研究目的
To provide a rapid and low-cost method to fabricate RuO2 electrocatalysts, accounting for the influence of different synthesis parameters (temperature, irradiation time, oxidizing agent addition) upon the formation of this oxide and evaluate its preliminary electrochemical performances towards OER and CER mechanisms.
研究成果
RuO2 nanoparticles were successfully synthesized using MWAS, resulting in a rapid and low-cost process to produce uniform crystalline RuO2 nanostructures. The electrochemical characterization revealed the occurrence of OER and CER mechanisms in H2SO4 and NaCl media, respectively. Further research is needed to consolidate the RuO2 nanostructures in aspects related to catalytic activity and electrochemical stability.
研究不足
The stability of Ti/RuO2 prepared by MWAS is compromised after 5 cycles due to inadequate adherence of the catalyst onto Ti. Further research is needed to optimize the impregnation technique to enhance homogeneous spreading and strong adherence of RuO2 nanoparticles onto Ti.