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An automated reaction route mapping for the reaction of NO and active species on Ag-4 clusters in zeolites

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Title: An automated reaction route mapping for the reaction of NO and active species on Ag-4 clusters in zeolites
Authors: Yasumura, Shunsaku Browse this author
Kato, Taisetsu Browse this author
Toyao, Takashi Browse this author
Maeno, Zen Browse this author
Shimizu, Ken-ichi Browse this author →KAKEN DB
Issue Date: 2023
Publisher: Royal Society of Chemistry
Journal Title: Physical chemistry chemical physics
Volume: 25
Issue: 12
Start Page: 8524
End Page: 8531
Publisher DOI: 10.1039/d2cp04761f
Abstract: A computational investigation of the catalytic reaction on multinuclear sites is very challenging. Here, using an automated reaction route mapping method, the single-component artificial force induced reaction (SC-AFIR) algorithm, the catalytic reaction of NO and OH/OOH species over the Ag-4(2+) cluster in a zeolite is investigated. The results of the reaction route mapping for H-2 + O-2 reveal that OH and OOH species are formed over the Ag-4(2+) cluster via an activation barrier lower than that of OH formation from H2O dissociation. Then, reaction route mapping is performed to examine the reactivity of the OH and OOH species with NO molecules over the Ag-4(2+) cluster, resulting in the facile reaction path of HONO formation. With the aid of the automated reaction route mapping, the promotion effect of H-2 addition on the SCR reaction was computationally proposed (boosting the formation of OH and OOH species). In addition, the present study emphasizes that automated reaction route mapping is a powerful tool to elucidate the complicated reaction pathway on multi-nuclear clusters.
Type: article
URI: http://hdl.handle.net/2115/89754
Appears in Collections:触媒科学研究所 (Institute for Catalysis) > 雑誌発表論文等 (Peer-reviewed Journal Articles, etc)

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