• Home
  • Search
  • Enhanced Hydrogen Evolution Activity of Ni/Ni3S2 Nanosheet Grown on Ti Mesh by Cu Doped Ni
  • Cite Icon7
  • https://doi.org/10.1149/2.1401902jesCopy DOI Icon

Enhanced Hydrogen Evolution Activity of Ni/Ni3S2 Nanosheet Grown on Ti Mesh by Cu Doped Ni

Show More
  • Abstract
  • Literature Map
  • References
  • Citations
  • Similar Papers
Abstract

Optimizing electronic structure and surface morphology are of great importance to achieve highly active and stable electrocatalyst for hydrogen evolution reaction (HER). In this paper, the vertically aligned Cu doped Ni/Ni3S2 nanosheet was successfully deposited on Ti mesh (NiCux/Ni3S2/TM, x = Cu/Ni atomic ratio in NiCux) by facile electrodeposition method. Phase composition, surface morphology and electronic structure information were characterized by XRD, SEM, TEM and XPS. The results unraveled that Cu doping induced the changes in both electronic structure and surface morphology of Ni/Ni3S2 sample, which were in favor of promoting the breakage of H-O bond in H2O and optimizing Ni-Hads adsorption energy, thus improving HER activity with decreased overpotential at −10 mA/cm2 by 202 mV. The influence of Cu(NO3)2 precursor content on HER activity of as-prepared NiCux/Ni3S2/ TM was investigated. NiCu0.57/Ni3S2/TM prepared with 1.2 mM Cu(NO3)2 exhibited the highest electrocatalytic activity toward HER with overpotential of 239 mV at −10 mA/cm2 and Tafel slope of 86 mV/dec. The enhanced activity and superior stability for NiCu0.57/Ni3S2/TM were ascribed to the change in electronic structure and surface morphology.

Similar Papers
  • Research Article
  • Citations10

Structure–function relationship of electrodeposited MoSx film in N, N-dimethyl-formamide/H2O mixture solvent as electrocatalyst for hydrogen evolution

  • Dec 19, 2015
  • International Journal of Hydrogen Energy
  • Guan-Qun Han +8
  • Research Article
  • Citations25

Surface modification engineering on three-dimensional self-supported NiCoP to construct NiCoOx/NiCoP for highly efficient alkaline hydrogen evolution reaction

  • Apr 25, 2020
  • Journal of Alloys and Compounds
  • Hongfei Wu +5
  • Research Article
  • Citations89

A vertical-oriented WS2 nanosheet sensitized by graphene: an advanced electrocatalyst for hydrogen evolution reaction.

  • Jan 01, 2015
  • Nanoscale
  • Tofik Ahmed Shifa +8
  • Research Article
  • Citations56

Fabrication of Te@NiTe2/NiS heterostructures for electrocatalytic hydrogen evolution reaction

  • Oct 16, 2019
  • Electrochimica Acta
  • Fan Mingli +4
  • Research Article
  • Citations1

Enhancing Catalytic Activity of MoS2 Basal Plane S-Vacancy By Co Cluster Addition

  • Jul 23, 2018
  • Electrochemical Society Meeting Abstracts
  • Sangwook Park +4
  • Research Article
  • Citations6

Synergistic Coupling of Hierarchical Heterostructured Ni3P/Ni/VN Microflower Electrocatalyst for Enhanced Hydrogen Evolution Reaction

  • Jan 26, 2023
  • ChemCatChem
  • Changle Fu +8
  • Research Article
  • Citations14

Asymmetrical radial strain energy strategy of M–N–SWCNT single atom catalysts for highly efficient hydrogen evolution: A high-throughput DFT study

  • Aug 10, 2023
  • Applied Surface Science
  • Xin Song +3
  • Research Article
  • Citations26

Host-Guest Interaction Creates Hydrogen-Evolution Electrocatalytic Active Sites in 3d Transition Metal-Intercalated Titanates.

  • Dec 19, 2017
  • ACS Applied Materials & Interfaces
  • Ruiqin Gao +8
  • Research Article
  • Citations78

Activating MoS2/CNs by tuning (001) plane as efficient electrocatalysts for hydrogen evolution reaction

  • Nov 13, 2016
  • International Journal of Hydrogen Energy
  • Wen-Hui Hu +10
  • Research Article
  • Citations24

Defect engineered Janus MoSiGeN4 as highly efficient electrocatalyst for hydrogen evolution reaction

  • Mar 01, 2023
  • Applied Surface Science
  • Chunling Zhang +11
  • Supplementary Content

Advanced Hierarchically 2D and 3D Nanostructured Materials for Electrochemical Clean Energy Conversion

  • Sep 03, 2019
  • Griffith Research Online (Griffith University, Queensland, Australia)
  • Zhengju Zhu
  • Research Article
  • Citations62

Coupled molybdenum carbide and nitride on carbon nanosheets: An efficient and durable hydrogen evolution electrocatalyst in both acid and alkaline media

  • May 22, 2018
  • Electrochimica Acta
  • Chaoyun Tang +9
  • Research Article
  • Citations45

A bimetallic oxide Fe1.89Mo4.11O7 electrocatalyst with highly efficient hydrogen evolution reaction activity in alkaline and acidic media.

  • Jan 01, 2018
  • Chemical Science
  • Zhaomin Hao +7
  • Research Article

Tailoring Binding Abilities By Incorporating Oxophilic Transition Metals on 3D Nanostructured Ni Arrays for Accelerated Alkaline Hydrogen Evolution Reaction

  • Dec 22, 2023
  • ECS Meeting Abstracts
  • Jaerim Kim +5
  • Research Article
  • Citations1

Tailoring Binding Abilities By Incorporating Oxophilic Transition Metals on 3D Nanostructured Ni Arrays for Accelerated Alkaline Hydrogen Evolution Reaction

  • Jul 07, 2022
  • ECS Meeting Abstracts
  • Jaerim Kim +6
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.