| Literature DB >> 26888721 |
Ruili Liu1,2, Lixia Pan2, Jianzhong Jiang3, Xin Xi2, Xiaoxue Liu2, Dongqing Wu3.
Abstract
In this work, nitrogen-doped carbon microfiber (NCMF) is fabricated via a facile co-assembly of natural silk and graphene oxide (GO) and the following thermal treatment. The amphiphilic nature of GO endows NCMF a crumpled surface with a high surface area of 115 m(2) g(-1). As the binder-free electrode in electrical double-layer capacitors, NCMF shows an excellent capacitance of 196 F g(-1) at scan rate of 5 mV s(-1), which is almost four times higher than that of the pristine CMF from silk (55 F g(-1)). Additionally, the capacitance of NCMF can be kept around 92 F g(-1) at a high scan rate of 300 mV s(-1) even after 10000 cycles. More importantly, a high energy density (≈ 22.7 μW h cm(-2)) and power density (≈ 10.26 mW cm(-2)) are achieved by the all-solid-state supercapacitor based on NCMF.Entities:
Year: 2016 PMID: 26888721 PMCID: PMC4757873 DOI: 10.1038/srep21750
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic illustration of the synthesis procedures for NCMF.
Figure 2(a) SEM images of CMF from silk; (b–d) SEM images of NCMF at different magnifications.
Figure 3(a) CVs curves of CMF, NCMF and CMF&G measured at 5 mV s−1; (b) CVs curves of CMF, NCMF and CMF&G measured at 100 mV s−1; (c) galvanostatic charge-discharge curves of NCMF under different constant currents; (d) specific capacitances of CMF, NCMF and CMF&G at different scan rates; (e) cycling stability of NCMF obtained from CV curves at 300 mV s−1 for 10000 circles; (f) electrochemical impedance spectroscopy (EIS) of CMF, NCMF and CMF&G.
Figure 4(a) CVs curves of the ASSS with NCMF as electrode at 5–300 mV s−1; (b) galvanostatic charge-discharge curves of the ASSS with NCMF as electrode under different constant currents; (c) specific capacitances of the ASSS for different scan rates; (d) Ragone plot of the ASSS based on two-electrode mass of active materials.