登录

何成

教授

基本信息 / Basic Information

  • 博士生导师 硕士生导师
  • 电子邮箱:
  • 学历: 硕博连读
  • 学位: 博士
  • 学科: 材料科学与工程

论文成果

当前位置: 中文主页 - 科学研究 - 论文成果

Enhanced electrocatalytic performance of LCO-NiFe-C3N4 composite material for highly efficient overall water splitting

发布时间:2025-10-16
点击次数:
发布时间:
2025-10-16
论文名称:
Enhanced electrocatalytic performance of LCO-NiFe-C3N4 composite material for highly efficient overall water splitting
发表刊物:
Journal of Colloid And Interface Science
摘要:
The rising global energy demand & environmental crisis spur exploration of traditional fuel alternatives. Hydrogen, with high energy density & pollution-free potential, is seen as a promising energy carrier. The development of efficient and durable electrocatalysts for both oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) is of paramount importance for renewable energy conversion and storage systems. Developing efficient and stable catalysts is crucial for improving OER performance, but the scarcity, high cost, and stability issues of precious metal oxide catalysts hinder their industrial application. Herein, the composite material was synthesized using a combination of sol-gel and one-step hydrothermal methods, followed by an annealing process. The inherent electrocatalytic activity of LaCoO3, a perovskite oxide, towards both OER and HER was harnessed. In an alkaline electrolyte, the LCO-NiFe-C3N4 demonstrated remarkable electrocatalytic performance with overpotentials of 251.4 mV for OER and 186.7 mV for HER at a current density of 10 mA cm-2. The Tafel slopes were 60.8 mV dec-1 for OER and 138.53 mV dec-1 for HER, suggesting that the LCO-NiFe-C3N4 composite material is a promising candidate as a bifunctional catalyst. Theoretical calculations also confirm that doped elements can effectively regulate the electronic properties of active sites, thereby reducing the energy barrier of the rate-limiting step in the OER reaction and significantly enhancing the electrocatalytic activity of the catalyst. This study presents the synthesis and electrocatalytic performance evaluation of a novel (LCoO3NiFe-C3N4) LCO-NiFe-C3N4 composite material, showcasing its potential as an effective bifunctional catalyst.
合写作者:
W.X. Zhang, S.L. Kong, W.W. Wang, Y.M. Cheng, Z. Li, C. He*
卷号:
680 (2025) 787–796
页面范围:
680 (2025) 787–796
是否译文:
发表时间:
2025-02-15