| Literature DB >> 27031907 |
Zhijuan Wang1, Bing Li1, Xiaoming Ge1, F W Thomas Goh1, Xiao Zhang2, Guojun Du1, Delvin Wuu1, Zhaolin Liu1, T S Andy Hor1,3, Hua Zhang2, Yun Zong1.
Abstract
Durable electrocatalysts with high catalytic activity toward oxygen reduction reaction (ORR) are crucial to high-performance primary zinc-air batteries (ZnABs) and direct methanol fuel cells (DMFCs). An efficient composite electrocatalyst, Co@Co3 O4 core@shell nanoparticles (NPs) embedded in pyrolyzed polydopamine (PPD) is reported, i.e., in Co@Co3 O4 @PPD core@bishell structure, obtained via a three-step sequential process involving hydrothermal synthesis, high temperature calcination under nitrogen atmosphere, and gentle heating in air. With Co@Co3 O4 NPs encapsulated by ultrathin highly graphitized N-doped carbon, the catalyst exhibits excellent stability in aqueous alkaline solution over extended period and good tolerance to methanol crossover effect. The integration of N-doped graphitic carbon outer shell and ultrathin nanocrystalline Co3 O4 inner shell enable high ORR activity of the core@bishell NPs, as evidenced by ZnABs using catalyst of Co@Co3 O4 @PPD in air-cathode which delivers a stable voltage profile over 40 h at a discharge current density of as high as 20 mA cm(-2) .Entities:
Keywords: cobalt oxide; dopamine; nitrogen-doped carbon; oxygen reduction reaction; zinc-air batteries
Year: 2016 PMID: 27031907 DOI: 10.1002/smll.201503694
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281