| Literature DB >> 32117900 |
Deianira Lanteri1, Silvia Quattrosoldi2, Michelina Soccio2, Andrea Basso1, Dario Cavallo1, Andrea Munari2, Renata Riva3, Nadia Lotti2, Lisa Moni1.
Abstract
Dye-sensitized photooxygenation reaction of bio-based double bond-containing substrates is proposed as sustainable functionalization of terpenes and terpenoids to transform them into polyoxygenated compounds to be employed for the synthesis of new bio-based polyesters. As proof of concept, citronellol 1 has been regioselectively converted into diol 4 using singlet oxygen (1O2), a traceless reagent that can be generated from air, visible light and zeolite supported-photosensitizer (Thionine-NaY). With our synthetic approach, diol 4 has been obtained in two-steps, with good regioselectivity, using green reagents such as light and air, and finally a solvent-free oxidation step. From this compound, a citronellol-based copolyester of poly(butylene succinate) (PBS) has been synthesized and fully characterized. The results obtained evidence that the proposed copolymerization of PBS with the citronellol-based building blocks allows to obtain a more flexible and functionalizable material, by exploiting a largely available natural molecule modified through a green synthetic path.Entities:
Keywords: copolymerization; photooxidation; poly(butylene succinate); renewable polymers; terpenoids; zeolites
Year: 2020 PMID: 32117900 PMCID: PMC7031484 DOI: 10.3389/fchem.2020.00085
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Scheme 1Photooxygenation reaction of (rac-)citronellol 1 and subsequent reduction of hydroperxides 2 and 3 to give diols 4 and 5.
Optimization of the regioselective photosensitized oxidation of citronellol 1 to give, after reduction, diols 4 and 5.
| 1 | – | – | MeOH | 500 | 8 | – | 0% | – |
| 2 | RB | – | MeOH | 500 | 8 | 49:51 | >95% | 72% |
| 3 | MB | – | MeOH | 500 | 7 | 48:52 | >90% | 63% |
| 4 | TH | – | MeOH | 100 | 18 | 46:54 | >95% | 47% |
| 5 | MB/NaY | 0.001 | Hexane | 100 | 5.5 | 71:29 | 31% | – |
| 6 | MB/NaY | 0.001 | Cyclohexane | 220 | 19 | 70:30 | 71% | – |
| 7 | MB/NaY | 0.001 | Neat | 20 | 7 | 81:19 | 98% | – |
| 8 | MB/NaY | 0.001 | Neat | 100 | 29 | 82:18 | 51% | – |
| 9 | MB/NaY | 0.005 | Neat | 100 | 14 | 79:21 | 56% | – |
| 10 | TH/NaY | 0.005 | Neat | 100 | 19 | 82:18 | 93% | 87% |
| 11 | TH/NaY | 0.005 | Neat | 50 | 15 | 82:18 | 92%% | 66% |
| 12 | TH/NaY | 0.005 | Neat | 50 | 23 | 88:12 | 100% | 62% |
| 13 | TH/NaY | 0.005 | Neat | 50 | 48 | 99:1 | 100% | 41% |
| 14 | TH/LiY | 0.005 | Neat | 50 | 15 | 99:1 | 92% | 31% |
| 15 | TH/NaY | 0.005 | Neat | 480 | 24 | 89:11 | 88% | 78% |
The regioisomer ratio is calculated on the crude by 1H-NMR spectrum;
Conversion, defined as [4 + 5] / starting 1, is calculated on the crude by 1H-NMR;
Isolated yield after column chromatography;
NaBH4 (1.3 equiv) is used as reduction agent;
PPh3 (1.5 equiv) is used as reducing agent;
Reaction conditions: 1, MeOH, air, white light, 8 h;
Typical reaction conditions: 1 (1 equiv), photosensitizer (0.01 equiv), MeOH, air, white light, 8 h;
Typical reaction conditions: .
Figure 1Recycling tests of TH/NaY (loading 0.005% w/w). Reaction conditions: 1 (480 mg), TH/NaY (8.7 gr), air, white light, 24 h; then CH3CN, supported-PPh3 (1.5 eq.), RT, 3 days.
Scheme 2Photosensitized transformation of citronellol 1 into diol 4, and polymerization process of functionalized co-polyester 6. Reaction conditions: (1) neat, Ti(OBu)4 (150 ppm of Ti/g of polymer), 1 bar, 180°C, 3 h; (2) 0.1 mbar, 220°C, 3 h.
Scheme 3Green synthesis of functionalized-copolyester 7 starting from citronellol 1
Molecular, structural, thermal and mechanical characterization data of PBS and copolymers 6, 7 and 8.
| 1H-NMR | co-unit mol% | – | 35 | 20 + 5 | 27 |
| Yield [%] | 96 | 89 | 63 | 75 | |
| Viscosity | I.V. [dl/g] | 1.48 | 0.79 | 1.06 | 0.67 |
| TGA | Tmax [°C] | 399 | 409 | 404 | 259, 395 |
| DSC | Tm [°C] | 115 | 53 | 85 | 51 |
| I SCAN | ΔHm [J/g] | 81 | 30 | 45 | 15 |
| DSC | Tg [°C] | −34 | −33 | −34 | −16 |
| II SCAN | ΔCp [J/g*°C] | 0.212 | 0.481 | 0.223 | 0.573 |
| Tc [°C] | / | / | 23 | / | |
| ΔHc [J/g] | / | / | 12 | / | |
| Tm [°C] | 115 | / | 85 | / | |
| ΔHm [J/g] | 62 | / | 40 | / | |
| WAXS | 40 | 16 | 27 | 11 | |
| Tensile Test | σb [MPa] | 337 ± 27 | 2.3 ± 0.8 | 7 ± 1 | n.d |
| εb [%] | 4 ± 1 | 15 ± 2 | 5 ± 1 | n.d | |
| E [MPa] | 301 ± 2 | 26 ± 5 | 147 ± 16 | n.d |
Scheme 4Thiol–ene modification of the citronellol-based copolyester of poly(butylene succinate) with thioglycerol and N-Boc-cysteamine.