Asymmetric Pseudocapacitors Based on Interfacial Engineering of Vanadium Nitride Hybrids

Vanadium nitride (VN) shows promising electrochemical properties as an energy storage devices electrode, specifically in supercapacitors. However, the pseudocapacitive charge storage in aqueous electrolytes shows mediocre performance. Herein, we judiciously demonstrate an impressive pseudocapacitor...

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Veröffentlicht in:Nanomaterials (Basel, Switzerland) Switzerland), 2020-06, Vol.10 (6), p.1141
Hauptverfasser: Su, Hailan, Xiong, Tuzhi, Tan, Qirong, Yang, Fang, Appadurai, Paul B S, Afuwape, Afeez A, Balogun, M-Sadeeq Jie Tang, Huang, Yongchao, Guo, Kunkun
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Sprache:eng
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Zusammenfassung:Vanadium nitride (VN) shows promising electrochemical properties as an energy storage devices electrode, specifically in supercapacitors. However, the pseudocapacitive charge storage in aqueous electrolytes shows mediocre performance. Herein, we judiciously demonstrate an impressive pseudocapacitor performance by hybridizing VN nanowires with pseudocapacitive 2D-layered MoS nanosheets. Arising from the interfacial engineering and pseudocapacitive synergistic effect between the VN and MoS , the areal capacitance of VN/MoS hybrid reaches 3187.30 mF cm , which is sevenfold higher than the pristine VN (447.28 mF cm ) at a current density of 2.0 mA cm . In addition, an asymmetric pseudocapacitor assembled based on VN/MoS anode and TiN coated with MnO (TiN/MnO ) cathode achieves a remarkable volumetric capacitance of 4.52 F cm and energy density of 2.24 mWh cm at a current density of 6.0 mA cm . This work opens a new opportunity for the development of high-performance electrodes in unfavorable electrolytes towards designing high areal-capacitance electrode materials for supercapacitors and beyond.
ISSN:2079-4991
2079-4991
DOI:10.3390/nano10061141