Detail publikace
Atomically Dispersed Dopants for Stabilizing Ceria Surface Area
ALCALA, R. DELARIVA, A. PETERSON, E. J. BENAVIDEZ, A. GARCIA-VARGAS, C. E. JIANG, D. PEREIRA-HERNÁNDEZ, X. I. BRONGERSMA, H. H. VEEN, R. T. STANĚK, J. MILLER, J. T. WANG, Y. DATYE, A.
Anglický název
Atomically Dispersed Dopants for Stabilizing Ceria Surface Area
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
en
Originální abstrakt
Ceria is known to be a very good catalyst as well as a support for oxygen transfer (oxidation) as well as for hydrogen transfer (hydrogenation and dehydrogenation) reactions. Many of these reactions occur at high temperatures where ceria is known to sinter, leading to loss of surface area. The thermal stability of ceria can be improved by the addition of dopants, but the location of the dopant atoms and the mechanisms by which ceria stabilization occurs are poorly understood. We show here that dopants located on the surface of ceria are remarkably effective at stabilizing ceria surface area. Keeping metal loading constant at 0.88 mol%, we found that surface area of the ceria aged at 800 degrees C in air for 5 h ranged from 45 m(2)/g to 2 m(2)/g. Strongly bound dopants in atomically dispersed form help to pin surface sites and lower the mobility of ceria.
Anglický abstrakt
Ceria is known to be a very good catalyst as well as a support for oxygen transfer (oxidation) as well as for hydrogen transfer (hydrogenation and dehydrogenation) reactions. Many of these reactions occur at high temperatures where ceria is known to sinter, leading to loss of surface area. The thermal stability of ceria can be improved by the addition of dopants, but the location of the dopant atoms and the mechanisms by which ceria stabilization occurs are poorly understood. We show here that dopants located on the surface of ceria are remarkably effective at stabilizing ceria surface area. Keeping metal loading constant at 0.88 mol%, we found that surface area of the ceria aged at 800 degrees C in air for 5 h ranged from 45 m(2)/g to 2 m(2)/g. Strongly bound dopants in atomically dispersed form help to pin surface sites and lower the mobility of ceria.
Klíčová slova anglicky
Thermal stability; sintering; cerium oxide; single atom catalyst; surface mobility
Vydáno
05.05.2021
Nakladatel
ELSEVIER
Místo
AMSTERDAM
ISSN
0926-3373
Ročník
284
Číslo
1
Strany od–do
1–9
Počet stran
9
BIBTEX
@article{BUT172567,
author="Jan {Staněk},
title="Atomically Dispersed Dopants for Stabilizing Ceria Surface Area",
year="2021",
volume="284",
number="1",
month="May",
pages="1--9",
publisher="ELSEVIER",
address="AMSTERDAM",
issn="0926-3373"
}