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N-heterocyclic carbene-stabilized metal nanoparticles within porous organic cages for catalytic application.


ABSTRACT: Tuning the surface-embellishing ligands of metal nanoparticles (NPs) is a powerful strategy to modulate their morphology and surface electronic and functional features, impacting their catalytic activity and selectivity. In this work, we report the design and synthesis of a polytriazolium organic cage PIC-T, capable of stabilizing PdNPs within its discrete cavity. The obtained material (denoted Pd@PCC-T) is highly durable and monodispersed with narrow particle-size distribution of 2.06 ± 0.02 nm, exhibiting excellent catalytic performance and recyclability in the Sonogashira coupling and tandem reaction to synthesize benzofuran derivatives. Further investigation indicates that the modulation of N-heterocyclic carbene sites embedded in the organic cage has an impact on NPs' catalytic efficiency, thus providing a novel methodology to design superior NP catalysts.

SUBMITTER: Liu T 

PROVIDER: S-EPMC9166563 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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N-heterocyclic carbene-stabilized metal nanoparticles within porous organic cages for catalytic application.

Liu Tong T   Bai Sha S   Zhang Le L   Hahn F Ekkehardt FE   Han Ying-Feng YF  

National science review 20220405 6


Tuning the surface-embellishing ligands of metal nanoparticles (NPs) is a powerful strategy to modulate their morphology and surface electronic and functional features, impacting their catalytic activity and selectivity. In this work, we report the design and synthesis of a polytriazolium organic cage PIC-<b>T</b>, capable of stabilizing PdNPs within its discrete cavity. The obtained material (denoted Pd@PCC-<b>T</b>) is highly durable and monodispersed with narrow particle-size distribution of  ...[more]

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