NH3 Assisted Photoreduction and N-doping of Graphene Oxide for High Performance Electrode Materials in Supercapacitors
Overview
Affiliations
Nitrogen-doped graphene was synthesized by simple photoreduction of graphene oxide (GO) deposited on nickel foam under NH3 atmosphere. The combination of photoreduction and NH3 not only reduces the GO in a shorter time but also induces nitrogen doping easily. The nitrogen doped content of N-rGO@NF reaches a high of 5.99 at% with 15 min of irradiation. The nitrogen-doped graphene deposited on Ni foam (N-rGO@NF) can be directly used as an electrode for supercapacitors, without any conductive agents and polymer binders. In the electrochemical measurement, N-rGO@NF displays remarkable electrochemical performance. In particular, the N-rGO@NF irradiated for 45 min at a high current density of 92.3 A g(-1) retained about 77% (190.4 F g(-1)) of its initial specific capacitance (247.1 F g(-1) at 0.31 A g(-1)). Furthermore, the stable voltage window could be extended to 2.0 and 1.5 V by using Li2SO4 and a mixed Li2SO4/KOH electrolyte, and the maximum energy density was high up to 32.6 and 21.2 Wh kg(-1), respectively. The results show that compared to Li2SO4, a mixed electrolyte (Li2SO4/KOH) more efficiently balances the relationship between the high energy densities and high power densities.
Bi K, Han S, Chen J, Bi X, Yang X, Niu L Nanomaterials (Basel). 2024; 14(5).
PMID: 38470763 PMC: 10934630. DOI: 10.3390/nano14050432.
Ju H, Xu W, Fang L, Duan J Front Chem. 2022; 10:854666.
PMID: 35655704 PMC: 9152174. DOI: 10.3389/fchem.2022.854666.
Li X, Lian K, Liu L, Wu Y, Qiu Q, Jiang J Sci Rep. 2016; 6:23495.
PMID: 27002190 PMC: 4802320. DOI: 10.1038/srep23495.