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  5. Vertical 1T‐TaS<sub>2</sub> Synthesis on Nanoporous Gold for High‐Performance Electrocatalytic Applications

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Article
en
2018

Vertical 1T‐TaS<sub>2</sub> Synthesis on Nanoporous Gold for High‐Performance Electrocatalytic Applications

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en
2018
Vol 30 (15)
Vol. 30
DOI: 10.1002/adma.201705916

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Lin Gu
Lin Gu

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Yahuan Huan
Jianping Shi
Xiaolong Zou
+15 more

Abstract

2D metallic TaS2 is acting as an ideal platform for exploring fundamental physical issues (superconductivity, charge-density wave, etc.) and for engineering novel applications in energy-related fields. The batch synthesis of high-quality TaS2 nanosheets with a specific phase is crucial for such issues. Herein, the successful synthesis of novel vertically oriented 1T-TaS2 nanosheets on nanoporous gold substrates is reported, via a facile chemical vapor deposition route. By virtue of the abundant edge sites and excellent electrical transport property, such vertical 1T-TaS2 is employed as high-efficiency electrocatalysts in the hydrogen evolution reaction, featured with rather low Tafel slopes ≈67-82 mV dec-1 and an ultrahigh exchange current density ≈67.61 µA cm-2 . The influence of phase states of 1T- and 2H-TaS2 on the catalytic activity is also discussed with the combination of density functional theory calculations. This work hereby provides fundamental insights into the controllable syntheses and electrocatalytic applications of vertical 1T-TaS2 nanosheets achieved through the substrate engineering.

How to cite this publication

Yahuan Huan, Jianping Shi, Xiaolong Zou, Yue Gong, Zhepeng Zhang, Minghua Li, Liyun Zhao, Runzhang Xu, Shaolong Jiang, Xiebo Zhou, Min Hong, Chunyu Xie, He Li, Xingyou Lang, Qing Zhang, Lin Gu, Xiaoqin Yan, Yanfeng Zhang (2018). Vertical 1T‐TaS<sub>2</sub> Synthesis on Nanoporous Gold for High‐Performance Electrocatalytic Applications. , 30(15), DOI: https://doi.org/10.1002/adma.201705916.

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Publication Details

Type

Article

Year

2018

Authors

18

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/adma.201705916

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