| Literature DB >> 30945028 |
Zhongguan Liang1, Luomeng Zhang1, Hao Liu1, Jianping Zeng2, Jianfei Zhou1, Hongjian Li1, Hui Xia3.
Abstract
A facile hydrothermal polymerization method has been developed for the preparation of monodisperseEntities:
Keywords: Energy storage and conversion; Monodisperse carbon spheres; Supercapacitor; Surfactant; Triblock Copolymer F108
Year: 2019 PMID: 30945028 PMCID: PMC6447644 DOI: 10.1186/s11671-019-2952-8
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Scheme 1The synthesis process of MCSs
Fig. 1SEM and TEM images of MCSs prepared at different phenol and formaldehyde dosages of a, e 0.2 mL, b, f 0.4 mL, c, g 0.6 mL, and d, h 0.8 mL, respectively. i–l The particle size distribution of MCSs corresponding to the SEM images (a–d)
Fig. 2a XRD pattern. b Raman spectra. c XPS survey spectrum. d High-resolution N 1s spectra. e Nitrogen adsorption/desorption isotherms. f Pore size distribution curve of the aMCSs-0.4 material
Fig. 3The electrochemical characteristics of the aMCSs-0.4 electrode. a CV curves at different scan rates from 10 to 100 mV s−1. b GCD curves at different current densities from 0.5 to 20 A g−1. c Specific capacitance as a function of current densities. d Nyquist plot and the inset show the magnify plots at a high-frequency range. e Bode plot. f Cycling performance at a current density of 20 A g−1 for 10,000 cycles