| Literature DB >> 20657466 |
Ibtissem Jlalia1, Claire Beauvineau, Sophie Beauvière, Esra Onen, Marie Aufort, Aymeric Beauvineau, Eihab Khaba, Jean Herscovici, Faouzi Meganem, Christian Girard.
Abstract
This article deal with the parallel synthesis of a 96 product-sized library using a polymer-based copper catalyst that we developed which can be easily separated from the products by simple filtration. This gave us the opportunity to use this catalyst in an automated chemical synthesis station (Chemspeed ASW-2000). Studies and results about the preparation of the catalyst, its use in different solvent systems, its recycling capabilities and its scope and limitations in the synthesis of this library will be addressed. The synthesis of the triazole library and the very good results obtained will finally be discussed.Entities:
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Year: 2010 PMID: 20657466 PMCID: PMC6257452 DOI: 10.3390/molecules15053087
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Huisgen cycloaddition route to 1,2,3-triazoles and its copper (I) catalyzed version.
Scheme 2Preparation of the heterogeneous catalyst Amberlyst A-21•CuI.
Figure 1Conversions and yields of triazole 3 in different solvents using 10 mol % A-21•CuI.
Figure 2Yield as a function of mol % A-21•CuI.
Scheme 3Reaction in homogeneous and heterogeneous conditions for the formation of 3.
Figure 3NMR follow-up in homogeneous conditions (Et3N/CuI in CDCl3) for the formation of 3.
Figure 4NMR follow-up in heterogeneous conditions (A-21•CuI in CDCl3) for the formation of 3.
Figure 5Kinetics for the formation of 3 in homo and heterogeneous conditions.
Recycling A-21•CuI in the synthesis of the triazole 6 starting from 4 and 5. a
| Entry | Cycle delay b (days) | Yield c % | Entry | Cycle delay b (weeks) | Yield c % |
|---|---|---|---|---|---|
| 1 | 0 | 99 | 7 | 0 | 99 |
| 2 | 1 | 99 | 8 | 1 | 99 |
| 3 | 2 | 99 | 9 | 2 | 99 |
| 4 | 3 | 99 | 10 | 3 | 99 |
| 5 | 4 | 99 | 11 | 4 | 99 |
| 6 | 5 | 99 | 12 | 5 | 99 |
a Run in 1 mL methylene chloride stirring at room temperature for 7 hours on 0.5 mmol 4 and 0.55 mmol 5. b The catalyst was washed at the end of reaction, dry under vacuum and kept in a vial until its next use. c Isolated yield of 6.
Scheme 4General scheme for automated triazoles a synthesis from alkynes a and azides b.
Parallel synthesis of 96 triazoles using Amberlyst A-21-CuI on a ChemSpeed ASW-2000 with 8 azides and 12 Alkynes. a
a See Scheme 4. Isolated or purified yieds. b Mixtures of tristriazoles (T) and mono-etdi-triazoles (MD) of triporpargylamine