Detail publikačního výsledku

Enhancing Alkaline Hydrogen Evolution Reaction on Ru-Decorated TiO2 Nanotube Layers: Synergistic Role of Ti3+, Ru Single Atoms, and Ru Nanoparticles

THALLURI, S.; RODRIGUEZ PEREIRA, J.; MICHALIČKA, J.; KOLÍBALOVÁ, E.; HROMÁDKO, L.; ŠLANG, S.; POUZAR, M.; SOPHA, H.; ZAZPE MENDIOROZ, R.; MACÁK, J.

Originální název

Enhancing Alkaline Hydrogen Evolution Reaction on Ru-Decorated TiO2 Nanotube Layers: Synergistic Role of Ti3+, Ru Single Atoms, and Ru Nanoparticles

Anglický název

Enhancing Alkaline Hydrogen Evolution Reaction on Ru-Decorated TiO2 Nanotube Layers: Synergistic Role of Ti3+, Ru Single Atoms, and Ru Nanoparticles

Druh

Článek WoS

Originální abstrakt

Synergistic interplays involving multiple active centers originating from TiO2 nanotube layers (TNT) and ruthenium (Ru) species comprising of both single atoms (SAs) and nanoparticles (NPs) augment the alkaline hydrogen evolution reaction (HER) by enhancing Volmer kinetics from rapid water dissociation and improving Tafel kinetics from efficient H* desorption. Atomic layer deposition of Ru with 50 process cycles results in a mixture of Ru SAs and 2.8 +/- 0.4 nm NPs present on TNT layers, and it emerges with the highest HER activity among all the electrodes synthesized. A detailed study of the Ti and Ru species using different high-resolution techniques confirmed the presence of Ti3+ states and the coexistence of Ru SAs and NPs. With insights from literature, the role of Ti3+, appropriate work functions of TNT layers and Ru, and the synergistic effect of Ru SAs and Ru NPs in improving the performance of alkaline HER were elaborated and justified. The aforementioned characteristics led to a remarkable performance by having 9 mV onset potentials and 33 mV dec(-1) of Tafel slopes and a higher turnover frequency of 1.72 H-2 s(-1) at 30 mV. Besides, a notable stability from 28 h staircase chronopotentiometric measurements for TNT@Ru surpasses TNT@Pt in comparison.

Anglický abstrakt

Synergistic interplays involving multiple active centers originating from TiO2 nanotube layers (TNT) and ruthenium (Ru) species comprising of both single atoms (SAs) and nanoparticles (NPs) augment the alkaline hydrogen evolution reaction (HER) by enhancing Volmer kinetics from rapid water dissociation and improving Tafel kinetics from efficient H* desorption. Atomic layer deposition of Ru with 50 process cycles results in a mixture of Ru SAs and 2.8 +/- 0.4 nm NPs present on TNT layers, and it emerges with the highest HER activity among all the electrodes synthesized. A detailed study of the Ti and Ru species using different high-resolution techniques confirmed the presence of Ti3+ states and the coexistence of Ru SAs and NPs. With insights from literature, the role of Ti3+, appropriate work functions of TNT layers and Ru, and the synergistic effect of Ru SAs and Ru NPs in improving the performance of alkaline HER were elaborated and justified. The aforementioned characteristics led to a remarkable performance by having 9 mV onset potentials and 33 mV dec(-1) of Tafel slopes and a higher turnover frequency of 1.72 H-2 s(-1) at 30 mV. Besides, a notable stability from 28 h staircase chronopotentiometric measurements for TNT@Ru surpasses TNT@Pt in comparison.

Klíčová slova

alkaline hydrogen evolution reaction; ruthenium nanoparticles; ruthenium single atoms; TiO2 nanotube layers; water dissociation

Klíčová slova v angličtině

alkaline hydrogen evolution reaction; ruthenium nanoparticles; ruthenium single atoms; TiO2 nanotube layers; water dissociation

Autoři

THALLURI, S.; RODRIGUEZ PEREIRA, J.; MICHALIČKA, J.; KOLÍBALOVÁ, E.; HROMÁDKO, L.; ŠLANG, S.; POUZAR, M.; SOPHA, H.; ZAZPE MENDIOROZ, R.; MACÁK, J.

Vydáno

01.05.2025

Periodikum

Energy & Environmental Materials

Svazek

8

Číslo

3

Stát

Čínská lidová republika

Strany od

1

Strany do

8

Strany počet

8

URL

Plný text v Digitální knihovně

BibTex

@article{BUT197819,
  author="Sitaramanjaneya Mouli {Thalluri} and Jhonatan {Rodriguez Pereira} and Jan {Michalička} and Eva {Kolíbalová} and Luděk {Hromádko} and Stanislav {Šlang} and Miloslav {Pouzar} and Hanna Ingrid {Sopha} and Raúl {Zazpe Mendioroz} and Jan {Macák}",
  title="Enhancing Alkaline Hydrogen Evolution Reaction on Ru-Decorated TiO2 Nanotube Layers: Synergistic Role of Ti3+, Ru Single Atoms, and Ru Nanoparticles",
  journal="Energy & Environmental Materials",
  year="2025",
  volume="8",
  number="3",
  pages="1--8",
  doi="10.1002/eem2.12864",
  url="https://onlinelibrary.wiley.com/doi/10.1002/eem2.12864"
}

Dokumenty