Decoration of Gold and Platinum Nanoparticle Catalysts by 1 nm Thick Metal Oxide Overlayer and Its Effect on the CO Oxidation Activity.

ACS Appl Mater Interfaces

Department of Applied Chemistry for Environment, Graduate School of Urban Environmental Sciences, Tokyo Metropolitan University, 1-1 Minami-Osawa, Hachioji, Tokyo 192-0397, Japan.

Published: January 2024

Exfoliated M-Al layered double hydroxide (M-Al LDH; M = Mg, Co, Ni, and Zn) nanosheets were adsorbed on Au/SiO and calcined to transform LDH into mixed metal oxides (MMOs) and yield Au/SiO coated with a thin MMO overlayer. These catalysts showed a higher catalytic activity than pristine Au/SiO. In particular, the 50% CO conversion temperature decreased by more than 250 °C for Co-Al MMO-coated Au/SiO. In contrast, the deposition of CoAlO on Au/SiO by impregnation or the deposition of Au on Co-Al MMO-coated SiO resulted in a worse catalytic activity. Moreover, the presence of a thick MMO overlayer decreased the catalytic activity, suggesting that the control of the overlayer thickness to less than 1 nm is a requisite for obtaining a high catalytic activity. Moreover, the thin Co-Al MMO overlayer on Au/SiO possessed abundant oxygen vacancies, which would play an important role in O activation, resulting in a highly active interface between Au and the defect-rich MMO on the Au NP surface. Finally, this can be applied to Pt/SiO, and the obtained Co-Al MMO-coated Pt/SiO also exhibited a much improved catalytic activity for CO oxidation.

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http://dx.doi.org/10.1021/acsami.3c14935DOI Listing

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