| Literature DB >> 25246965 |
Praveen Reddy Adiyala1, D Chandrasekhar1, Jeevak Sopanrao Kapure1, Chada Narsimha Reddy1, Ram Awatar Maurya1.
Abstract
A facile and efficient synthetic protocol for the synthesis of α-amino amidines has been developed using a molecular iodine-catalyzed three-component coupling reaction of isocyanides, amines, and aldehydes. The presented strategy offers the advantages of mild reaction conditions, low environmental impact, clean and simple methodology, high atom economy, wide substrate scope and high yields.Entities:
Keywords: Ugi reaction; iodine; isocyanide; multicomponent reaction; α-amino amidines
Year: 2014 PMID: 25246965 PMCID: PMC4168875 DOI: 10.3762/bjoc.10.214
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Synthesis of diamides, α-amino amides [13–14] and α-amino amidines [15–19] through Ugi and related MCRs.
Synthesis of α-amino amidine 4a through a three-component coupling of benzaldehyde, aniline, and tert-butyl isocyanide.a
| Entry | Catalyst (I2) | Solvent | Time (h) | Yield of |
| 1 | 5 mol % | methanol | 2 | 90 |
| 2 | 2 mol % | methanol | 2 | 91 |
| 3 | 1 mol % | methanol | 2 | 90 |
| 4 | 0.5 mol % | methanol | 2 | 78 |
| 5 | 0.5 mol % | methanol | 6 | 88 |
| 6 | 10 mol % | methanol | 2 | 85 |
| 7 | 20 mol % | methanol | 2 | 70 |
| 8 | 1 mol % | ethanol | 2 | 85 |
| 9 | 1 mol % | acetonitrile | 2 | 78 |
| 10 | 1 mol % | THF | 2 | 72 |
| 11 | none | methanol | 24 | 0 |
aComposition of reaction mixture: Benzaldehyde (1 mmol), aniline (2 mmol), tert-butyl isocyanide (1 mmol), solvent (5 mL), I2, rt, stirring. bIsolated yields which are not optimized.
Scope of the α-amino amidine synthesis through three-component coupling of aldehyde, amine, and isocyanide.a
| Entry | R | R1 | R2 | Product | Yield of product (%)b |
| 1 | C6H5 | C6H5 | (CH3)3C | 90 | |
| 2 | C6H5 | C6H5 | 93 | ||
| 3 | 2-Br-C6H4 | C6H5 | (CH3)3C | 85 | |
| 4 | C6H5 | 86 | |||
| 5 | C6H5 | 88 | |||
| 6 | 4-Cl-C6H4 | C6H5 | 88 | ||
| 7 | 2-Furyl | C6H5 | (CH3)3C | 90 | |
| 8 | C6H5 | (CH3)3C | 90 | ||
| 9 | C6H5 | (CH3)3C | 87 | ||
| 10 | 4-F-C6H4 | C6H5 | (CH3)3C | 88 | |
| 11 | 4-Cl-C6H4 | C6H5 | (CH3)3C | 85 | |
| 12 | 4-Cl-C6H4 | 4-CH3O-C6H4 | (CH3)3C | 90 | |
| 13 | C6H5 | 4-CH3-C6H4 | (CH3)3C | 86 | |
| 14 | 4-F-C6H4 | 4-CH3-C6H4 | (CH3)3C | 92 | |
| 15 | 4-CH3-C6H4 | (CH3)3C | 91 | ||
| 16 | 4-CH3-C6H4 | (CH3)3C | 83 | ||
| 17 | C6H5 | (CH3)3C | 85 | ||
| 18 | C6H5 | (CH3)3C | 77 | ||
| 19 | 3,4,5-(MeO)3-C6H2 | C6H5 | EtOOCCH2 | 75 | |
| 20 | 3,4,5-(MeO)3-C6H2 | C6H5 | 79 | ||
aAldehyde (1 mmol), amine (2 mmol), isocyanide (1 mmol), iodine 1 mol %, methanol (5 mL), rt, stirring, 2 h. bIsolated yield which is not optimized.
Figure 2Synthesis of imidazolopyridines 7a–d through a three-component coupling reaction of substituted benzaldehydes, 2-aminopyridine, and tert-butyl isocyanide using 1 mol % iodine as catalyst.
Figure 3A plausible reaction mechanism for the iodine-catalyzed α-amino amidine synthesis.