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Shin, Seung-Jae
THeoretical Energy Materials Modelling for Engineering & Science
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Tailoring a Dynamic Metal-Polymer Interaction to Improve Catalyst Selectivity and Longevity in Hydrogenation

Author(s)
Hyun, KyunglimPark, YounghwanLee, SonghyunLee, JueunChoi, YeonwooShin, Seung-JaeKim, HyungjunChoi, Minkee
Issued Date
2021-05
DOI
10.1002/anie.202100814
URI
https://scholarworks.unist.ac.kr/handle/201301/84003
Citation
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, v.60, no.22, pp.12482 - 12489
Abstract
Controlling metal-support interactions is important for tuning the catalytic properties of supported metal catalysts. Here, premade Pd particles are supported on stable polymers containing different ligating functionalities to control the metal-polymer interactions and their catalytic properties in industrially relevant acetylene partial hydrogenation. The polymers containing strongly ligating groups (e.g., Ar-SH and Ar-S-Ar) can form a polymer overlayer on the Pd surface, which enables selective acetylene adsorption and partial hydrogenation to ethylene without deactivation. In contrast, polymers with weakly ligating groups (e.g., Ar-O-Ar) do not form an overlayer, resulting in non-selective hydrogenation and fast deactivation, similar to Pd catalysts on conventional inorganic supports. The results imply that tuning the metal-polymer interactions via rational polymer design can provide an efficient way of synthesizing selective and stable catalysts for hydrogenation.
Publisher
WILEY-V C H VERLAG GMBH
ISSN
1433-7851
Keyword (Author)
metal–support interactionspalladiumpartial hydrogenationpolymersDMPI

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