| Literature DB >> 28179944 |
Andrea Mascitti1,2, Massimiliano Lupacchini1,2, Ruben Guerra2, Ilya Taydakov3,4, Lucia Tonucci5, Nicola d'Alessandro1, Frederic Lamaty2, Jean Martinez2, Evelina Colacino2.
Abstract
The mechanochemical preparation of highly functionalized 3,5-disubstituted hydantoins was investigated in the presence of various poly(ethylene) glycols (PEGs), as safe grinding assisting agents (liquid-assisted grinding, LAG). A comparative study under dry-grinding conditions was also performed. The results showed that the cyclization reaction was influenced by the amount of the PEG grinding agents. In general, cleaner reaction profiles were observed in the presence of PEGs, compared to dry-grinding procedures.Entities:
Keywords: 1,1’-carbonyldiimidazole (CDI); ball-milling; hydantoins; liquid-assisted grinding (LAG); mechanochemistry; poly(ethylene) glycols (PEGs)
Year: 2017 PMID: 28179944 PMCID: PMC5238572 DOI: 10.3762/bjoc.13.3
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1PEG-assisted grinding strategy for the preparation of 3,5-disubstituted hydantoins.
Screening of grinding additives using (L)-H-Leu-OMe.HCl as benchmark for the preparation of compound 2a.a
| Entry | Grinding additive | Amount (mg) | Yield (%)b |
| 1 [ | – | – | 61 |
| 2 | MeO-PEG-2000-OMe | 225 | 70 |
| 3 [ | 450 | 70 | |
| 4c,d | 450c,d | 71c,d | |
| 5 | 675 | 29e | |
| 6 | MeO-PEG-2000-OH | 450 | 68 |
| 7 | HO-PEG-3400-OH | 225 | 77 |
| 8 | 450 | 73 | |
| 9c,d | 450c,d | 73c,d | |
| 10 | 675 | 66e | |
| 11 | HO-PEG-5000-OH | 450 | 57 |
| 12 | HO-PEG-1000-OH | 450 | 66 |
| 13 | HO-PEG-600-OH | 450 | 56 |
| 14 | Glycerol | 450 | 58 |
aConditions: (step 1) (L)-H-Leu-OMe.HCl (1 mmol) and CDI (1.3 equiv.) at 450 rpm, in a planetary ball mill (PBM) using a 12 mL SS jar with 50 balls (SS = stainless steel, 5 mm Ø) for 40 min; (step 2) EtNH2.HCl (1.6 equiv), K2CO3 (3.6 equiv) and the grinding additive RO-PEG-OR (R = H, Me, n = 14, 23, 46, 77, 114) or glycerol (450 mg mmol−1) (see Supporting Information File 1 for experimental details); bIsolated yields; cThe reaction time in the second step was 3 h; dPEG was precipitated in diethyl ether, then filtered and dried in the air before use [16]; e1H NMR yield.
Optimization of liquid-assisted grinding conditions using (L)-H-Phe-OMe.HCl as benchmark for the preparation of compound 3a.a
| Entry | Grinding additive | Amount (mg) | Yield (%)b [ |
| 1 [ | – | – | 84 |
| 2 | MeO-PEG-2000-OMe | 225 | 59 |
| 3c | 450 | 70 (68)c | |
| 4 | HO-PEG-3400-OH | 225 | 58 |
| 5 | 450 | 60 | |
| 6 | 675 | 62 | |
aConditions: (step 1) (L)-H-Phe-OMe.HCl (1 mmol) and CDI (1.3 equiv) at 450 rpm, in a planetary ball-mill (PBM) using a 12 mL SS jar with 50 balls (SS = stainless steel, 5 mm Ø) for 40 min; (step 2) EtNH2.HCl (1.6 equiv), K2CO3 (3.6 equiv) and RO-PEG-OR (R = H, Me, n = 46, 77) (see Supporting Information File 1 for experimental details); bisolated yields; cD-H-Phe-OMe was used.
Syntheses of 3,5-disubstituted hydantoins under dry-grinding (conditions A)a or PEG-assisted grinding (conditions B and C).b
| Entry | H-AA-OMe | Yields (%)b vs conditionsa | Product | ||
| A | B | C | |||
| 1 | H-Leu-OMe | 61 [ | 70 | 73 | |
| 2 | 57 [ | 69 | 66c | ||
| 3 | 38 [ | n.p.d | 48c | ||
| 4 | H-Phe-OMe | 84 [ | 70 | 60 | |
| 5 | 30 | n.d.e | n.d.e | ||
| 6 | 70 | n.d.e | n.d.e | ||
| 7 | H-Ser( | 51 [ | 70 | 70 | |
| 8 | H-Lys( | 31 [ | 47c | 50c | |
| 9 | 62 | n.p.d | 37c | ||
| 10 | 37 | n.p.d | n.p.d | ||
| 11 | 47 | n.p.d | n.p.d | ||
| 12 | H-Aib-OMe | 46 [ | 62 | 62 | |
aConditions: (step 1) (L)-α-amino ester hydrochloride (1 equiv) and CDI (1.3 equiv) at 450 rpm, in a 12 mL inox jar with 50 balls (stainless steel, 5 mm Ø) for 40 min; (step 2) R2NH2 (1.6 equiv) and K2CO3 (3.6 equiv) at 450 rpm for 2 hours. A: the reaction was performed with no additive (dry-grinding); B: MeO-PEG-2000-OMe (450 mg mmol−1); C: HO-PEG-3400-OH (450 mg mmol−1) were added in the second step (wet-grinding conditions with a PEG additive; bisolated yields; c1H NMR yield on the crude reaction mixture; dthe reaction was not performed (n.p.); ethe reaction yield was not determined (n.d.).