Millisecond synthesis of CoS nanoparticles for highly efficient overall water splitting

被引:0
作者
Yanan Chen
Shaomao Xu
Shuze Zhu
Rohit Jiji Jacob
Glenn Pastel
Yanbin Wang
Yiju Li
Jiaqi Dai
Fengjuan Chen
Hua Xie
Boyang Liu
Yonggang Yao
Lourdes G. Salamanca-Riba
Michael R. Zachariah
Teng Li
Liangbing Hu
机构
[1] University of Maryland College Park,Department of Materials Science and Engineering
[2] University of Maryland College Park,Department of Mechanical Engineering
[3] University of Maryland College Park,Department of Chemical and Biomolecular Engineering and Chemistry and Biochemistry
来源
Nano Research | 2019年 / 12卷
关键词
ultrafast; high temperature synthesis; graphene; water splitting;
D O I
暂无
中图分类号
学科分类号
摘要
High performance and low-cost electrocatalysts for overall water splitting, i.e., catalyzing hydrogen and oxygen evolution reactions with the same material, are of great importance for large-scale, renewable energy conversion processes. Here, we report an ultrafast (~ 7 ms) synthesis technique for transition metal chalcogenide nanoparticles assisted by high temperature treatment. As a proof of concept, we demonstrate that cobalt sulfide (~ 20 nm in diameter)@ few-layer graphene (~ 2 nm in thickness) core-shell nanoparticles embedded in RGO nanosheets exhibit remarkable bifunctional electrocatalytic activity and stability for overall water splitting, which is comparable to commercial 40 wt.% platinum/carbon (Pt/C) electrocatalysts. After 60 h of continuous operation, 10 mA·cm−2 water splitting current density can still be achieved at a low potential of ~ 1.77 V without any activity decay, which is among the most active for non-noble material based electrocatalysts. The presented study provides prospects in synthesizing highly efficient bifunctional electrocatalysts for large-scale energy conversion application via a simple yet efficient technique.
引用
收藏
页码:2259 / 2267
页数:8
相关论文
共 429 条
  • [21] Thorne J.(2015)One-pot synthesis of CdS nanocrystals hybridized with single-layer transition-metal dichalcogenide nanosheets for efficient photocatalytic hydrogen evolution Angew. Chem., Int. Ed. 54 1210-5813
  • [22] Zheng Z.(2013)Enhanced hydrogen evolution catalysis from chemically exfoliated metallic MoS2 nanosheets J. Am. Chem. Soc. 135 10274-8028
  • [23] Wang D. W.(2014)Electrochemical tuning of MoS2 nanoparticles on three-dimensional substrate for efficient hydrogen evolution ACS Nano 8 4940-4241
  • [24] Zheng N. F.(2013)Defect-rich MoS2 ultrathin nanosheets with additional active edge sites for enhanced electrocatalytic hydrogen evolution Adv. Mater. 25 5807-6206
  • [25] Bu X. H.(2014)Monolayer MoS2 films supported by 3D nanoporous metals for high-efficiency electrocatalytic hydrogen production Adv. Mater. 26 8023-1009
  • [26] Vu H.(2015)3D WS2 nanolayers@heteroatom-doped graphene films as hydrogen evolution catalyst electrodes Adv. Mater. 27 4234-5629
  • [27] Feng P. Y.(2016)Recent strategies for improving the catalytic activity of 2D TMD nanosheets toward the hydrogen evolution reaction Adv. Mater. 28 6197-4577
  • [28] Zeng M.(2016)The role of electronic coupling between substrate and 2D MoS2 nanosheets in electrocatalytic production of hydrogen Nat. Mater. 15 1003-452
  • [29] Li Y. G.(2015)Hierarchical Ni-Mo-S nanosheets on carbon fiber cloth: A flexible electrode for efficient hydrogen generation in neutral electrolyte Sci. Adv. 1 1500259-1385
  • [30] Li X. M.(2014)MoS2 nanoflower-decorated reduced graphene oxide paper for high-performance hydrogen evolution reaction Nanoscale 6 5624-13931