| Literature DB >> 27028458 |
Muhammad Afzal Subhani1, Burkhard Köhler1, Christoph Gürtler2, Walter Leitner3, Thomas E Müller4,5.
Abstract
Transparent films were prepared by cross-linking polyunsaturated poly(ether carbonate)s obtained by the multicomponent polymerization of CO2 , propylene oxide, maleic anhydride, and allyl glycidyl ether. Poly(ether carbonate)s with ABXBA multiblock structures were obtained by sequential addition of mixtures of propylene oxide/maleic anhydride and propylene oxide/allyl glycidyl ether during the polymerization. The simultaneous addition of both monomer mixtures provided poly(ether carbonate)s with AXA triblock structures. Both types of polyunsaturated poly(ether carbonate)s are characterized by diverse functional groups, that is, terminal hydroxy groups, maleate moieties along the polymer backbone, and pendant allyl groups that allow for versatile polymer chemistry. The combination of double bonds substituted with electron-acceptor and electron-donor groups enables particularly facile UV- or redox-initiated free-radical curing. The resulting materials are transparent and highly interesting for coating applications.Entities:
Keywords: CO2 utilization; copolymerization; multicomponent reactions; poly(ether carbonate); transparent materials
Year: 2016 PMID: 27028458 PMCID: PMC4850748 DOI: 10.1002/anie.201509249
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1Polyunsaturated poly(ether carbonate)s obtained by multicomponent polymerization are characterized by distinct functional groups.
Figure 1Preparation of polyunsaturated poly(ether carbonate)s 3 a–c with an ABXBA multiblock structure by sequential addition of the co‐monomers.
Chemical composition and molecular weight of polyunsaturated poly(ether carbonate)s 3 a–c and 4.[a]
| Sample |
| CO2 content[c,e] | Composition [mol %] |
| PDI[f] |
|---|---|---|---|---|---|
| [wt %] | [wt %][b] |
| [kg mol−1] | [–] | |
|
| 98.2 | 19.1 | 31.8/1.6/1.4/65.2 | 4.7 | 1.3 |
| (23.7) | (42.4/2.1/1.9/53.6) | ||||
|
| 98.3 | 15.9 | 26.1/3.3/2.8/67.8 | 4.5 | 1.8 |
| (19.8) | (34.8/4.4/3.7/57.1) | ||||
|
| 99.1 | 13.1 | 21.8/5.9/5.9/66.4 | 4.0 | 1.3 |
| (16.3) | (29.1/7.9/7.9/55.2) | ||||
|
| 99.3 | 14.3 | 24.2/6.0/5.9/63.9 | 4.1 | 1.5 |
| (17.8) | (32.3/8.0/7.9/51.9) |
[a] Reaction conditions: neat, 100 °C, p(CO2)=15 bar, 200 ppm DMC catalyst. [b] S: Selectivity to polyunsaturated poly(ether carbonate) in weight percent; the only by‐product were traces of cyclic propylene carbonate. [c] Determined by 1H NMR spectroscopy. [d] m=carbonate moiety, n=maleic ester moiety, o=allylether moiety, p=ether moiety. [e] Values in brackets refer to newly formed polymer segments. [f] Determined by gel‐permeation chromatography.
Figure 2Preparation of polyunsaturated poly(ether carbonate) 4 with an AXA triblock structure by simultaneous addition of the co‐monomers.
Figure 3Selected region of the 1H NMR spectra of samples of a) polyunsaturated poly(ether carbonate) 3 a′′ with ABXBA multiblock structures obtained by sequential addition of the co‐monomers (left); i) starter mixture, ii/iii) after stepwise addition of PO/MA, iv/v) after stepwise addition of PO/AGE; b) polyunsaturated poly(ether carbonate) 4′ with an AXA triblock structure obtained by simultaneous addition of the co‐monomers (right); i) starter mixture, ii–v) after stepwise addition of PO/MA and PO/AGE. For the full spectra see the Supporting Information.23
Figure 4GPC traces for polyunsaturated poly(ether carbonate) 3 c′′ after steps i–v (see Figure 3 a, left and caption).
Figure 5Influence of double‐bond loading on the viscoelastic behavior of the polyunsaturated poly(ether carbonate)s 3 a–c during irradiation with UV light.
Concentration of unsaturated moieties in poly(ether carbonate)s 3 a–c, 4–6 and viscoelastic behavior upon exposure to UV light.
| Entry | Sample | Unsaturated moieties[a] |
|
| G′12min | |
|---|---|---|---|---|---|---|
| maleate [mol %] | allyl [mol %] | [min] | [min] | [kPa] | ||
| 1 |
| 1.6 | 1.4 | 3.6 | 9.3 | 0.4 |
| 2 |
| 3.3 | 2.8 | 2.8 | 6.6 | 5.8 |
| 3 |
| 5.9 | 5.9 | 1.2 | 5.3 | 18.8 |
| 4 |
| 6.0 | 5.8 | 0.8 | 4.3 | 41.8 |
| 5 |
| 6.0 | – | >60 | n.o. | n.o. |
| 6 |
| – | 6.0 | >60 | n.o. | n.o. |
| 7 |
| 3.0 | 3.0 | 2.0 | 6 | 6.0 |
[a] Determined by 1H NMR spectroscopy. [b] 40 °C, determined with a rheometer equipped with a plate–plate measuring system; t onset=curing onset, t g=gel time; G′12min=storage modulus after 12 min exposure to UV light; n.o. not observed.