| Literature DB >> 30966416 |
Zoi Terzopoulou1, Diana Baciu2, Eleni Gounari3, Theodore Steriotis4, Georgia Charalambopoulou5, Dimitrios Bikiaris6.
Abstract
Poly(ε-caprolactone) (Entities:
Keywords: bioglass; biomineralization; nanocomposites; poly(ε-caprolactone); ring opening polymerization
Year: 2018 PMID: 30966416 PMCID: PMC6415238 DOI: 10.3390/polym10040381
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1TEM micrographs of (a–c) bBG and (d–f) tBG.
Figure 2FTIR spectra of bBG and tBG.
Figure 3Wide-angle and low-angle XRD patterns of (a) bBG and (b) tBG.
Figure 4Adsorption-desorption isotherms of (a) bBG and (b) tBG nanobioglasses.
Figure 5Pore size distribution curves of (a) bBG and (b) tBG.
Figure 6TGA and DTG thermograms of (a) bBG and (b) tBG.
Molecular weight and PDI values measured by GPC.
| Sample | PDI | |||
|---|---|---|---|---|
| PCL | 48,400 | 71,900 | 68,300 | 1.49 |
| PCL/bBG 0.5% | 53,900 | 83,900 | 78,700 | 1.55 |
| PCL/bBG 1.0% | 59,200 | 90,300 | 85,300 | 1.53 |
| PCL/bBG 2.5% | 61,900 | 88,900 | 84,600 | 1.44 |
| PCL/tBG 0.5% | 49,900 | 83,300 | 77,900 | 1.67 |
| PCL/tBG 1.0% | 51,400 | 84,500 | 78,800 | 1.64 |
| PCL/tBG 2.5% | 61,200 | 96,200 | 90,300 | 1.57 |
Figure 7Backscattered SEM micrographs of (a) PCL/bBG 0.5%, (b) PCL/bBG 1.0%, (c) PCL/bBG 2.5%, (d) PCL/tBG 0.5%, (e) PCL/tBG 1.0%, (f) PCL/tBG 2.5%.
Figure A1FTIR spectra of (a) PCL/bBG and (b) PCL/tBG nanocomposites.
Figure 8FTIR spectra of (a) PCL/bBG nanocomposites, (b) PCL/tBG nanocomposites and (c,d) zoomed in the region 1500–650 cm−1.
Figure 9X-ray diffraction patterns of (a) PCL/bBG nanocomposites and (b) PCL/tBG nanocomposites.
Figure 10Effect of nanofiller type and content on (a) tensile stress at break, (b) elongation at break, (c) Young’s Modulus and (d) impact strength of PCL nanocomposites. The lines are just a guide to the eye.
Thermal characteristics of PCL and its nanocomposites as measured by DSC.
| Sample | Xc (%) | ||
|---|---|---|---|
| PCL | 65.4 | 31.9 | 59.96 |
| PCL/bBG 0.5% | 66.4 | 32.1 | 62.57 |
| PCL/bBG 1.0% | 67.1 | 32.4 | 67.83 |
| PCL/bBG 2.5% | 64.8 | 31.4 | 50.31 |
| PCL/tBG 0.5% | 66.4 | 32.3 | 65.12 |
| PCL/tBG 1.0% | 66.8 | 32.3 | 72.02 |
| PCL/tBG 2.5% | 65.1 | 30.7 | 57.43 |
Figure A2(a,c) Mass loss curves and (b,d) DTG curves of PCL/bBG and PCL/tBG nanocomposites.
Characteristic temperatures of thermal degradation of PCL and its nanocomposites.
| Sample | ||
|---|---|---|
| PCL | 329.9 | 438.2 |
| PCL/bBG 0.5% | 333.6 | 436.9 |
| PCL/bBG 1.0% | 335.8 | 434.8 |
| PCL/bBG 2.5% | 304.9 | 430.0 |
| PCL/tBG 0.5% | 330.1 | 436.9 |
| PCL/tBG 1.0% | 330.0 | 436.0 |
| PCL/tBG 2.5% | 311.8 | 431.9 |
Water contact angle values of PCL and its nanocomposites.
| Sample | Contact angle (°) |
|---|---|
| PCL | 85.3 ± 0.68 |
| PCL/bBG 0.5% | 81.7 ± 0.3 |
| PCL/bBG 1.0% | 75.7 ± 0.41 |
| PCL/bBG 2.5% | 73.2 ± 0.3 |
| PCL/tBG 0.5% | 80 ± 2.87 |
| PCL/tBG 1.0% | 74.1 ± 0.48 |
| PCL/tBG 2.5% | 71.8 ± 0.21 |
Figure 11Plots of mass loss vs time of enzymatic degradation of (a) PCL/bBG and (b) PCL/tBG.
Figure 12SEM micrographs of PCL and its nanocomposites after 3, 6 and 9 days of enzymatic degradation.
Figure A3Changes in the crystallinity of (a) PCL/bBG and (b) PCL/tBG nanocomposites during enzymatic degradation (calculated by DSC, heating with rate 10 °C).
Figure 13SEM micrographs and EDX spectra of (a) PCL/bBG 0.5% and (b) PCL/tBG 0.5% after 14 days of soaking in SBF.
Figure 14Genetically modified WJ-SCs on (a) PCL, (b) PCL/bBG 0.5%, (c) PCL/bBG 1%, (d) PCL/bBG 2.5%, (e) PCL/tBG 0.5%, (f) PCL/tBG 1.0% and (g) PCL/tBG 2.5%.
Figure 15MTT assay results of WJ-SCs cells after seeding for 24 h on PCL and its nanocomposites.