| Literature DB >> 25427677 |
Zhaohui Ma1, Yuesheng Wang1, Chunwen Sun1, J A Alonso2, M T Fernández-Díaz3, Liquan Chen1.
Abstract
Sodium-ion batteries have attracted considerable interest as an alternative toEntities:
Year: 2014 PMID: 25427677 PMCID: PMC5384114 DOI: 10.1038/srep07231
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Observed (crosses), calculated (line), and difference (bottom) neutron-diffraction patterns of the tetragonal Na3[Ti2P2O10F] at room temperature (a) and 600°C (b).
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) for Na3[Ti2P2O10F] from NPD data at RT. Space group I4/mmm, unit cell parameters a = 6.41763 (8) Å, c = 10.66360 (16) Å, V = 439.19 (1) Å3, Z = 4. Discrepancy factors: Rp = 3.49%; Rwp = 4.50%, Rexp = 1.67%, χ2 = 7.26, RB = 4.34%
| Occ. (<1) | ||||||
|---|---|---|---|---|---|---|
| Na1 | 8 | 0.2760 (5) | 0.2760 (5) | 0.00000 | 0.048 (3) | 0.714 (11) |
| Ti | 4 | 0.00000 | 0.00000 | 0.1980 (3) | 0.0068 (8)* | |
| O1 | 16n | 0.00000 | 0.30816 (14) | 0.16445 (9) | 0.0058 (4)* | |
| O2 | 4e | 0.00000 | 0.00000 | 0.35731 (19) | 0.0117 (5)* | |
| P | 4 | 0.00000 | 0.50000 | 0.25000 | 0.0004 (5)* | |
| F | 2 | 0.00000 | 0.00000 | 0.00000 | 0.0079 (7)* | |
| Atomic displacement parameters (Å2) | ||||||
Figure 2Crystal structure of tetragonal Na3[Ti2P2O10F] observed (a) approximately along the a axis and (b) along the c axis.
Figure 3(a) Difference Fourier maps in a model where Na has been removed. Na1 peaks are clearly located at 8 h sites, but there is intermediate nuclear density between the peaks, indicating Na is delocalized on the ac plane.
Figure 4Unit cell of Na3[Ti2P2O10F] including the Na delocalization observed by Fourier Synthesis; Na are delocalized in octagonal rings places in the interlayer space between PO4-TiO5F sheets.
Figure 5(a) Enhanced anisotropic motion of Na atoms at 600°C, with the major axis of the ellipsoids (90% probability) along the diagonals of the unit cell. (b) ab projection suggesting the jumping path of Na+ ions to neighboring unit cells from partially occupied 8h sites.
Figure 6Sodium storage performance of Na3[Ti2P2O10F] electrodes.
(a) The charge/discharge profiles at various current rates in the voltage range of 0 to 2.5 V versus Na+/Na; (b) Rate capability: the capacity versus cycle number at various current rates; (c) Long-term cycling performance: the capacity and Coulombic efficiency versus cycle number at a current rate of 100 mA g−1.