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Nickel-Iron-Layered Double Hydroxide Electrocatalyst with Nanosheets Array for High Performance of Water Splitting.
Lu, Zhi; Li, Shilin; Ning, Laiyuan; Tang, Kun; Guo, Yifan; You, Long; Chen, Chong; Wang, Guangxin.
Affiliation
  • Lu Z; School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China.
  • Li S; Henan Engineering Research Center for High Purity Materials and Sputtering Targets, Luoyang 471003, China.
  • Ning L; School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China.
  • Tang K; Henan Engineering Research Center for High Purity Materials and Sputtering Targets, Luoyang 471003, China.
  • Guo Y; School of Material Science and Engineering, Zhengzhou University, Zhengzhou 450001, China.
  • You L; School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China.
  • Chen C; Henan Engineering Research Center for High Purity Materials and Sputtering Targets, Luoyang 471003, China.
  • Wang G; School of Materials Science and Engineering, Henan University of Science and Technology, Luoyang 471003, China.
Molecules ; 29(9)2024 May 01.
Article in En | MEDLINE | ID: mdl-38731584
ABSTRACT
Developing high-performance and cost-competitive electrocatalysts have great significance for the massive commercial production of water-splitting hydrogen. Ni-based electrocatalysts display tremendous potential for electrocatalytic water splitting. Herein, we synthesize a novel NiFe-layered double hydroxide (LDH) electrocatalyst in nanosheets array on high-purity Ni foam. By adjusting the Ni/Fe ratio, the microstructure, and even the behavior of the electrocatalyst in the oxygen evolution reaction (OER), changes significantly. The as-obtained material shows a small overpotential of 223 mV at 10 mAcm-2 as well as a low Tafel slope of 48.9 mV·dec-1 in the 1 M KOH electrolyte. In addition, it can deliver good stability for at least 24 h of continuous working at 10 mAcm-2. This work proposes a strategy for engineering catalysts and provides a method for the development of other Ni-based catalysts with excellent performance.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Molecules Journal subject: BIOLOGIA Year: 2024 Document type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Molecules Journal subject: BIOLOGIA Year: 2024 Document type: Article Affiliation country: China