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Noble Metal Nanoparticle-Loaded Porphyrin Hexagonal Submicrowires Composites (M-HW): Photocatalytic Synthesis and Enhanced Photocatalytic Activity. | LitMetric

Noble Metal Nanoparticle-Loaded Porphyrin Hexagonal Submicrowires Composites (M-HW): Photocatalytic Synthesis and Enhanced Photocatalytic Activity.

Nanomaterials (Basel)

Key Laboratory for Special Functional Materials of Ministry of Education, National & Local Joint Engineering Research Center for High-Efficiency Display and Lighting Technology, School of Materials Science and Engineering, Collaborative Innovation Center of Nano Functional Materials and Applications, Henan University, Kaifeng 475004, China.

Published: February 2023

AI Article Synopsis

  • Surface plasmon resonance (SPR) photocatalysts enhance visible light absorption and improve photogenic charge separation, but the separate production of metal nanoparticles and semiconductors hinders charge transfer.
  • The study developed noble metal-based porphyrin hexagonal submicrowires composites (M-HW) with metals like platinum, silver, gold, and palladium, which showed improved catalytic properties and uniform distribution of metal particles.
  • Results indicated that the silver-loaded M-HW composite had the highest photocatalytic degradation efficiency for methyl orange, while platinum exhibited significant efficiency for degrading rhodamine B and eosin B, demonstrating the potential of M-HW as effective materials for degrading organic pollutants.

Article Abstract

Surface plasmon resonance (SPR) photocatalysts have attracted considerable attention because of their strong absorption capacity of visible light and enhanced photogenic carrier separation efficiency. However, the separate production of metal nanoparticles (NPs) and semiconductors limits the photogenic charge transfer. As one of the most promising organic photocatalysts, porphyrin self-assemblies with a long-range ordered structure-enhance electron transfer. In this study, plasmonic noble metal-based porphyrin hexagonal submicrowires composites (M-HW) loaded with platinum (Pt), silver (Ag), gold (Au), and palladium (Pd) NPs were synthesized through a simple in situ photocatalytic method. Homogeneous and uniformly distributed metal particles on the M-HW composites enhanced the catalytic or chemical properties of the organic functional nanostructures. Under the same loading of metal NPs, the methyl orange photocatalytic degradation efficiency of Ag-HW [k (0.043 min)] composite was three times higher than that of HW, followed by Pt-HW [k (0.0417 min)], Au-HW [k (0.0312 min)], and Pd-HW [k (0.0198 min)]. However, the rhodamine B (RhB) and eosin B photocatalytic degradations of Pt-HW were 4 times and 2.6 times those of HW, respectively. Finally, the SPR-induced electron injection, trapping, and recombination processes of the M-HW system were investigated. These results showed that M-HW plasmonic photocatalysts exhibited excellent photocatalytic performances, making them promising materials for photodegrading organic pollutants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959543PMC
http://dx.doi.org/10.3390/nano13040660DOI Listing

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