| Literature DB >> 18007373 |
Alexey G Kuznetsov1, Alexander A Bush, Viktor B Rybakov, Eugene V Babaev.
Abstract
Various 2-substituted indolizines can be directly and selectively lithiated in the 5 position and subsequent reactions with different electrophiles lead to some novel classes of indolizines. In particular, previously unknown 5-formyl- and 5-iodoindolizine have been prepared by this way and the molecular structure of 5-formyl-2- phenylindolizine was confirmed by X-Ray analysis. The reactivity of the 5-CHO- and 5- COPh groups toward some nucleophiles has been examined, and some additional classes of derivatives (oximes and alcohols) have been obtained. The possibility of Suzuki cross- coupling of 5-iodoindolizines and boronic acids was proven.Entities:
Mesh:
Substances:
Year: 2005 PMID: 18007373 PMCID: PMC6147697 DOI: 10.3390/10091074
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Characteristics of 5-Substituted indolizines
| Indolizine | E | Product | Yield,% | Mp, °C |
|---|---|---|---|---|
| | CHO | | 74 | 128-130 |
| | CHO | | 94 | 81-83 |
| | CHO | | 95 | 37-39 |
| | C(O)Ph | | 55 | 284-286 (lit. 286) [ |
| | I | | 96 | 57-59 |
1H-NMR spectra of 5-formyl indolizines 2a-c.
| Chemical shifts, ppm (J, Hz) | |||||||
|---|---|---|---|---|---|---|---|
| 7.04 | 9.18 | 7.83 (8.7) | 6.95 | 7.52 (6.9) | 9.88 | m: 7.71; 7.39; 7.24 (2-Ph) | |
| 6.61 | 8.71 | 7.71 (8.6) | 6.86 | 7.42 (7.2) | 9.81 | s, 1.37 (2-tBu) | |
| - | 8.65 | 7.71 (8.7) | 6.78 | 7.35 (7.4) | 9.75 | s, 2.47 (1-CH3); s, 1.42 (2- tBu) | |
Figure 1Characteristics of O-Me oximes 3 of 5-formylindolizines
| 5-Formylindolizine | Oxime | Yield,% | Mp, °C |
|---|---|---|---|
| | | 89 | 82-84 |
| | | 96 | 49-51 |
| | | quant. | 69-71 |
1H-NMR spectra of O-Me oximes of 5-formylindolizines.
| No. | Chemical shifts, ppm (J, Hz) | |||||||
|---|---|---|---|---|---|---|---|---|
| 6.92 | 8.84 | 7.56 (9.1) | 6.81 | 6.93 (6.9) | 8.40 | 4.13 | m: 7.68; 7.38; 7.23 (2-Ph) | |
| 6.50 | 8.34 | 7.43 (8.9) | 6.72 | 6.82 (6.7) | 8.31 | 4.07 | s, 1.37 (2-tBu) | |
| - | 8.30 | 7.43 (8.7) | 6.65 | 6.76 (6.7) | 8.26 | 4.05 | s, 2.46 (1-CH3); | |
Characteristics of 5-CH2OH indolizines 4
| 5-Formylindolizine | Product | Yield,% | Mp, °C |
|---|---|---|---|
| | | quant. | 110-112 |
| | | quant. | 82 |
| | | quant. | 76-78 |
1H-NMR spectra of 5-CH2OH indolizines 4
| No. | Chemical shifts, ppm (J, Hz) | |||||||
|---|---|---|---|---|---|---|---|---|
| 6.73 | 7.77 | 7.34* | 6.70 | 6.58 (6.6) | 4.72** | 5.33** | m: 7.68; 7.39*; 7.19 (2-Ph) | |
| 6.31 | 7.19 | 7.21 (9.3) | 6.22 | 6.49 (6.3) | 4.64 (4.5) | 5.24 (4.5) | s, 1.35 (2-tBu) | |
| - | 7.10 | 7.19 (9.4) | 6.56 | 6.42 (6.9) | 4.60 (5.4) | 5.19 (5.4) | s, 2.40 (1-CH3); s, 1.40 (2- tBu) | |
*) Peak H6 overlapped with multiplet of Ph group.
**) Broad signal.
| Substances 1 | R1 | R2 |
|---|---|---|
| H | Ph | |
| H | tBu | |
| Me | tBu |