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A mini review on nickel-based electrocatalysts for alkaline hydrogen evolution reaction

  • Ming Gong
  • , Di Yan Wang
  • , Chia Chun Chen
  • , Bing Joe Hwang
  • , Hongjie Dai*
  • *此作品的通信作者

研究成果: 雜誌貢獻期刊論文同行評審

905   連結會在新分頁中打開 引文 斯高帕斯(Scopus)

摘要

High gravimetric energy density, earth-abundance, and environmental friendliness of hydrogen sources have inspired the utilization of hydrogen fuel as a clean alternative to fossil fuels. Hydrogen evolution reaction (HER), a half reaction of water splitting, is crucial to the low-cost production of pure H2 fuels but necessitates the use of electrocatalysts to expedite reaction kinetics. Owing to the availability of low-cost oxygen evolution reaction (OER) catalysts for the counter electrode in alkaline media and the lack of low-cost OER catalysts in acidic media, researchers have focused on developing HER catalysts in alkaline media with high activity and stability. Nickel is well-known as an HER catalyst and continuous efforts have been undertaken to improve Ni-based catalysts as alkaline electrolyzers. In this review, we summarize earlier studies of HER activity and mechanism on Ni surfaces, along with recent progress in the optimization of the Ni-based catalysts using various modern techniques. Recently developed Ni-based HER catalysts are categorized according to their chemical nature, and the advantages as well as limitations of each category are discussed. Among all Ni-based catalysts, Ni-based alloys and Ni-based hetero-structure exhibit the most promising electrocatalytic activity and stability owing to the fine-tuning of their surface adsorption properties via a synergistic nearby element or domain. Finally, selected applications of the developed Ni-based HER catalysts are highlighted, such as water splitting, the chloralkali process, and microbial electrolysis cell.

原文英語
頁(從 - 到)28-46
頁數19
期刊Nano Research
9
發行號1
DOIs
出版狀態已發佈 - 2016 1月 1

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG 7 - 可負擔的潔淨能源
    SDG 7 可負擔的潔淨能源

ASJC Scopus subject areas

  • 原子與分子物理與光學
  • 一般材料科學
  • 凝聚態物理學
  • 電氣與電子工程

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