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Supported Inverse MnOsub.x/Pt Catalysts Facilitate Reverse Water Gas Shift Reaction
by
Zhu, Xinli
, Zhang, Ruoyu
, Ge, Qingfeng
, Bi, Wenli
in
Catalysts
2024
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Supported Inverse MnOsub.x/Pt Catalysts Facilitate Reverse Water Gas Shift Reaction
by
Zhu, Xinli
, Zhang, Ruoyu
, Ge, Qingfeng
, Bi, Wenli
in
Catalysts
2024
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Supported Inverse MnOsub.x/Pt Catalysts Facilitate Reverse Water Gas Shift Reaction
Journal Article
Supported Inverse MnOsub.x/Pt Catalysts Facilitate Reverse Water Gas Shift Reaction
2024
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Overview
Catalytic conversion of CO[sub.2] to CO via the reverse water gas shift (RWGS) reaction has been identified as a promising approach for CO[sub.2] utilization and mitigation of CO[sub.2] emissions. Bare Pt shows low activity for the RWGS reaction due to its low oxophilicity, with few research works having concentrated on the inverse metal oxide/Pt catalyst for the RWGS reaction. In this work, MnO[sub.x] was deposited on the Pt surface over a SiO[sub.2] support to prepare the MnO[sub.x]/Pt inverse catalyst via a co-impregnation method. Addition of 0.5 wt% Mn to 1 wt% Pt/SiO[sub.2] improved the intrinsic reaction rate and turnover frequency at 400 °C by two and twelve times, respectively. Characterizations indicate that MnO[sub.x] partially encapsulates the surface of the Pt particles and the coverage increases with increasing Mn content, which resembles the concept of strong metal–support interaction (SMSI). Although the surface accessible Pt sites are reduced, new MnO[sub.x]/Pt interfacial perimeter sites are created, which provide both hydrogenation and C-O activation functionalities synergistically due to the close proximity between Pt and MnO[sub.x] at the interface, and therefore improve the activity. Moreover, the stability is also significantly improved due to the coverage of Pt by MnO[sub.x]. This work demonstrates a simple method to tune the oxide/metal interfacial sites of inverse Pt-based catalyst for the RWGS reaction.
Publisher
MDPI AG
Subject
MBRLCatalogueRelatedBooks
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