REAL

Structural Control Enables Catalytic and Electrocatalytic Activity of Porous Tetrametallic Nanorods

Zámbó, Dániel and Kovács, Dávid and Radnóczi, György and Horváth, Zsolt Endre and Sulyok, Attila and Tolnai, István and Deák, András (2024) Structural Control Enables Catalytic and Electrocatalytic Activity of Porous Tetrametallic Nanorods. SMALL. In press. ISSN 1613-6810

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Abstract

Integrating more than one type of metal into a nanoparticle that has a well-defined morphology and composition expands the functionalities of nanocatalysts. For a metal core/porous multimetallic shell nanoparticle, the availability of catalytically active surface sites and molecular mass transport can be enhanced, and the multielemental synergy can facilitate intraparticle charge transport. In this work, a reliable and robust synthesis of such a functional tetrametallic nanoparticle type is presented, where a micro- and mesoporous PdPtIr shell is grown on Au nanorods. The effect of critical synthesis parameters, namely temperature and the addition of HCl are investigated on the hydrodynamic size of the micellar pore template as well as on the stability of the metal chloride complexes and various elemental analysis techniques prove composition of the porous multimetallic shell. Due to the synergistic properties, the tetrametallic nanorods possess extensive negative surface charge making them a promising catalyst in reduction reactions. Dye degradation as well as the conversion of p-nitrophenol to p-aminophenol is catalyzed by the supportless nanorods without light illumination. By depositing the particles onto conductive substrates, the nanostructured electrodes show promising electrocatalytic activity in ethanol oxidation reaction. The nanocatalyst presents excellent morphological stability during all the catalytic test reactions.

Item Type: Article
Subjects: Q Science / természettudomány > QC Physics / fizika
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 26 Apr 2024 09:01
Last Modified: 26 Apr 2024 09:01
URI: https://real.mtak.hu/id/eprint/193370

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