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Enhanced Oxygen Reduction with Ethanol Tolerant Ni-Te Nanoparticles on Carbon Support Through Vapour-Solid Preparation

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Abstract

Recent endeavours to promote the widespread use of renewable and sustainable energy technologies depend heavily on the development and design of new catalytic materials. In this context, intermetallic compounds have come into the spotlight of recent research as a promising material class to tune the catalytic properties and stability for various uses. In this work, vapour–solid synthesis is highlighted as an outstanding method for its control over the composition and crystal structure of prepared intermetallic nanoparticles. Carbon black-supported nickel-telluride nanoparticles of different compositions and crystallographic structures have been synthesised and investigated regarding their oxygen reduction reaction performance in alkaline media. The relation between catalytic activity and ethanol tolerance depending on the various intermetallic phases has been investigated. The addition of tellurium into nickel-based nanoparticles allowed a two-fold increase of the mass activity from 43.6 A gNi−1 for Ni/C to 88.5 A gNi−1 for Ni-Te/C. Onset and half-wave potentials were comparable to commercial Pt/C benchmark catalyst. Furthermore, chronoamperometric testing showed that the ethanol-tolerant Ni-Te/C catalysts were stable under electrocatalytic conditions during in alkaline media. The trend in catalytic activity of the Ni-Te phases was followed the order: Ni3Te2 > NiTe > NiTe2−x > Ni.
Original languageEnglish
Article number368
Number of pages17
JournalCatalysts : open access journal
Volume15
Issue number4
DOIs
Publication statusPublished - 10 Apr 2025

Funding

FundersFunder number
OeAD-GmbH - Austria’s Agency for Education and InternationalisationCZ 06/2023

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 7 - Affordable and Clean Energy
      SDG 7 Affordable and Clean Energy

    Austrian Fields of Science 2012

    • 104008 Catalysis
    • 104005 Electrochemistry
    • 205004 Functional materials

    Keywords

    • oxygen reduction reaction
    • electrocatalysis
    • intermetallic nanoparticle
    • vapour-solid
    • nickel telluride

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