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One-step conversion from Ni/Fe polyphthalocyanine to N-doped carbon supported Ni-Fe nanoparticles for highly efficient water splitting
被引:117
|作者:
Zhang, Zhengping
[1
]
Qin, Yeshen
[1
]
Dou, Meiling
[1
]
Ji, Jing
[1
]
Wang, Feng
[1
]
机构:
[1] Beijing Univ Chem Technol, State Key Lab Chem Resource Engn, Beijing Key Lab Electrochem Proc & Technol Mat, Beijing 100029, Peoples R China
来源:
关键词:
Oxygen evolution reaction;
Hydrogen evolution reaction;
Ni-Fe nanoparticles;
Nitrogen-doped carbon;
One-step synthesis;
OXYGEN EVOLUTION REACTION;
COVALENT ORGANIC FRAMEWORKS;
HYDROGEN EVOLUTION;
GRAPHITIC CARBON;
ELECTROCATALYST;
REDUCTION;
HYDROXIDE;
OXIDATION;
CATALYSTS;
POLYMERS;
D O I:
10.1016/j.nanoen.2016.10.035
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
As the two half-reactions in water splitting, the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER) are traditionally carried out with high-cost and scarce precious metals (e.g., Ru, Ir and Pt) as the electrocatalysts, which hampers the large-scale applications in water splitting. Herein, we developed a low-cost and efficient method to prepare the nitrogen-doped carbon supported nickel-iron nanoparticle (NiFe@NC) electrocatalysts, simply by one-step conversion from cross-linked polyphthalocyanine under the direct pyrolysis treatment. The resultant NiFe@NC electrocatalysts exhibit the efficient catalytic activity and durability for both OER and HER as bi-functional electrodes in water splitting device. The water splitting device based on the same NiFe@NC electrocatalyst at both sides of anode and cathode can operate with lower cell voltage (1.81 V, at 10 mA cm(-2)) in 1 M KOH aqueous electrolyte, as well as excellent durability (over 15 h of operation at 8, 10 and 20 mA cm(-2)) and high reversibility. The excellent electrocatalytic performance indicates that NiFe@NC electrocatalysts can be the promising replacement of the precious metals for more practical and cost-efficient water splitting. This work develops a new method for the preparation of high efficient and low-cost Ni-based electrocatalysts for symmetrical water splitting devices.
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页码:426 / 433
页数:8
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