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In situ observation of catalyst nanoparticle sintering resistance on oxide supports via gas phase transmission electron microscopy

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Title
In situ observation of catalyst nanoparticle sintering resistance on oxide supports via gas phase transmission electron microscopy
Author(s)
Wonjun Kim; Kangsik Kim; Kim, Jaejin; Zonghoon Lee
Publication Date
2024-09
Journal
Applied Microscopy, v.54, no.1
Publisher
한국현미경학회
Abstract
Oxide-supported metal catalysts are essential components in industrial processes for catalytic conversion. However, the performance of these catalysts is often compromised in high temperature reaction environments due to sintering effects. Currently, a number of studies are underway with the objective of improving the metal support interaction (MSI) effect in order to enhance sintering resistance by surface modification of the oxide support, including the formation of inhomogeneous defects on the oxide support, the addition of a rare earth element, the use of different facets, encapsulation, and other techniques. The recent developments in in situ gas phase transmission electron microscopy (TEM) have enabled direct observation of the sintering process of NPs in real time. This capability further allows to verify the efficacy of the methods used to tailor the support surface and contributes effectively to improving sintering resistance. Here, we review a few selected studies on how in situ gas phase TEM has been used to prevent the sintering of catalyst NPs on oxide supports. © The Author(s) 2024.
URI
https://pr.ibs.re.kr/handle/8788114/16114
DOI
10.1186/s42649-024-00100-4
ISSN
2287-5123
Appears in Collections:
Center for Multidimensional Carbon Materials(다차원 탄소재료 연구단) > 1. Journal Papers (저널논문)
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