Direct dehydrogenation of propane over Pd nanoparticles encapsulated within IPC zeolites with tunable pore sizes

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dc.contributor.author Sajad, Mehran
dc.contributor.author Zhang, Yuyan
dc.contributor.author Kubu, Martin
dc.contributor.author Mazur, Michal
dc.contributor.author Bulánek, Roman
dc.contributor.author Cejka, Jiri
dc.date.accessioned 2023-07-12T13:16:38Z
dc.date.available 2023-07-12T13:16:38Z
dc.date.issued 2022
dc.identifier.issn 2352-9407
dc.identifier.uri https://hdl.handle.net/10195/81250
dc.description.abstract Propane dehydrogenation (PDH) yields propene, a valuable feedstock in increasing global demand. Yet, despite recent advances in supported metal nanoparticles (NPs) for such catalytic applications, preventing nanoparticle agglomeration remains a challenge. In this study, we prepared well-dispersed Pd nanoparticles and encapsulated them within IPC-2 and IPC-4 zeolites using the Assembly, Disassembly, Organization, and Reassembly (ADOR) process based on the 3D-2D-3D transformation. By structural and textural analysis, we confirmed the synthesis of two 'ADORable' zeolites incorporated with Pd nanoparticles, namely Pd@IPC-2 and Pd@IPC-4. In the direct dehydrogenation of propane, Pd NPs encapsulated within IPC-2 and IPC-4 zeolites outperformed their impreg-nated counterparts (Pd/IPC-2 and Pd/IPC-4), with Pd@IPC-2 showing a higher catalytic activity than Pd@IPC-4. Accordingly, in addition to the number of surface Pd atoms, the size of the zeolite channels and the structure of the framework strongly affect the catalytic activity of encapsulated Pd. Moreover, confining Pd NPs inside zeolite channels prevented their sintering and agglomeration during the reaction as Pd NPs in impregnated catalysts expanded during the reaction. However, the structure of the zeolite encapsulated with Pd catalysts partly collapsed due to the harsh conditions of the dehydrogenation reaction, hindering access to Pd NPs, as observed in IR spectra. Therefore, palladium NPs are stable within zeolites and do not sinter, but their catalytic activity gradually decreases with the formation of carbon deposits. Although these deposites are removable by calci-nation, reactivation does not completely restore the original activity due to framework disruption and limited access to the active species. eng
dc.format "101644-1"-"101644-14"
dc.language.iso eng
dc.publisher Elsevier Science BV eng
dc.relation.ispartof Applied Materials Today, volume 29, issue: December eng
dc.rights pouze v rámci univerzity cze
dc.subject dehydrogenation eng
dc.subject propane eng
dc.subject propene eng
dc.subject IPC zeolites eng
dc.subject Pd nanoparticles eng
dc.subject dehydrogenace cze
dc.subject propan cze
dc.subject propen cze
dc.subject IPC zeolity cze
dc.subject Pd nanočástice cze
dc.title Direct dehydrogenation of propane over Pd nanoparticles encapsulated within IPC zeolites with tunable pore sizes eng
dc.title.alternative Přímá dewhydrogenace propanu na Pd nanočásticích zapouzdřených uvnitř IPC zeolitu s volitelnou velikostí pórů cze
dc.type article eng
dc.description.abstract-translated Byly připraveny dobře dispergované nanočástice Pd zapouzdřené uvnitř IPC-2 a IPC-4 zeolitů pomocí ADOR procesu založeného na 3D-2D-3D transformaci. Pomocí strukturní a texturní analýzy byla ověřena inkorporace Pd nanočástic. Připravené materiály byly testovány jako katalyzátory pro dehydrogenaci propanu na propen. cze
dc.peerreviewed yes eng
dc.publicationstatus published eng
dc.identifier.doi 10.1016/j.apmt.2022.101644
dc.relation.publisherversion https://www.sciencedirect.com/science/article/pii/S2352940722002785
dc.identifier.wos 000871099900001
dc.identifier.scopus 2-s2.0-85139280906
dc.identifier.obd 39888029


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