Vanadium nitride nanoparticle decorated N-doped carbon nanotube/N-doped carbon nanosheet hybrids via a C3N4 self-sacrificing method for electrochemical capacitors

22Citations
Citations of this article
13Readers
Mendeley users who have this article in their library.

Abstract

Owing to the wide negative potential window (∼1.2 V) along with high specific capacitance (1340 F g−1) in alkaline electrolyte, vanadium nitride (VN) has been served as promising negative supercapacitor electrode material. However, VN is easy to dissolve during cycling process and shows low capacitance retainability. Herein, a hybrid electrode (marked as VN/NCNT/NCN), featuring VN nanoparticles and N-doped carbon nanotube inserted in N-doped carbon nanosheets, has been fabricated with a facile C3N4 self-sacrificing method. The porous structure and high conductive carbon skeleton, as well as the uniform distribution of VN nanoparticles give VN/NCNT/NCN a great amount of active site and fulfill excellent electrochemical performance for VN/NCNT/NCN-based electrode. The as-fabricated hybrid electrode exhibits a maximum specific capacitance of 232.9 F g−1 at 1 A g−1. Moreover, the cycling performance has been greatly improved and the specific capacitance remains 91% after 5000 cycles.

Cite

CITATION STYLE

APA

Liu, J., He, X., Guo, F., Liu, B., Sun, Z., Zhang, L., & Chang, H. (2022). Vanadium nitride nanoparticle decorated N-doped carbon nanotube/N-doped carbon nanosheet hybrids via a C3N4 self-sacrificing method for electrochemical capacitors. RSC Advances, 12(24), 15354–15360. https://doi.org/10.1039/d2ra02789e

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free