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Amine Functionalization Within Hierarchically-Porous Zeotype Framework for Plasmonic Catalysis over PdAu Nanoparticles

Articolo
Data di Pubblicazione:
2023
Abstract:
Plasmonic catalysis has revealed improved product yield and selectivity in various chemical transformation reactions over the past decade. In this report, the effect of tertiary amine (-NR3) functionalization on the surface of hierarchically-porous zeotype (HP-AlPO-5) materials to enhance the plasmon-mediated catalysis, utilizing a combination of the plasmonic antenna (Au) and catalytic reactor (Pd) nanoparticles (NPs) was investigated. The catalysts have been characterized using enhanced techniques such as HAADF-STEM, FT-EXAFS, and probe-based FT-IR to reveal the proximity and interaction between bimetallic NPs, and thermal stability of amines in the presence of Au or PdAu NPs. Interestingly, a four-fold enhancement in the Suzuki-Miyaura coupling reaction product yield was obtained over PdAu/HP-AlPO-5-NR3 when compared with the analogous plasmonic catalyst with no amine functionalization under visible light irradiation. A range of amines were functionalized and their influence in the nucleation, uniform growth and stabilization of catalytic active site (Pd) and formation of electron-rich species under visible light irradiation has also been investigated. The presence of tertiary amine in the nanostructured catalyst enhanced the turnover number (TON) significantly under light irradiation conditions in comparison to dark conditions. This study provides an enriched understanding of plasmon-driven chemistry, where the maximized reaction rate enhancement requires the existence of active metal species and the formation of electron-enriched species under light irradiation conditions.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
amine functionalization; hierarchical porosity; plasmonic catalysis; visible-light irradiation
Elenco autori:
Verma, P; Mori, K; Kuwahara, Y; Manzoli, M; Morandi, S; Fukuhara, C; Raja, R; Yamashita, H
Autori di Ateneo:
MANZOLI Maela
MORANDI Sara
Link alla scheda completa:
https://iris.unito.it/handle/2318/1897512
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/1897512/1413656/ChemCatChem%2015%20(2023)%20e202201182.pdf
Pubblicato in:
CHEMCATCHEM
Journal
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Settori (6)


PE4_1 - Physical chemistry - (2024)

PE4_10 - Heterogeneous catalysis - (2024)

INFORMATICA, AUTOMAZIONE e INTELLIGENZA ARTIFICIALE - Informatica per la Chimica

PIANETA TERRA, AMBIENTE, CLIMA, ENERGIA e SOSTENIBILITA' - Energia e Fonti Energetiche

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Chimica Organica e Industriale

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Materiali Avanzati
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