AI Article Synopsis

  • Researchers developed a new type of nanosheet catalyst, Mo-PdPtNiCuZn, which combines single-atom and high-entropy-alloy features for better energy conversion in electrocatalysis.
  • The catalyst showed impressive performance in methanol oxidation, achieving a high mass activity and excellent durability.
  • The combination of Mo single atoms and tensile strain optimizes the catalyst's structure, improving reaction pathways and reducing barriers, making it a promising solution for CO-tolerant electrocatalysts.

Article Abstract

The precise structural integration of single-atom and high-entropy-alloy features for energy electrocatalysis is highly appealing for energy conversion, yet remains a grand challenge. Herein, we report a class of single-atom Mo-tailored PdPtNiCuZn high-entropy-alloy nanosheets with dilute Pt-Pt ensembles and intrinsic tensile strain (Mo-PdPtNiCuZn) as efficient electrocatalysts for enhancing the methanol oxidation reaction catalysis. The as-made Mo-PdPtNiCuZn delivers an extraordinary mass activity of 24.55 A mg and 11.62 A mg, along with impressive long-term durability. The planted oxophilic Mo single atoms as promoters modify the electronic structure of isolated Pt sites in the high-entropy-alloy host, suppressing the formation of CO adsorbates and steering the reaction towards the formate pathway. Meanwhile, Mo promoters and tensile strain synergistically optimize the adsorption behaviour of intermediates to achieve a more energetically favourable pathway and minimize the methanol oxidation reaction barrier. This work advances the design of atomically precise catalytic sites by creating a new paradigm of single atom-tailored high-entropy alloys, opening an encouraging pathway to the design of CO-tolerance electrocatalysts.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10937678PMC
http://dx.doi.org/10.1038/s41467-024-45874-zDOI Listing

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