副教授
硕士生导师
教师拼音名称:pangbeili
电子邮箱:
入职时间:2016-09-28
所在单位:材料物理教研室
学历:博士研究生
性别:女
学位:工学博士
职称:副教授
主要任职:材料物理教研室主任
毕业院校:韩国忠南大学
移动电话:
邮箱:
最后更新时间:..
关键字:HIGHLY EFFICIENT; REDUCTION; NANOPARTICLES; NANOTUBES; CATALYST; EVOLUTION; HYBRID; ALLOY; BLACK; MOFS
摘要:A Zn-air battery serves as an energy storage solution to address fossil energy and environmental concerns. However, sluggish kinetics in oxygen reduction reactions (ORRs) and oxygen evolution reactions (OERs) demand innovative, cost-effective, and stable bifunctional catalysts to replace precious metal catalysts. In this study, an FeCo-CNTs/KB catalyst was synthesized by pyrolyzing NH2-MIL-101(Fe) coated with glu-Co and conductive carbon (KB). This hierarchical structure comprises carbon nanotubes (CNTs) grafted onto a carbon matrix, housing abundant FeCo nanoparticles within the nanotubes or matrix. KB introduction enhances FeCo nanoparticle dispersion and fosters uniform CNT formation with smaller diameters, thus exposing active sites. Consequently, the FeCo-CNTs/KB catalyst exhibits remarkable bifunctional electrocatalytic activity: an ORR half-wave potential of 0.84 V and an OER overpotential of 0.45 V (10 mA cm-2). Furthermore, the FeCo-CNTs/KB catalyst in a secondary Zn-air battery showcases enduring charge-discharge performance (>= 300 h).
卷号:14
期号:3
是否译文:否