| Literature DB >> 29876346 |
Hezhang Chen1, Yingde Huang1, Gaoqiang Mao1, Hui Tong1, Wanjing Yu1, Junchao Zheng1, Zhiying Ding2.
Abstract
Reduced graphene oxide (rGO) sheet decorated Na3V2(PO4)3 (NVP) microspheres were successfully synthesized by spray-drying method. The NVP microspheres were embedded by rGO sheets, and the surface of the particles were coated by rGO sheets and amorphous carbon. Thus, the carbon conductive network consisted of rGO sheets and amorphous carbon generated in the cathode material. NVP microspheres decorated with different content of rGO (about 0, 4, 8, and 12 wt%) were investigated in this study. The electrochemical performance of NVP exhibited a significant enhancement after rGO introduction. The electrode containing about 8 wt% rGO (NVP/G8) showed the best rate and cycle performance. NVP/G8 electrode exhibited the discharge capacity of 64.0 mAh g-1 at 70°C, and achieved high capacity retention of 95.5% after cycling at 10°C for 100 cycles. The polarization of the electrode was inhibited by the introduction of rGO sheets. Meanwhile, compared with the pristine NVP electrode, NVP/G8 electrode exhibited small resistance and high diffusion coefficient of sodium ions.Entities:
Keywords: Na3V2(PO4)3; amorphous carbon; microspheres; reduced graphene oxide; sodium ion batteries
Year: 2018 PMID: 29876346 PMCID: PMC5974037 DOI: 10.3389/fchem.2018.00174
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1Schematic illustration of synthetic process of NVP/rGO material.
Figure 2(A) XRD patterns of NVP/rGO samples; (B) TGA curve of NVP/G8 sample; (C) Raman spectrum of NVP/rGO samples; (D) C1s XPS analysis spectrum of NVP/G8 sample.
Figure 3SEM images of (a) NVP/C, (b) NVP/G4, (c) NVP/G8, and (d) NVP/G12 samples.
Figure 4(a,b) TEM and (c) HRTEM images of NVP/G8 sample.
Figure 5(A) Charge and discharge curves of NVP/rGO electrodes; the inset is the rate performance of the electrodes; (B) CV curves of NVP/C and NVP/G8 electrodes; charge and discharge curves of (C) NVP/C and (D) NVP/G8 electrodes at various current rates; (E) rate performance of NVP/C and NVP/G8 electrodes at various current rates; (F) cycle performance of NVP/C and NVP/G8 electrodes at 10°C.
Figure 6(A) Nyquist plots of NVP/C and NVP/G8 electrodes; the inset is the equivalent circuit for EIS result fitting; (B) the relationship between Z′ and ω−1/2 in the low-frequency region.
Impedance parameters of NVP/C and NVP/G8 electrodes obtained from equivalent circuit fitting.
| NVP/C | 33.8 | 715.8 | 62.4 | 8.72 × 10−14 |
| NVP/G8 | 24.0 | 399.0 | 31.0 | 1.24 × 10−13 |