TY - JOUR
T1 - A bio-inspired Co3O4-polypyrrole-graphene complex as an efficient oxygen reduction catalyst in one-step ball milling
AU - Ren, Guangyuan
AU - Li, Yunan
AU - Guo, Zhaoyan
AU - Xiao, Guozheng
AU - Zhu, Ying
AU - Dai, Liming
AU - Jiang, Lei
N1 - Publisher Copyright:
© 2015, Tsinghua University Press and Springer-Verlag Berlin Heidelberg.
PY - 2015/9/3
Y1 - 2015/9/3
N2 - The development of non-precious metal-based electrocatalysts has attracted much research attention because of their high oxygen reduction reaction (ORR) activities, low cost, and good durability. By one-step in-situ ball milling of graphite, pyrrole, and cobalt salt without resorting to high-temperature annealing, we developed a general and facile strategy to synthesize bio-inspired cobalt oxide and polypyrrole coupled with a graphene nanosheet (Co3O4-PPy/GN) complex. Herein, the exfoliation of graphite and polymerization of pyrrole occurred simultaneously during the ball milling process. Meanwhile, the Co3O4 and Co-Nx ORR active sites were generated from the oxidized cobalt ion, cobalt-PPy, and the newly exfoliated graphene nanosheets via strong π–π stacking interactions. The resultant Co3O4-PPy/GN catalysts showed efficient electrocatalytic performances for ORRs in an alkaline medium with a positive onset and reduction potentials of−0.102 and−0.196 V (vs. Ag/AgCl), as well as a high diffusion-limited current density (4.471 mA·cm−2), which was comparable to that of a Pt/C catalyst (4.941 mA·cm−2). Compared to Pt/C, Co3O4-PPy/GN catalysts displayed better long-term stability, methanol tolerance, and anti-CO-poisoning effects, which are of great significance for the design and development of advanced non-precious metal electrocatalysts. [Figure not available: see fulltext.]
AB - The development of non-precious metal-based electrocatalysts has attracted much research attention because of their high oxygen reduction reaction (ORR) activities, low cost, and good durability. By one-step in-situ ball milling of graphite, pyrrole, and cobalt salt without resorting to high-temperature annealing, we developed a general and facile strategy to synthesize bio-inspired cobalt oxide and polypyrrole coupled with a graphene nanosheet (Co3O4-PPy/GN) complex. Herein, the exfoliation of graphite and polymerization of pyrrole occurred simultaneously during the ball milling process. Meanwhile, the Co3O4 and Co-Nx ORR active sites were generated from the oxidized cobalt ion, cobalt-PPy, and the newly exfoliated graphene nanosheets via strong π–π stacking interactions. The resultant Co3O4-PPy/GN catalysts showed efficient electrocatalytic performances for ORRs in an alkaline medium with a positive onset and reduction potentials of−0.102 and−0.196 V (vs. Ag/AgCl), as well as a high diffusion-limited current density (4.471 mA·cm−2), which was comparable to that of a Pt/C catalyst (4.941 mA·cm−2). Compared to Pt/C, Co3O4-PPy/GN catalysts displayed better long-term stability, methanol tolerance, and anti-CO-poisoning effects, which are of great significance for the design and development of advanced non-precious metal electrocatalysts. [Figure not available: see fulltext.]
KW - ball milling
KW - cobalt-polypyrrole
KW - electrocatalysts
KW - graphene
KW - oxygen reduction reaction
UR - https://www.scopus.com/pages/publications/84946495403
U2 - 10.1007/s12274-015-0844-5
DO - 10.1007/s12274-015-0844-5
M3 - 文章
AN - SCOPUS:84946495403
SN - 1998-0124
VL - 8
SP - 3461
EP - 3471
JO - Nano Research
JF - Nano Research
IS - 11
ER -