Two-dimensional metallic tantalum disulfide as a hydrogen evolution catalyst
Двумерный металлический дисульфид тантала в качестве катализатора выделения водорода
2017-10-10
SCID: 54.1/dwbsnsyh
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charge-density waveschemical vapor depositionhydrogen evolution reactionmetallic transition metal dichalcogenidestantalum disulfide
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Abstract (AI)
Abstract Two-dimensional metallic transition metal dichalcogenides are emerging as prototypes for uncovering fundamental physical phenomena, such as superconductivity and charge-density waves, as well as for engineering-related applications. However, the batch production of such envisioned transition metal dichalcogenides remains challenging, which has hindered the aforementioned explorations. Herein, we fabricate thickness-tunable tantalum disulfide flakes and centimetre-sized ultrathin films on an electrode material of gold foil via a facile chemical vapour deposition route. Through temperature-dependent Raman characterization, we observe the transition from nearly commensurate to commensurate charge-density wave phases with our ultrathin tantalum disulfide flakes. We have obtained high hydrogen evolution reaction efficiency with the as-grown tantalum disulfide flakes directly synthesized on gold foils comparable to traditional platinum catalysts. This work could promote further efforts for exploring new efficient catalysts in the large materials family of metallic transition metal dichalcogenides, as well as exploiting their applications towards more versatile applications.
Key Findings
1
A facile chemical vapor deposition method produces thickness-tunable tantalum disulfide flakes and centimeter-sized ultrathin films directly on gold foil.
2
Tantalum disulfide flakes grown directly on gold foils exhibit hydrogen evolution reaction efficiency comparable to traditional platinum catalysts.
3
Temperature-dependent Raman measurements reveal a transition from nearly commensurate to commensurate charge-density-wave phases in ultrathin tantalum disulfide flakes.
4
The results demonstrate metallic tantalum disulfide as a scalable candidate for efficient hydrogen evolution catalysis and broader transition-metal-dichalcogenide applications.
Research Object
two-dimensional metallic tantalum disulfide flakes and ultrathin films on gold foil
Research Subject
charge-density-wave phase transitions and hydrogen evolution reaction catalytic efficiency
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2017-10-10
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