TY - JOUR
T1 - Facile Synthesis of Co9S8 Hollow Spheres as a High-Performance Electrocatalyst for the Oxygen Evolution Reaction
AU - Feng, Xueting
AU - Jiao, Qingze
AU - Liu, Tong
AU - Li, Qun
AU - Yin, Mengmeng
AU - Zhao, Yun
AU - Li, Hansheng
AU - Feng, Caihong
AU - Zhou, Wei
N1 - Publisher Copyright:
© 2017 American Chemical Society.
PY - 2018/2/5
Y1 - 2018/2/5
N2 - Cobalt pentlandite (Co9S8) has recently attracted great attention as a highly efficient and stable earth-abundant catalyst for the oxygen evolution reaction (OER) because of its electronic properties and intrinsic structure. However, the rational design and synthesis of OER catalysts to further enhance the electrochemical activity and durability remain major challenges. Herein, novel Co9S8 hollow spheres were successfully obtained through a template- and surfactant-free method, and they exhibit impressive electrocatalytic properties for the OER. Notably, the as-prepared material has superior OER performance with a low overpotential of 285 mV reached at 10 mA cm-2, a Tafel slope of 58 mV decade-1, and improved stability in 1 M aqueous solution KOH. Impressively, the unique hollow structure of Co9S8 hollow spheres imparts large surface area and abundant active sites, resulting in the superior catalytic activity. Thus, this work provides promising alternative cobalt sulfide-based oxygen evolution electrocatalysts to substitute for precious metal-based electrocatalysts.
AB - Cobalt pentlandite (Co9S8) has recently attracted great attention as a highly efficient and stable earth-abundant catalyst for the oxygen evolution reaction (OER) because of its electronic properties and intrinsic structure. However, the rational design and synthesis of OER catalysts to further enhance the electrochemical activity and durability remain major challenges. Herein, novel Co9S8 hollow spheres were successfully obtained through a template- and surfactant-free method, and they exhibit impressive electrocatalytic properties for the OER. Notably, the as-prepared material has superior OER performance with a low overpotential of 285 mV reached at 10 mA cm-2, a Tafel slope of 58 mV decade-1, and improved stability in 1 M aqueous solution KOH. Impressively, the unique hollow structure of Co9S8 hollow spheres imparts large surface area and abundant active sites, resulting in the superior catalytic activity. Thus, this work provides promising alternative cobalt sulfide-based oxygen evolution electrocatalysts to substitute for precious metal-based electrocatalysts.
KW - Alkaline media
KW - Cobalt pentlandite
KW - Electrocatalysis
KW - Hollow spheres
KW - Non-noble-metal electrocatalyst
KW - Oxygen evolution reaction
UR - http://www.scopus.com/inward/record.url?scp=85041465912&partnerID=8YFLogxK
U2 - 10.1021/acssuschemeng.7b03236
DO - 10.1021/acssuschemeng.7b03236
M3 - Article
AN - SCOPUS:85041465912
SN - 2168-0485
VL - 6
SP - 1863
EP - 1871
JO - ACS Sustainable Chemistry and Engineering
JF - ACS Sustainable Chemistry and Engineering
IS - 2
ER -