| Literature DB >> 35547322 |
Marcin Konopka1,2, Grzegorz Markiewicz1,2, Artur R Stefankiewicz1,2.
Abstract
We report herein a facile and widely applicable microwave-assisted protocol for the synthesis of symmetrical diimides based on three structurally distinct aromatic dianhydrides: pyromellitic (PMA), biphenyl-tetracarboxylic acid (BPDA) and benzophenone-tetracarboxylic (BTDA) and five natural amino acids (Phe, Tyr, Ile, Lys, Cys). Fifteen symmetrical diimides with different structural characteristics containing a variety of functional groups can be produced with high yields and on a large scale. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35547322 PMCID: PMC9085299 DOI: 10.1039/c8ra05835k
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1General synthetic method for the microwave assisted preparation of symmetrical diimides from three distinct dianhydrides and α-amino acids.
Comparison between the reaction yields under different solvent/base conditions for representative reaction between PMA and l-Phe
| Entry | Base | Solvent | Reaction time | Temp. (°C) | Yield |
|---|---|---|---|---|---|
| 1 | Et3N | DMF | 10 | 140 | 71–75 |
| 2 | Et3N | MeCN | 10 | 140 | 72–74 |
| 3 | DABCO | DMF | 10 | 140 | 51–56 |
| 4 | DABCO | MeCN | 10 | 140 | 77–81 |
| 5 | DMAP | DMF | 10 | 140 | 85–88 |
| 6 | DMAP | MeCN | 10 | 140 | 61–65 |
Reactions were carried out on 0.5 mmol of dianhydride, 1.0 mmol of amino acid, 2.0 mmol of base and 5 mL of the solvent.
Excluding temperature ramping.
Each reaction was repeated 3-times, giving isolation yields in the ranges shown.
List of synthesized symmetrical diimides with structures and abbreviations
| Entry | Dianhydride | Amino acid | Product | Abbreviation | Reaction time | Reaction temp. (°C) | Yield |
|---|---|---|---|---|---|---|---|
| 1 | PMA |
|
| PMI-Phe | 10 | 140 | 87 |
| 2 | PMA |
|
| PMI-Tyr | 10 | 140 | 87 |
| 3 | PMA |
|
| PMI-Ile | 10 | 140 | 72 |
| 4 | PMA |
|
| PMI-Cys | 10 | 140 | 75 |
| 5 | PMA |
|
| PMI-Lys | 10 | 140 | 70 |
| 6 | BPDA |
|
| BPDI-Phe | 10 | 140 | 84 |
| 7 | BPDA |
|
| BPDI-Tyr | 10 | 140 | 72 |
| 8 | BPDA |
|
| BPDI-Ile | 10 | 140 | 72 |
| 9 | BPDA |
|
| BPDI-Cys | 10 | 140 | 90 |
| 10 | BPDA |
|
| BPDI-Lys | 10 | 140 | 75 |
| 11 | BTDA |
|
| BTDI-Phe | 10 | 140 | 75 |
| 12 | BTDA |
|
| BTDI-Tyr | 10 | 140 | 76 |
| 13 | BTDA |
|
| BTDI-Ile | 10 | 140 | 79 |
| 14 | BTDA |
|
| BTDI-Cys | 10 | 140 | 90 |
| 15 | BTDA |
|
| BTDI-Lys | 10 | 140 | 70 |
Reactions were carried out on 0.5 mmol of dianhydride, 1.0 mmol of amino acid and 2.0 mmol of DMAP in 5 mL of DMF.
Excluding temperature ramping.
Yield of isolated product.
Fig. 11H NMR (300 MHz, DMSO-d6) spectra of PMI-Phe (blue), BPDI (green), BTDI-Phe (red). Peaks description: α-CH (2H), β-CH2 (4H) and Ph-H (10H) stands from l-phenylalanine moieties.
Fig. 21H NMR (300 MHz, DMSO-d6) spectra of the products isolated after reaction of PMA dianhydride with chirally pure l-tyrosine (top) and racemic tyrosine (bottom).
Large scale synthesis results
| Entry | Product | Solvent | Base | Reaction time | Reaction temp. (°C) | Yield |
|---|---|---|---|---|---|---|
| 1 | PMI-Phe | DMF | DMAP | 10 | 145 | 88 |
| 2 | PMI-Ile | MeCN | DABCO | 20 | 82 | 70 |
| 3 | BPDI-Phe | DMF | DMAP | 10 | 145 | 82 |
| 4 | BPDI-Ile | DMF | DMAP | 10 | 145 | 71 |
| 5 | BTDI-Phe | DMF | DMAP | 10 | 145 | 73 |
| 6 | BTDI-Ile | MeCN | DABCO | 20 | 82 | 75 |
Reactions were carried out on 5.0 mmol of dianhydride, 10.0 mmol of amino acid and 20.0 mmol of base in 50 mL of given solvent.
At constant microwave power = 180 W.
±5 °C maintained at constant power.
Boiling point of the solvent.
Yield of isolated product.