BR  

Nature communications 20230802 1


Gallium-containing alloys have recently been reported to hydrogenate CO<sub>2</sub> to methanol at ambient pressures. However, a full understanding of the Ga-promoted catalysts is still missing due to the lack of information about the surface structures formed under reaction conditions. Here, we employed near ambient pressure scanning tunneling microscopy and x-ray photoelectron spectroscopy to monitor the evolution of well-defined Cu-Ga surfaces during CO<sub>2</sub> hydrogenation. We show the  ...[more]

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