Co-modified Ni/N-doped carbon as electrocatalysts for HER and OER

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作者
Xinyi Shen
Wei Tan
Zhicheng Wei
Xianyi Wang
Hailong Zhou
Jianguo Lv
Min Zhao
Miao Zhang
Jin Yang
Gang He
Lei Yang
机构
[1] Hefei Normal University,School of Physics and Materials Engineering
[2] Anhui University,School of Physics and Material Science
[3] Hefei Normal University,Key Laboratory for Photoelectric Detection Science and Technology of Education, Department of Anhui Province
[4] Hefei University,Department of Chemistry and Materials Engineering
来源
Journal of Materials Science: Materials in Electronics | 2021年 / 32卷
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摘要
Ni,Co-MOFs have been synthetized by a simple hydrothermal method. Subsequently, Co,Ni/N-doped porous carbon have been prepared by pyrolysis method using the Ni,Co-MOFs as precursor. The results show that the samples present high degree of graphitization. The Co-1–Ni-0.5/NC possesses the largest BET surface area (94.73 m2/g) and pore volume (0.456 cm3/g). The Co-1–Ni-0.5/NC presents the smallest HER overpotential (179 mV) and the best electrocatalytic activity for HER. The Co-0.5–Ni-0.5/NC and Co-1–Ni-0.5/NC have the relatively low overpotential for OER, which are about 348 mV and 383 mV, respectively. The smallest Tafel slope value indicates that Co-1–Ni-0.5/NC presents the best electrocatalytic reactive kinetics. Excellent electrocatalytic performance may be attributed to the more active sites, the higher specific surface area and mesopores as well as the lower charge-transfer resistance. The excellent HER and OER of Co-1–Ni-0.5/NC make its potential to be used on overall water splitting.
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页码:22974 / 22983
页数:9
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