| Literature DB >> 35520893 |
Duy Le1, Chanatip Samart1,2, Suwadee Kongparakul1,2, Kotohiro Nomura3.
Abstract
Synthesis of new polyesters by acyclic diene metathesis (ADMET) polymerization of α,ω-diene, 4-allyl-2-methoxyphenyl 10-undecenoate (M1), prepared from bio-renewable eugenol and castor oil (undecenoate), have been demonstrated. Ruthenium-carbene (called second generation Grubbs) catalyst afforded polymers with unimodal molecular weight distributions (M n = 12 700, M w/M n = 1.85). The polymerization in the presence of a triarm cross-linker, 5-formylbenzene-1,2,3-triyl tris(undec-10-enoate), also afforded polymers with certain uniform network structures. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35520893 PMCID: PMC9062397 DOI: 10.1039/c9ra01065c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Synthesis of monomers (M1–M3).
Fig. 11H NMR spectra (in CDCl3 at 25 °C) of (a) 4-allyl-2-methoxyphenyl 10-undecenoate (M1) and (b) 5-formylbenzene-1,2,3-triyl tris(undec-10-enoate) (CL) with their peak assignments.[24]
Scheme 2Acyclic diene metathesis (ADMET) polymerization of M1 in the presence of Ru-carbene catalysts.
ADMET polymerization of 4-allyl-2-methoxyphenyl 10-undecenoate (M1) by ruthenium catalystsa
| Run | Ru cat. (mol%) | Time/h |
|
| Yield |
|---|---|---|---|---|---|
| 1 | G2 (1.0) | 12 | 7100 | 1.74 | 86 |
| 2 | G2 (1.0) | 12 | 8100 | 2.05 | 88 |
| 3 | G2 (0.2) | 12 | 3200 | 3.63 | 55 |
| 4 | G2 (0.5) | 12 | 7500 | 2.09 | 79 |
| 5 | G2 (1.0) | 12 | 8100 | 2.05 | 88 |
| 6 | G2 (1.5) | 3 | 9400 | 1.97 | 87 |
| 7 | G2 (1.5) | 6 | 10 300 | 1.95 | 87 |
| 8 | G2 (1.5) | 12 | 12 700 | 1.85 | 91 |
| 9 | G2 (1.5) | 18 | 12 400 | 1.64 | 87 |
| 10 | G1 (1.5) | 12 | 5500 | 1.87 | 81 |
| 11 | HG2 (1.5) | 12 | 4500 | 1.63 | 79 |
| 12 | G2 (2.0) | 12 | 12 500 | 1.84 | 91 |
| 13 | G2 (3.0) | 12 | 7900 | 1.93 | 81 |
Conditions: Ru catalyst (shown in Scheme 2), monomer M1 (330 mg, 1.0 mmol), CH2Cl2 0.4 mL (initial monomer concentration 2.50 M), 50 °C. Detailed procedure is shown in the Experimental section.
Mol% based on monomer M1.
GPC data in THF vs. polystyrene standards.
Isolated yield by precipitation as the methanol insoluble fraction.
The tube was placed in vacuo twice at the first time (30 min).
Fig. 2GPC traces of polymers (P1) in ADMET polymerization of M1 under (a) effect of different G2 loading, and (b) effect of Ru catalysts. Detailed data are shown in Table 1.
Fig. 31H NMR spectrum (in CDCl3 at 25 °C) for (a) 4-allyl-2-methoxyphenyl 10-undecenoate (M1), and (b) the resultant polymer (P1) prepared by the ADMET polymerization (run 8).
ADMET polymerization of M2 and M3 by G2 catalysta
| Run | Monomer | G2/mol% |
|
| Yield |
|---|---|---|---|---|---|
| 14 | M2 | 2.0 | 8300 | 1.52 | 71 |
| 15 | M2 | 1.0 | 7700 | 1.49 | 71 |
| 16 | M2 | 0.5 | 7300 | 1.44 | 72 |
| 17 | M3 | 2.0 | 6200 | 1.50 | 78 |
| 18 | M3 | 1.0 | 6900 | 1.53 | 78 |
| 19 | M3 | 0.5 | 8500 | 1.64 | 84 |
| 20 | M3 | 0.2 | 7200 | 1.55 | 83 |
Conditions: monomer M2 (266 mg, 1.0 mmol) or M3 (336 mg, 1.0 mmol), CH2Cl2 0.4 mL (initial monomer concentration 2.50 M), 50 °C, 12 h. Detailed procedure is shown in the Experimental section.
Mol% based on monomer.
GPC data in THF vs. polystyrene standards.
Isolated yield by precipitation as the methanol insoluble fraction.
Scheme 3Acyclic diene metathesis (ADMET) polymerization of M2 and M3 in the presence of Ru-carbene catalyst (G2).
Scheme 4Acyclic diene metathesis (ADMET) polymerization of 4-allyl-2-methoxyphenyl 10-undecenoate (M1) in the presence of 5-formylbenzene-1,2,3-triyl tris(undec-10-enoate) (CL).
ADMET polymerization of M1 using G2 in the presence of cross-linker (CL)a
| Run | CL | Time/h |
|
| Yield |
|---|---|---|---|---|---|
| 8 | — | 12 | 12 700 | 1.85 | 91 |
| 21 | 2.5 | 12 | 13 300 | 2.58 | 88 |
| 22 | 2.5 | 18 | 13 600 | 2.28 | 89 |
| 23 | 5.0 | 12 | 11 500 | 3.95 | 88 |
| 24 | 5.0 | 18 | 13 500 | 3.48 | 88 |
| 25 | 5.0 | 18 | 13 800 | 2.80 | 90 |
| 26 | 5.0 | 18 | 10 200 | 2.05 | 81 |
| 27 | 5.0 | 24 | 11 800 | 2.59 | 86 |
Conditions: monomer M1 (330 mg, 1.0 mmol), ruthenium catalyst (G2) 1.5 mol%, cross-linker (CL), CH2Cl2 0.4 mL (initial monomer concentration 2.50 M), 50 °C. Detailed procedure is shown in the Experimental section.
Mol% based on monomer M1.
GPC data in THF vs. polystyrene standards.
Isolated yield by precipitation as the methanol insoluble fraction.
Ru 2.0 mol%.
Cross-linker (CL, 5.0 mol%) was added after 30 min.
Fig. 4GPC traces polymers (PL1) in ADMET polymerization of M1 using G2 in the presence of cross-linker (CL). Detailed data are shown in Table 3.
Fig. 51H NMR spectra (in CDCl3 at 25 °C) for (a) cross-linker (CL), (b) the resultant polymer (P1) prepared by ADMET polymerization of M1 (run 8), and (c) resultant polymer (PL1) prepared by the ADMET polymerization of M1 in the presence of CL (5.0 mol%, sample run 24).