AI Article Synopsis

  • Researchers developed a new, cost-effective bifunctional catalyst made from cobalt hydroxide and aluminum oxyhydroxide on nickel foam, which improves hydrogen production while cutting energy costs.
  • The catalyst's unique structure, rich in oxygen vacancies, enhances conductivity and provides active sites for reactions, leading to strong electrochemical performance for hydrogen evolution and urea oxidation.
  • In tests, this catalyst achieved low reaction voltages and exhibited fast kinetics, highlighting its potential for efficient urea-assisted electrolysis in producing hydrogen.

Article Abstract

Designing inexpensive, high-efficiency and durable bifunctional catalysts for urea oxidation reaction (UOR) and hydrogen evolution reaction (HER) is an encouraging tactic to produce hydrogen with reduced energy expenditure. Herein, oxygen vacancy-rich cobalt hydroxide/aluminum oxyhydroxide heterostructure on nickel foam (denoted as Co(OH)/AlOOH/NF-100) has been fabricated using one step hydrothermal process. Theoretical calculation and experimental results indicate the electrons transfer from Co(OH) to highly active AlOOH results in the interfacial charge redistribution and optimization of electronic structure. Abundant oxygen vacancies in the heterostructure could improve the conductivity and simultaneously serve as the active sites for catalytic reaction. Consequently, the optimal Co(OH)/AlOOH/NF-100 demonstrates excellent electrocatalytic performance for HER (62.9 mV@10 mA cm) and UOR (1.36 V@10 mA cm) due to the synergy between heterointerface and oxygen vacancies. Additionally, the in situ electrochemical impedance spectrum (EIS) for UOR suggests that the heterostructured catalyst exhibits rapid reaction kinetics, mass transfer and current response. Importantly, the urea-assisted electrolysis composed of the Co(OH)/AlOOH/NF-100 manifests a low cell voltage (1.48 V @ 10 mA cm) in 1 M KOH containing 0.5 M urea. This work presents a promising avenue to the development of HER/UOR bifunctional electrocatalysts.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jcis.2024.07.239DOI Listing

Publication Analysis

Top Keywords

cobalt hydroxide/aluminum
8
hydroxide/aluminum oxyhydroxide
8
bifunctional electrocatalysts
8
oxygen vacancies
8
synergistic engineering
4
engineering heterostructure
4
oxygen
4
heterostructure oxygen
4
oxygen vacancy
4
vacancy cobalt
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!