| Literature DB >> 18941492 |
Emma L Parks1, Graham Sandford, John A Christopher, David D Miller.
Abstract
BACKGROUND: Highly functionalised pyrimidine derivatives are of great importance to the life-science industries and there exists a need for efficient synthetic methodology that allows the synthesis of polysubstituted pyrimidine derivatives that are regioselective in all stages to meet the demands of RAS techniques for applications in parallel synthesis. 5-Chloro-2,4,6-trifluoropyrimidine may be used as a scaffold for the synthesis of polyfunctional pyrimidine systems if sequential nucleophilic aromatic substitution processes are regioselective.Entities:
Keywords: nucleophilic aromatic substitution; perfluoroheteroaromatic; pyrimidine; rapid analogue synthesis
Year: 2008 PMID: 18941492 PMCID: PMC2511021 DOI: 10.3762/bjoc.4.22
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Pharmaceuticals with pyrimidine sub-units.
Scheme 1Use of 2,4,6-trichloropyrimidine as a core scaffold. Reagents and Conditions: a) bis(4-methoxybenzyl)amine, Et3N, BuOH, 75 °C; b) p-anisidine, Et3N, BuOH, DMSO, 95 °C; c) cyclohexylmethanol, Na, 170 °C; d) TFA, 60 °C; e) AcOH, H2O, NaNO2.
Reactions of amine nucleophiles with 5-chloro-2,4,6-trifluoropyrimidine (1).
| R1R2NH | Products (isolated yield)a | Ratio | |
| NH3 | 9 : 1 | ||
| EtNH2 | 8 : 1 | ||
| 5 : 1 | |||
| 5 : 1 | |||
| 3 : 1 | |||
| 3 : 1 | |||
a Isolated yield of major products 3. Minor products 4 were not isolated.
b Ratio of 3 : 4 in crude product mixture by 19F NMR analysis.
Scheme 2Reaction of 1 with benzamidine.
Figure 2Molecular structure of 3g.