CrN supported by carbon nanosheets as efficient catalysts toward oxygen reduction reaction and Zn-air batteries

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作者
YaTing Zhang [1 ]
Fan Zhang [2 ]
Zhe Lu [1 ]
JunMing Luo [1 ,3 ]
SuYang Feng [1 ]
Qi Wang [1 ]
Hui Chen [1 ]
HaoMing Wu [1 ]
ZhengPei Miao [1 ]
Bin Chi [4 ]
Neng Yu [5 ]
ChengHang You [1 ]
Jing Li [1 ]
XinLong Tian [1 ]
机构
[1] School of Chemistry and Chemical Engineering,School of Marine Science and Engineering,Hainan Provincial Key Lab of Fine Chemistry,Hainan University
[2] State Power Investment Group,Hainan Electric Power CoLtd
[3] Key Laboratory of Fuel Cell Technology of Guangdong Province
[4] Shenzhen Automotive Research Institute,Beijing Institute of Technology
[5] State Key Laboratory of Nuclear Resources and Environment,East China University of
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摘要
Exploring non-precious efficient oxygen reduction reaction (ORR) catalysts is of great significance to fuel cells and Zn-air batteries (ZABs).CrN is a theoretically promising ORR catalyst,but its potential needs to be unlocked by proper supports that provide high conductivity and high exposure of active sites.In this work,we introduce a novel synthesis of carbon nanosheets-supported CrN nanoparticles (CrN/C) by annealing the mixture of CrCl3,1,10-phenanthroline and melamine via a two-step pyrolysis.The prepared CrN/C materials show good ORR activity and stability in acidic and alkaline media.The optimal CrN/C material has an ORR half-wave potential of 0.73 and 0.72 V (vs.reversible hydrogen electrode) in acidic and alkaline media,respectively.And it retains 82% and 78% of ORR current density in acidic and alkaline media after durability tests,respectively.Furthermore,the optimal CrN/C material-based self-breathing ZABs deliver a maximum power density of 168 mW·cm-2,which is one of the highest among transition metal nitrides-based ZABs It is found that the ORR activity of CrN/C materials is highly related to the Cr–N valence state.This work highlights the good potential of CrN as robust ORR catalyst and verifies its promising application in ZABs.
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页码:4973 / 4981
页数:9
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