Theoretical study of electrocatalytic properties of low-dimensional freestanding PbTiO3 for hydrogen evolution reactions

Fecha de publicación

2024-01-31T17:32:33Z

2024-09-28T05:10:08Z

2023-09-29

2024-01-31T17:32:33Z

Resumen

The discovery of novel materials for catalytic purposes that are highly stable is one of the main challenges nowadays for reducing our dependence on fossil fuels. Here, low-dimensional PbTiO<sub>3</sub> is introduced as an electrocatalyst using first-principles calculations. Density-functional theory calculations indicate that 2D-PbTiO<sub>3</sub> is dynamically and thermodynamically stable. Our results show that a single oxygen defect vacancy in 2D-PbTiO<sub>3</sub> can play a key role in enhancing the hydrogen evolution reaction (HER), together with the Ti atoms. Our study concludes that the Volmer–Heyrovsky mechanism is a more favorable route to achieve HER than the Volmer–Tafel mechanism, including solvation and vacuum conditions.

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Royal Society of Chemistry

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Versió postprint del document publicat a: https://doi.org/10.1039/D3CP04241C

Physical Chemistry Chemical Physics, 2023, vol. 25, p. 27457-27467

https://doi.org/10.1039/D3CP04241C

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Derechos

(c) Ouahrani, T. et al., 2023