| Literature DB >> 28344275 |
Bingzhi Liu1, Lili Zhang2, Peirong Qi3, Mingyuan Zhu4, Gang Wang5,6,7, Yanqing Ma8,9,10, Xuhong Guo11,12,13, Hui Chen14, Boya Zhang15, Zhuangzhi Zhao16, Bin Dai17, Feng Yu18,19,20.
Abstract
Nitrogen-dopedEntities:
Keywords: banana peel; binder free; energy conversion and storage; nitrogen doping; porous carbon foam; supercapacitor
Year: 2016 PMID: 28344275 PMCID: PMC5302551 DOI: 10.3390/nano6010018
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1(a) Synthesis of porous carbon foam from banana peels. Scanning electron microscopy (SEM) images of (b) banana peel-derived porous carbon foam (BPPCF) and (c) nitrogen-doped BPPCF (N-BPPCF).
Figure 2Transmission electron microscopy (TEM) and high-resolution TEM (HRTEM) images at different magnifications of (a, c and e) BPPCF and (b, d and f) N-BPPCF.
Figure 3Nitrogen sorption isotherms of (a) BPPCF and (b) N-BPPCF, and the corresponding pore size distribution (insets).
Specific surface area, porosity parameters and nitrogen content of the BPPCF and N-BPPCF samples. In the table, SBET stands for BET surface area, while BJH pore diameter, total pore volume and meso-pore valume were abbreviated as DBJH, VTPV and Vmeso.
| Samples | ||||
|---|---|---|---|---|
| BPPCF | 648.3 | 4.22 | 0.4183 | 0.1903 |
| N-BPPCF | 1357.6 | 3.92 | 0.7651 | 0.1860 |
Figure 4(a) X-ray diffraction (XRD) patterns for BPPCF and N-BPPCF samples. X-ray photoelectron spectroscopy (XPS) spectra of (b) C 1s, (c) O 1s and (d) N 1s for as-obtained BPPCF and N-BPPCF.
Element composition by XPS of the BPPCF and N-BPPCF samples.
| Samples | C (at. %) | O (at. %) | N (at. %) |
|---|---|---|---|
| BPPCF | 90.27 | 5.52 | 4.21 |
| N-BPPCF | 86.29 | 5.04 | 8.67 |
Atomic ratio of various N species from deconvolution N 1s spectra.
| Samples | Pyridinic N | Pyrrolic N | Graphitic N | Pyridine N Oxide |
|---|---|---|---|---|
| BPPCF | 14.51 | 27.35 | 49.13 | 9.01 |
| N-BPPCF | 22.61 | 53.27 | 15.28 | 8.84 |
Figure 5Cyclic voltammogram (CV) curves for (a) BPPCF and (b) N-BPPCF in 6 M KOH at different scan rates. (c) CV curves of the samples at a scan rate of 5 mV/s. (d) Specific capacitance calculated according to CVs.
Figure 6Galvanostatic charge/discharge (GCD) curves for (a) BPPCF and (b) N-BPPCF in 6 M KOH at various current densities. (c) Specific capacitance and (d) the corresponding rate capacitance retention of BPPCF and N-BPPCF.
Figure 7Cycle life of BPPCF and N-BPPCF at various currents: (a) 0.5 A/g for 500 cycles and (b) 2.5 A/g for 5000 cycles.