Bimetallic Co0.4Ni1.6P derived from cobalt functionalized a new nickel metal-organic-framework as an advanced electrode for high-performance supercapacitors

[Display omitted] •The Co@Ni-MOF was prepared by doping a new Ni-MOF with Co2+ through post-synthetic modification method.•The Co0.4Ni1.6P was obtained through phosphorization of Co@Ni-MOF and showed high capacity 330 F/g at 1 A/g and capacity retention was 96% over 5000 cycles. A new nickel metal o...

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Veröffentlicht in:Inorganic chemistry communications 2021-08, Vol.130, p.108733, Article 108733
Hauptverfasser: Nie, Shengqiang, Yang, Huan, Zhou, Chanyuan, Liu, Yuan, Pan, Cong, Luo, Jun, Ma, Chao, Wang, Yi
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Sprache:eng
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Zusammenfassung:[Display omitted] •The Co@Ni-MOF was prepared by doping a new Ni-MOF with Co2+ through post-synthetic modification method.•The Co0.4Ni1.6P was obtained through phosphorization of Co@Ni-MOF and showed high capacity 330 F/g at 1 A/g and capacity retention was 96% over 5000 cycles. A new nickel metal organic framework (MOF) based on 4-cyan-5-acidamide-bisimidazole were fabricated using hydrothermal method. The Co@Ni-MOFwasprepared by doping Ni-MOF with Co2+through post-synthetic modification method. The bimetallic Co0.4Ni1.6P was obtained through phosphorization of Co@Ni-MOF and showed high specific capacity 330F/g at 1 A/g and capacity retention was 96% over 5000 cycles. The supercapacitor device was prepared (Co0.4Ni1.6P//AC) and demonstrated specific energy of 30.9 Wh/kg at power of 806 W/kg. These results provided a new way to design bimetallic phosphide (MOF-based materials) for supercapacitor application.
ISSN:1387-7003
1879-0259
DOI:10.1016/j.inoche.2021.108733