Taiwo OdedairoXuecheng YanJun MaYalong JiaoXiangdong YaoAijun DuZhonghua Zhu
Efficient yet inexpensive electrocatalysts for oxygen reduction reaction (ORR) are an essential component of renewable energy devices, such as fuel cells and metal-air batteries. We herein interleaved novel Co3O4 nanosheets with graphene to develop a first ever sheet-on-sheet heterostructured electrocatalyst for ORR, whose electrocatalytic activity outperformed the state-of-the-art commercial Pt/C with exceptional durability in alkaline solution. The composite demonstrates the highest activity of all the nonprecious metal electrocatalysts, such as those derived from Co3O4 nanoparticle/nitrogen-doped graphene hybrids and carbon nanotube/nanoparticle composites. Density functional theory (DFT) calculations indicated that the outstanding performance originated from the significant charge transfer from graphene to Co3O4 nanosheets promoting the electron transport through the whole structure. Theoretical calculations revealed that the enhanced stability can be ascribed to the strong interaction generated between both types of sheets.
Taiwo Odedairo (1521559)Xuecheng Yan (1521556)Jun Ma (9393)Yalong Jiao (1361691)Xiangdong Yao (1521553)Aijun Du (1276998)Zhonghua Zhu (636929)
Renjie WeiMing FangGuofa DongChangyong LanLei ShuHeng ZhangXiuming BuJohnny C. Ho
Hangcheng LiuZeyu TaoJianfeng LiuZhengrong Shi
Sicong ChenYuanzhi ZhuDanyun XuWenchao PengYang LiGuoliang ZhangFengbao ZhangXiaobin Fan
Xuemei ZhouZhaoming XiaZhimin TianYuanyuan MaYongquan Qu