| Literature DB >> 30404134 |
Elisabet Pires1,2, José Ignacio García3, Alejandro Leal-Duaso4, José Antonio Mayoral5,6, José Ignacio García-Peiro7, David Velázquez8.
Abstract
We present an efficient and green methodology for the synthesis of glycerol monoethers, starting from glycidol and different alcohols, by means of heterogeneous acid catalysis. A scope of Brønsted and Lewis acid catalysts were applied to the benchmark reaction of glycidol and methanol. The selected catalysts were cationic exchangers, such as Nafion NR50, Dowex 50WX2, Amberlyst 15 and K10-Montmorillonite, both in their protonic form and exchanged with Al(III), Zn(II) and Fe(III). Thus, total conversions were reached in short times by using 1 and 5% mol catalyst loading and room temperature, without the need for excess glycidol or the presence of a solvent. Finally, these conditions and the best catalysts were successfully applied to the reaction of glycidol with several alcohols such as butanol or isopropanol.Entities:
Keywords: Bronsted acid; Lewis acid; acid catalyst; glycerol; glycerol ether; glycidol; green solvent; heterogeneous catalysis
Mesh:
Substances:
Year: 2018 PMID: 30404134 PMCID: PMC6278263 DOI: 10.3390/molecules23112887
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Reaction of glycidol (1) with methanol (2a) used as the benchmark reaction.
Figure 1Influence of catalyst loading and reaction temperature in glycidol (1) conversion and product yields in the reaction of glycidol and methanol catalyzed with Dowex 50WX2.
Figure 2Influence of the nature of the catalyst on glycidol (1) conversion (a) and products selectivity (b).
Results of the reaction of glycidol (1) with methanol (2a) at room temperature catalyzed by exchanged K10-Montmorillonites 1.
| Entry | Catalyst | T (°C) Activation | Time (h) 2 | Products Yield | 3a/3b |
|---|---|---|---|---|---|
| 1 | K10-Al | 120 | 0.5 | 94 | 82:18 |
| 2 | K10-Fe | 120 | 0.5 | 86 | 70:30 |
| 3 | K10-Zn | 120 | 18 | 91 | 93:7 |
| 4 | K10-Al-calc | 550 | 1.5 | 84.9 | 89:11 |
| 5 | K10-Fe-calc | 550 | 1.5 | 74.8 | 91:9 |
| 6 | K10-Zn-calc | 550 | 24 | 79.1 | 90:10 |
1 A ratio 2a/1 of 15 mol and 5% mol catalyst are used, 1 added dropwise; 2 time for total conversion of glycidol is considered.
Figure 3Reaction of glycidol (1) with methanol (2a) catalyzed by 1% mol and 5% mol K10.
Figure 4Recoverability of K10-Al (5% mol) in the reaction of glycidol (1) with methanol (2a).
Scheme 2Reaction of glycidol (1) with several alcohols (2).
Results of the reaction of glycidol with other alcohols at room temperature catalyzed by exchanged K10-Montmorillonites .
| Alcohol | Catalyst | Time (h) 2 | Products Yield | 4–5a/4–5b |
|---|---|---|---|---|
|
| K10-H+ | 0.5 | 70 | 83:17 |
|
| K10-Al | 0.5 | 79 | 76:24 |
|
| K10-Zn | 24 | 65 3 | 88:12 |
|
| K10-H+ | 2 | 78 | 91:9 |
|
| K10-Al | 1 | 75 | 85:15 |
|
| K10-Zn | 24 | 72 | 95:5 |
A ratio 2/1 of 15 mol are used and 5% mol catalyst is used in the case of K10-Al and K10-Zn and 10% in the case of K10-H+, 1 added dropwise; 2 time for total conversion of glycidol is considered; 3 85% glycidol conversion after 24 h.
Comparison of the synthetic methodologies for the synthesis of GMEs (3–5a and 3–5b).
| Alcohol | Catalyst | Catalyst Loading (% mol) | Alcohol/Glycidol Molar Ratio | Time (h) | Reaction T (°C) | Conversion (Selectivity) | a/b | Ref. |
|---|---|---|---|---|---|---|---|---|
|
| KOH 1 | 20 | 15 | 2 | 65 | 100 (93) | 100:0 | [ |
|
| Al(OTf)3 | 0.01 | 9 | 1 | 80 | 100 (94) | 66:34 | [ |
|
| Nafion NR50 | 0.5 | 9 | 1 | 80 | 85 (79) | 77:23 | [ |
|
| Nafion NR50 | 10 | 9 | 2 | 25 | 100 (67) | 72:28 | |
|
| K10-H+1 | 10 | 15 | 0.5 | 25 | 100 (83) | 80:20 | |
|
| K10-Al 1 | 5 | 15 | 0.5 | 25 | 100 (94) | 82:18 | |
|
| K10-Zn 1 | 5 | 15 | 24 | 25 | 100 (91) | 93:7 | |
|
| KOH 1 | 20 | 15 | 1.5 | 65 | 100 (60) | 100:0 | |
|
| Al(OTf)3 | 0.01 | 9 | 1 | 80 | 94 (91) | 66:34 | [ |
|
| Nafion NR50 | 0.5 | 9 | 15 | 80 | 39 (37) | 72:28 | [ |
|
| K10-H+1 | 10 | 15 | 0.5 | 25 | 100 (70) | 83:13 | |
|
| K10-Al 1 | 5 | 15 | 0.5 | 25 | 100 (79) | 76:24 | |
|
| K10-Zn 1 | 5 | 15 | 24 | 25 | 85 (65) | 88:12 | |
|
| KOH 1 | 20 | 15 | 2 | 65 | 100 (30) | 100:0 | |
|
| Al(OTf)3 | 0.01 | 9 | 1 | 80 | 85 (87) | 66:34 | [ |
|
| Nafion NR50 | 0.5 | 9 | 15 | 80 | 95 (86) | 78:22 | [ |
|
| K10-H+1 | 10 | 15 | 2 | 25 | 100 (78) | 91:9 | |
|
| K10-Al 1 | 5 | 15 | 1 | 25 | 100 (75) | 85:15 | |
|
| K10-Zn 1 | 5 | 15 | 24 | 25 | 100 (72) | 95:5 |
1 Glycidol (1) is added dropwise.