| Literature DB >> 30965959 |
Liang Yu1, Zhongbiao Shao2, Lan Xu3, Mingdi Wang4.
Abstract
An improved bubble-electrospinning, consisting of a cone shaped air nozzle, a copper solution reservoir connected directly to the power generator, and a high speed rotating copper wire drum as a collector, was presented successfully to obtain high throughput preparation of aligned nanofibers. The influences of drum rotation speed on morphology and properties of obtained nanofibers were explored and researched. The results showed that the alignment degree, diameter distribution, and properties of nanofibers were improved with the increase of the drum rotation speed.Entities:
Keywords: aligned nanofibers; bubble-electrospinning; high throughput; properties
Year: 2017 PMID: 30965959 PMCID: PMC6418511 DOI: 10.3390/polym9120658
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1Schematic of the improved BE apparatus.
Figure 2SEM pictures of the highly aligned PAN nanofibers with the different drum rotation speed. The right figures were the according diameter distribution.
The relationship between the drum rotation speed and the average diameter of nanofibers.
| Rotating speed (r/min) | Average diameter ( | Standard deviation ( | Confidence interval (nm) |
|---|---|---|---|
| 0 | 296 | 95.5 | ±18.7 |
| 300 | 270 | 68.3 | ±13.4 |
| 600 | 249 | 67.0 | ±13.1 |
| 900 | 230 | 49.0 | ±9.6 |
| 1200 | 226 | 42.6 | ±8.3 |
Figure 3Effects of the drum rotation speed on average diameter and alignment of PAN nanofibers. (a) Average diameter; (b) nanofiber alignment.
The relationship between the drum rotation speed and the tensile strength/elongation at break of aligned nanofibers.
| Rotating speed (r/min) | Tensile strength (Pa × 104) | Elongation at break (%) |
|---|---|---|
| 0 | 98 ± 7.9 | 8.6 ± 3.14 |
| 300 | 211 ± 6.6 | 13.3 ± 2.75 |
| 600 | 280 ± 9.0 | 11.9 ± 1.63 |
| 900 | 293 ± 8.5 | 7.1 ± 1.77 |
| 1200 | 294 ± 12.8 | 6.4 ± 1.24 |
Figure 4Mechanical properties of aligned PAN nanofiber membranes with the different rotation speed of drum. (a) Breaking strength; (b) elongation at break.
Figure 5The effects of the drum rotation speed on the CA of PAN nanofiber membranes.
Figure 6XRD spectra of PAN nanofibers under the different drum rotation speed, (a) 0 r/min; (b) 300 r/min; (c) 600 r/min; (d) 900 r/min; (e) 1200 r/min.