| Literature DB >> 31766195 |
Ionut-Cristian Radu1, Iuliana-Elena Biru1, Celina-Maria Damian1, Andreea-Cristina Ion1, Horia Iovu1, Eugenia Tanasa2, Catalin Zaharia1, Bianca Galateanu3.
Abstract
This paper reports the synthesis and complex characterization of novel polymeric networks based on the crosslinking ofEntities:
Keywords: chemical modification; crosslinking; grafting; poly(N-isopropylacrylamide); silk fibroin
Mesh:
Substances:
Year: 2019 PMID: 31766195 PMCID: PMC6891396 DOI: 10.3390/molecules24224096
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1FTIR spectra of silk fibroin (SF), poly(N-isopropylacrylamide) (PNIPAM) and SF-g-PNIPAM.
Figure 2RAMAN spectra of silk fibroin (SF), PNIPAM and SF-g-PNIPAM.
Figure 3XPS spectra of silk fibroin (SF), SF-g-PNIPAM and PNIPAM.
Figure 4XRD diffractograms of silk fibroin (SF), PNIPAM and SF-g-PNIPAM.
Figure 5DSC curves of silk fibroin (SF), SF-g-PNIPAM and PNIPAM.
Figure 6TGA curves of silk fibroin (SF), SF-g-PNIPAM and PNIPAM.
Figure 7Circular dichroism (CD) spectra of silk fibroin (SF) and SF-g-PNIPAM.
Figure 8FTIR spectra of residual NIPAM monomer from different SF-g-PNIPAM samples).
Swelling degree of SF-g-PNIPAM samples with different monomer-to-initiator ratios.
| Sample | Swelling Degree (%) |
|---|---|
| SF-g-PNIPAM (5% NIPAM/2.5% ACN) | 360 |
| SF-g-PNIPAM (10% NIPAM/5% ACN) | 290 |
| SF-g-PNIPAM (15% NIPAM/7.5% ACN) | 200 |
| SF-g-PNIPAM (20% NIPAM/10% ACN) | 187 |
| SF-g-PNIPAM (25% NIPAM/12.5% ACN) | 181 |
| SF-g-PNIPAM (30% NIPAM/15% ACN) | 187 |
Figure 9Mechanism of the initiation by cerium ammonium nitrate (A), propagation (B) and the termination reaction for PNIPAM (C).
Figure 10SF-g-PNIPAM crosslinked structure.
Figure 11SEM images of crude silk fibroin ((A), SEI, ×10,000) and SF-g-PNIPAM ((B), SEI, ×10,000).
Composition of the samples.
| No. | Composition with Various Amount of NIPAM | Composition with Various Amount of NIPAM and Cerium Ammonium Nitrate (ACN) |
|---|---|---|
| 1 | SF-g-PNIPAM (5% NIPAM/5% ACN) | SF-g-PNIPAM (5% NIPAM/2.5% ACN) |
| 2 | SF-g-PNIPAM (10% NIPAM/5% ACN) | SF-g-PNIPAM (10% NIPAM/5% ACN) |
| 3 | SF-g-PNIPAM (15% NIPAM/5% ACN) | SF-g-PNIPAM (15% NIPAM/7.5% ACN) |
| 4 | SF-g-PNIPAM (20% NIPAM/5% ACN) | SF-g-PNIPAM (20% NIPAM/10% ACN) |
| 5 | SF-g-PNIPAM (25% NIPAM/5%ACN) | SF-g-PNIPAM (25% NIPAM/12.5%ACN) |
| 6 | SF-g-PNIPAM (30% NIPAM/5%ACN) | SF-g-PNIPAM (30% NIPAM/15%ACN) |
Figure 12Scheme for obtaining SF-g-PNIPAM.