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  4. Monomeric Fe Species in Square Planar Geometry Active for Low Temperature NH3-SCR of NO
 
research article

Monomeric Fe Species in Square Planar Geometry Active for Low Temperature NH3-SCR of NO

Wierzbicki, Dominik
•
Clark, Adam H.
•
Kroecher, Oliver  
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October 5, 2022
Journal Of Physical Chemistry C

Monomeric Fe species in zeolites are considered to be the active sites for the low temperature activity toward ammonia-assisted selective catalytic reduction of nitrogen oxides (NH3-SCR) in exhaust gases. Herein, we report on a preparation method to synthesize single-site Fe/ZSM-5 by combination of dealumination with the use of a bulky iron complex to introduce Fe. Transient in situ XAS experiments at the Fe K-edge under dynamic NH3-SCR reaction conditions demonstrated the involvement of all iron atoms in the redox cycle and, with that, suggest that Fe species in the studied Fe/ZSM-5 catalyst are monomers. Simulation of experimental X-ray absorption data revealed that the Fe species in the sample obtained by this approach adopt a square planar geometry, which changes into fivefold coordination at low temperature by strongly binding either NO or NH3 as the ligand. The presence of monomeric Fe species in this Fe/ZSM-5 conveys molecular level insights into the temperature-dependent NH3-SCR activity and might prove useful in the study of other reactions over monomeric Fe species, such as methane partial oxidation or dehydroaromatization reactions.

  • Details
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Type
research article
DOI
10.1021/acs.jpcc.2c03480
Web of Science ID

WOS:000875644600001

Author(s)
Wierzbicki, Dominik
Clark, Adam H.
Kroecher, Oliver  
Ferri, Davide
Nachtegaal, Maarten
Date Issued

2022-10-05

Publisher

AMER CHEMICAL SOC

Published in
Journal Of Physical Chemistry C
Volume

126

Issue

41

Start page

17510

End page

17519

Subjects

Chemistry, Physical

•

Nanoscience & Nanotechnology

•

Materials Science, Multidisciplinary

•

Chemistry

•

Science & Technology - Other Topics

•

Materials Science

•

selective catalytic-reduction

•

oxidation-state

•

nitrogen-oxides

•

pre-edge

•

zeolites

•

fe-zsm-5

•

sites

•

identification

•

coordination

•

performance

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-KRO  
Available on Infoscience
November 7, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/191958
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